#ALS Stem Cell Treatment In India
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stemcellcenterindia · 5 months ago
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medtravellers87 · 1 month ago
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Revolutionize Your Health: The Benefits of Stem Cell Therapy in India
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In the recent past, the medical treatment world experienced massive changes due to the introduction of stem cell therapy. This gave hope to cure many chronic ailments, and India has progressed well in upgrading its healthcare infrastructure and medical experts. Among such leaders are MedTravellers, a health-care company exclusively focused on providing the international community with access to the most advanced treatments in the world, including stem cell therapy. In this article, light will be thrown upon the benefits of stem cell therapy in India related to diabetes and ALS (Amyotrophic Lateral Sclerosis). Here again, focus will be there on how we can help you in your health journey.
What is Stem Cell Therapy?
Stem cell therapy is an approach that utilizes stem cells to fix tissue and cellular damage within the body. It is considered precious because of its ability to differentiate into numerous forms of cells. Stem cells are obtained through several sources such as bone marrow, adipose tissue, and cord blood.
Research and development in India has been a full-fledged growth engine within the field of stem cell therapy; thus, it has followed a swift growth curve due to significant advancement in research and development projects in the country. This advanced patient care and treatment protocol has ensued enhanced clinical outcomes.
Increasing demand for stem cell therapy in India
Today, because of the popularity of stem cell treatment, many patients from all around the world, especially Australia, come to India for the effective treatments of various chronic diseases. The country has many accredited hospitals and clinics, equipped with state-of-the-art technology and highly expert in providing stem cell treatments.
The MedTravellers ties patients who are looking for treatment abroad with premium healthcare facilities in India. Thus, its wide reach provides every patient with the required treatments depending on your individual requirements.
Benefits of Stem Cell Therapy
1. Treatment for Diabetes: 
This is one of the potential benefits of stem cell therapy because of its revolutionary ability to treat a variety of conditions, including this one.
Diabetes is one of the most common health disorders to have emerged in the world, with millions suffering from the full-blown debilitation caused by it. New researches on diabetes treatments in India have shown promising results using stem cells. It has been discovered that the proliferation and regeneration of destroyed pancreatic cells, wherein the former produces insulin in the body, are enhanced by stem cells. Hence, there is a cure for the disease through stem cell therapy rather than treating the symptoms of the disease.
We will assist patients from Australia to reach the best facilities and specialists in India for stem cell therapy for diabetes in India. It sticks around throughout the entire journey-from initial consultation, post-treatment care-all to ease the experience and hassle-free.
2. ALS Disease Treatment
ALS is a neurodegenerative disease that affects nerve cells both in the brain and spinal cord. That condition impacts on muscle weakness, loss of motor function, and finally respiratory failure. Traditional therapy cures the symptoms, rather than the disease, and many patients have remained well aware that an effective one still exists.
Thus, stem cell treatment for the ALS disease treatment in India has become hope for all the patients. Research conducted thus far have also pointed to the fact that stem cells can indeed slow the progress of the disease, thus helping to regenerate nerves. Administering stem cells into the spinal cord or brain may, hopefully, be a better way to regain any lost functions and allow the patient with ALS to enjoy a good quality of life.
We will help patients find their treatment plans in India in the hands of a professional who knows all the knowledge related to ALS disease treatment in India with modern techniques in stem cell therapy.
3. Improved Recovery and Regeneration
Apart from curing diabetes and ALS, the regenerative capacity of stem cell therapy might cure many diseases. This new medical treatment has much seen hope in medical conditions like heart attack, orthopedic injuries, and autoimmune diseases. This potentiality of repairing or replacing damaged tissues by the use of stem cells grants an invaluable tool in modern medicine.
MedTravellers would help the patient who travels from Australia to conduct a stem cell therapy journey in India so that they could undertake treatment with personalized plans assembled to maximize recovery and promote general well-being.
4. Cost-EffectivenessOne of the advantages of receiving stem cell therapy for Australian patients is that it is cost-effective in comparison with procedures undertaken in Western countries. Patients can receive quality care at a lower cost, which increases its attractiveness in the eyes of those seeking advanced medical treatments.
Guides patients from Australia through all financial and logistical aspects of your treatment can be taken into confidence with regard to transparent cost estimates and allowing us to make logistical arrangements.
Why Choose India for Stem Cell Therapy?
1. Best hospitals and clinics
India has a few of the world-class hospitals and clinics with latest technology and infrastructure to provide stem cell therapy. Most such institutions are accredited by international bodies, so a patient will be assured of top-notch care and treatment.
2. Expert doctors and medical staff
There are celebrities of Indian doctors who practice other aspects, including regenerative medicine. The majority of us have been trained through various institutions across the globe with experience in conducting different stem cell procedures.
3. Integrated Care
India provides a wholesome approach to health care, not only in the treatment but also patient's wellbeing. Healthcare providers offer not only the consultations before the treatment but also post-treatment follow-ups to provide comprehensive care, covering all the aspects of a patient's needs- physical and emotional.
Role of MedTravellers
MedTravellers aims to make the journey through healthcare for the patients all around the world smooth and simple. Our services include:
Customized treatment plans: Because every patient is different, MedTravellers tailors a specific treatment plan to fit the unique health case of each patient.
Hospital Coordination: MedTravellers gets in touch with the best hospitals and specialists that are available in India to provide the most appropriate care that a patient might need.
Travel Assistance: Visa processing, accommodation arrangements, and so much more, we will take care of all your travel logistics, so you can concentrate on your health.
Ongoing Support: Follow-up support after the treatment, for patients to continue thriving after your therapy is one of the most important requirements and availability of this service is provided by MedTravellers.
Conclusion
Stem cell therapy is changing the face of modern medicine in hope for patients worldwide. Patients with chronic diseases like diabetes and ALS are looking forward to these treatments for which Indians have become the first destination and patients from Australia are seen visiting that place.
MedTravellers and others will make treatment journeys easy, smooth, and very supportive with access to world-class medical care in India. If you ever or your beloved ones are planning for stem cell therapy for autism in India, explore your options with India. Take the chance to revolutionize your health and your life back.
To learn more about how MedTravellers can help you in your travels to better health, visit our website or directly contact us for personalized input tailored to your specific needs. Your journey to good health begins today!
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stemcelltherapyinindia · 5 months ago
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Why Choose India for ALS Stem Cell Treatment?
🌿 Seeking effective ALS treatment? India stands out with its advanced stem cell therapy, world-class medical facilities, and affordable care. Experience top-notch treatment from renowned specialists dedicated to improving quality of life and slowing disease progression.
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medacess · 2 months ago
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How much does stem cell treatment for ALS cost in India
Stem cell therapy for ALS in India is a cost-effective option compared to many countries. To discover the leading centers in India for stroke recovery using cutting-edge stem cell therapy. Start your healing journey today!
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indiamedicaltourism · 6 months ago
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Sickle Cell Anemia Treatment in India for Foreign Patients
Sickle cell disease is a hematological disease. Sickle cell is a genetic disorder that affects the hemoglobin in red blood cells. Red blood cells are shaped like sickle or crescents in sickle cell anemia. These cells block blood flow in our body. Red blood cells are generally flexible and round. Sickle cell anemia breaks down the red blood cells that carry oxygen for our body. A change in the HBB gene causes sickle cell anemia. For a child who has sickle cell amenia, both parents must carry one copy of the gene and pass it to the child. Their blood might hold sickle cells, but generally do not have symptoms. It can pass from person to person and change over time. Symptoms normally develop around six months of age. Some symptoms of sickle cell anemia may include anemia, swelling of hands and feet, episodes of pain, frequent infections, vision problems, delayed growth and puberty, etc. There are various types of sickle cell disease. These different types depend on the hemoglobin genes of a person from their parents. The main types are:
Hemoglobin SS (HBSS)
Hemoglobin SC (HBSC)
Hemoglobin Beta Thalassemia (HBS)
HBSD, HBSE, and HBSO
Sickle cell treatment may begin with antibiotics for newborns and children. This treatment focuses on managing complications, and symptoms and improving the quality of life. Some treatment methods for sickle cell anemia are pain management, preventing infections, red blood cell transfusions, marrow or stem cell transplants, gene therapy, supportive care, and all.
Sickle Cell Anemia Treatment Cost in India
Comparedto many Western countries India offers the most effective treatment options at affordable prices. Sickle cell treatment cost depends on the treatment plan according to the patient's condition. The average cost of sickle cell treatment in India starts from 15000 USD and goes up to 40000 USD. 
Best Sickle Cell Anemia Treatment Doctors in India
India has many top doctors for sickle cell treatment. These doctors have years of experience in handling complexity with skill. Here are some best sickle cell treatment doctors in India.
Dr.Revathi Raj (MBBS, DCH, PLAB, MRCP, FRCP Senior consultant – pediatricHeamatology Oncology)
Dr.Pravas Chandra Mishra (HOD, Heamato-OncologIst)
Dr.Anoop P (professor & specialties of pediatricHeamato-Oncology)
Dr. T P R Bharadwaj (specialties of paediatric Heamato-Oncology)
Dr. Ashish Dixit (consultant – pediatricHematology Oncology)
Top Sickle Cell Anemia Treatment Hospitals in India
There are manygreat hospitals for sickle cell treatment in India. These hospitals provide the latest technologies, a team of expert doctors and specialists, innovative infrastructure, and comprehensive care. Some top hospitals for sickle cell treatment in India are given below:
Apollo Hospitals (Delhi)
KokilabenDhirubhaiAmbani Hospital (Mumbai)
Medanta - The Medicity (Gurgaon)
Jaslok Hospital (Chennai)
Narayana Health Institute (Bangalore)
Fortis Malar Hospital (Chennai)
Al AfiyaMedi Tour is one of the best medical tourism companies in India. We offer medical tourism services in India foreign patients. Some of the main countries are Bangladesh, South Africa, Uganda, Zambia, Namibia, Iraq, Kenya, Ethiopia, Nigeria, and so on. We provide free assistance for TURP surgery cost, lung cancer treatment, stomach cancer treatment,liver transplant cost, best hospital for heart valve replacement, liver cancer treatment cost, bone marrow transplant cost,arthroscopic surgery, best liver transplant hospital, brain tumor surgery cost, kidney transplant, cancer treatment cost, liver transplant treatment, best bone marrow hospital, etc.  If you are searching for free medical and healthcare consulting to find the best hospitals and top doctors and surgeons in India for any treatment then contact us- Alafiyameditour.com.
Source: https://alafiyameditour1.blogspot.com/2024/05/sickle-cell-anemia-treatment-in-india_28.html
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medtravellers · 9 months ago
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Stem Cell Treatment for ALS in India - MedTravellers
With MedTravellers' stem cell therapy, we aim to slow down, regress, and potentially halt the progression of ALS disease. Consult today.
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aegislifescience · 9 months ago
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Role of SURGISPON® in Dog’s Dental Surgery
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Clefts of the lip, alveolus, and palate are among the most common craniofacial birth abnormalities found in both humans and animals. Traditional treatments, such as autogenous bone grafts, have long been regarded as the gold standard. However, these methods have substantial disadvantages, including limited bone availability and donor-site problems such as post-operative pain, changes in sensation, and the risk of infections and scarring. Fortunately, recent approaches in cell therapy and tissue engineering provide promising solutions to these issues. One interesting strategy is to use a gelatin sponge scaffold combined with cultured stem cells to repair cleft alveoli in dogs. In this blog, we’ll explore how combining these innovative approaches particularly utilizing a gelatin sponge scaffold with cultured stem cells, can revolutionize the treatment of craniofacial defects in dogs.
Role of Gelatin Sponge, Cell therapy, and Tissue Engineering
Gelatin Sponge Scaffold: The gelatin sponge acts as a three-dimensional scaffold, providing structural support to the repair site. Its porous shape enables for the penetration of cells and growth substances, which promotes tissue regeneration and repair.
Cell therapy: It involves the use of stem cells, which have the unique capacity to differentiate into multiple cell types such as bone and soft tissue cells. These cells can be obtained from the patient’s own tissues or from compatible donors which lowers the chance of rejection and other complications.
Tissue engineering enhances cell treatment by creating a favourable environment for cell proliferation and tissue regeneration. Gelatin sponge excels in hemostasis, which ensures that blood flow is efficiently controlled. This is especially important in veterinary surgery, when patients are unable to verbalise their distress, making precision and safety critical. In some circumstances, gelatin sponge serves as a scaffold for bone graft materials, facilitating the formation of new bone and tissue regeneration.Gelatin is notable for being both absorbent and non-adherent. It will eventually absorb within the body after it serves its purpose of controlling bleeding. This eliminates the need for a second surgery to remove it resulting indecreasing post-operative complications and ensuring a faster and smoother recovery for the animal patient.
Clinical Study Insights:
A clinical study involving 12 healthy mongrel dogs utilized Gelatin Sponge (SURGISPON®, Aegis Life Science, India) as a scaffold, along with stem cells, to repair alveolar bone defects.This study concluded that stem cells cultured on gelatin scaffold accelerated the healing and regeneration of alveolar cleft and new bone formation in dogs [1].
Fig.1: A. The surgical site was covered with sterile surgical towels. B. A standardized alveolar bone defect defects (0.8Å~0.5Å~0.5 mm). C. The defect filled with a scaffold Surgispon® (Aegis Life Sciences) [1].
Further Advancements:
Aegis Lifesciences has introduced a new product HaemoVet® Dental sponges which comprised of Absorbable Gelatin Sponge and offer alternatives for veterinary dental surgeries.When implanted in tissues in appropriate amounts, it completely absorbs within<4 weeks. In oral and dental surgery, HAEMOVET® Sponges serve as a valuable aid in achieving hemostasis. HaemoVet® may be used either dry or moistened, depending upon conditions present at operation and preference of the surgeon. Isotonic saline is suitable for use with HaemoVet®.
Additionally, HaemoVet® Dental sponge, impregnated with colloidal silver, provides additional antibacterial properties, ensuring optimal healing conditions in the oral cavity.
HaemoVet® Dental Sponge
HaemoVet® Silver Sponge
References
Eman A. El Ashiry, Najlaa M. Alamoudi, Reem M. Allarakia, Amr M. Bayoumi, Essam E. Ayad, Amani A. Al Tuwirqi, Maha M. Mounir, RahafSahhaf, Mohmed A. Abd El hamid, Omar A. El Meligy. Histological and histomorphometrical evaluation of adipose tissue and bone marrow-derived mesenchymal stem cells in regeneration of the cleft alveolus in dogs. Medical Science, 2020, 24(102), 750-764.
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healthcareconsultant458 · 11 months ago
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Healing the Future: Unveiling the Best Doctors for Stem Cell Treatments in India
Overview:
Stem cell transplantation, often known as a bone marrow transplant, is a procedure that replaces unhealthy blood-forming cells with healthy cells. Stem cell transplantation allows doctors to administer high doses of chemotherapy or radiation treatment to increase the likelihood of eliminating blood cancer in the marrow and then restoring normal blood cell production. The basis for stem cell transplantation is that blood cells and immune cells arise from the stem cells, which are found in the marrow, peripheral blood, and cord blood. Intensive chemotherapy or radiation therapy kills the patient's stem cells.
The process of stem cell therapy
In the context of ALS, stem cell therapy focuses on delivering healthy stem cells to the affected areas of the central nervous system, particularly the spinal cord and brain. The two main types of stem cells used in ALS treatment are embryonic stem cells and adult stem cells derived from sources like bone marrow or adipose tissue. Once the stem cells are obtained, they undergo a thorough screening and preparation process. These cells can be modified to enhance their ability to differentiate into motor neurons and support their survival in the affected areas. Following this, the stem cells are transplanted into the patient's spinal cord or injected intravenously, allowing them to migrate to the damaged regions and exert their therapeutic effects.
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Why best doctors for stem cell therapy in India are considered world best
The presence of the best doctors for stem cell therapy in India is a major factor drawing patients to the country. These specialists have made significant contributions to managing patients with blood cancer disorders and diseases related to bone marrow damage. India is fortunate to have a considerable number of the best doctors for stem cell therapy who have achieved remarkable success rates in treating leukemia cases. This success is a compelling reason for an increasing number of patients to choose India as their destination for starting and completing their leukemia treatment. Best doctors for stem cell therapy in India possess impressive skills and an unrivaled skill set developed over years of experience in treating patients with blood cancers. They have successfully provided a new lease of life to numerous patients from around the world. Leukemia treatment offered by the best doctors for stem cell therapy in India is only a fraction of the price compared to the costs in patients' home countries. India holds a prominent position on the global stage, offering high-quality cancer treatment options for leukemia patients.
How top stem cell therapy hospitals in India are considered the best globally
India is establishing itself as a powerhouse in the arena of medical care. Numerous top stem cell therapy hospitals in Indiaare well-known for providing stem cell therapy to international and domestic patients at an affordable cost. Top stem cell therapy hospitals in India offer the best treatment options available with modern-day techniques backed by state-of-the-art equipment that plays a crucial role in providing high-quality stem cell treatment. Top stem cell therapy hospitals in India provide stem cell treatments and are known to have international-class hospital infrastructure with a dedicated medical staff and highly certified stem cell experts and doctors specialized in rendering stem cell treatments. Top stem cell therapy hospitals in Indiaare also equipped with world-class facilities for patient satisfaction.
Invaluable benefits you will get from Tour2india4health consultant
Tour2India4Health consultant is a renowned and best medical service provider in India, dedicatedly helping patients and their families by providing assistance in visa processing, travel logistics, and transportation for surgery, medical treatment, hospitalization, travel, and accommodation in India. With the aim to make people's experience absolutely safe, our experts personally take care, right from receiving them at the airport to making preparations for hotel accommodation and transportation, and locating the best health facility. Tour2India4Health consultant has associations with leading hospitals, surgeons, and physicians in India, which assist us in making patients avail world-class hospital care at affordable rates.
Plan Your Medical Trip to India for Successful Stem Cell Therapy in India. Book an appointment with Tour2India4Health Consultants for low-cost Treatment Call Us : +91-9325887033 or Email Us at [email protected].
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placidwaymedicaltourism · 2 years ago
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How much for Stem Cell Therapy for ALS in India? Stem Cell Therapy for ALS Stem cell therapy for ALS in India may offer some hope for those suffering from this debilitating disease. In this article, we will discuss what ALS is, the causes and effects of ALS, and how stem cell therapy can help treat this condition. We will also take a look at the cost of stem cell therapy for als in India, and why so many people are choosing to undergo treatment in this country. What is ALS? ALS is a neurodegenerative disease that affects nerve cells in the brain and the spinal cord. The progressive nature of ALS means that symptoms gradually get worse over time. Early symptoms of the disease may include weakness in one or more muscles, slurred speech, and difficulty chewing or swallowing. As the disease progresses, people with ALS lose the ability to move their arms and legs, and may eventually become paralyzed. They also lose the ability to speak, breathe, and eat. ALS is often fatal, with most people dying within three to five years of diagnosis. Can Stem Cell Therapy help ALS? There is no cure for ALS, but stem cell therapy may offer some hope for those suffering from this debilitating disease. Stem cells are undifferentiated cells that can turn into any type of cell in the body. They have the ability to replace damaged or diseased cells, which makes them a promising treatment option for many diseases, including ALS. How effective is Stem Cell Therapy for ALS? There have been several studies looking at the effectiveness of stem cell therapy for ALS. So far, the results have been mixed. However, there is evidence that stem cell therapy can help improve symptoms in some people with the disease. In addition, stem cell therapy is a relatively safe treatment option, with few side effects reported. Cost for Stem Cell Therapy for ALS in India The cost of stem cell therapy for ALS varies depending on the clinic and the type of treatment used. However, it is generally much cheaper than traditional treatments such as medication or surgery. In India, the cost of stem cell therapy for ALS starts at around Rs. 50,000 ($750). Where to get stem cell treatment for ALS? If you are looking for stem cell therapy for ALS, India is a great option. There are several reasons why people are choosing to undergo stem cell therapy for ALS in India. Firstly, the cost of treatment is much cheaper than in other countries. In addition, India has some of the best medical facilities in the world, and the doctors are highly skilled and experienced in treating ALS. The country also has a large pool of stem cells, which means that there is a good chance of finding a suitable match for each individual patient. Finally, India is known for its high standards of quality and safety. The clinics here are closely regulated by the government, and all treatments are carried out in a sterile environment. Top clinics for Stem Cell Therapy in India There are a number of clinics in India that offer stem cell therapy for ALS. Here are some of the top clinics: .svc_categories_filter_493 li a.active{color: !important;background: !important;} /*for dropdown start*/ /*for dropdown end*/ div.svc_post_grid_493 article{ background: !important;} div.svc_post_grid_493 article:hover{ background: !important;} div.svc_post_grid_493 article section p a.svc_title{color: !important;} div.svc_post_grid_493 article section p a.svc_title:hover{color: !important;} nav.svc_infinite_493 div.loading-spinner .ui-spinner .side .fill{ background: !important;} StemRx Bioscience Solutions – Stem Cell Treatment in Mumbai India Read More  Dr. Pravin Patel Hospital – Stem Cell Treatment in Gujarat, India
Read More  Stemregx – Regenerative Medicine in Mumbai India Read More  Stem Cell Joints India – Regenerative Medicine in Chennai India Read More  Auto Stem Laboratories – Stem Cell Treatment in Chennai, India  Read More  ICAM Wellcare Clinic For Stem Cell in Bengaluru India Read More  var wl = jQuery(window); jQuery(document).ready(function(){ jQuery('.svc_load_more_493').click(function(event) { event.preventDefault(event); jQuery('nav.svc_infinite_493 p').css('visibility','hidden'); jQuery('nav.svc_infinite_493 div.loading-spinner').show(); var div_position=jQuery('#svc_form_load_more_493').position().top; jQuery('#svc_paged_493').val(Number(jQuery('#svc_paged_493').val())+1); var params=jQuery('#svc_form_load_more_493').serialize(); jQuery.ajax({ type: 'POST', url: 'https://globalstemcelltherapy.com/wp-admin/admin-ajax.php', data: params+'&action=svc_layout_post', success: function(response) { isotop_callback(response,''); } }); }); var container = jQuery('#svc_post_grid_493').imagesLoaded( function() { jQuery('#svc_post_grid_list_container_493').show(); jQuery('#svc_mask_493').hide(); svc_imag_animation(); container.isotope({ itemSelector: '.element-item', filter: '*', layoutMode: 'fitRows', }); //var ic = 0; //var ci = setInterval(function(){container.isotope();if(ic>10){clearInterval(ci);}ic++;},400); }); var filters = {}; jQuery('#svc_categories_filter_4930').ddslick({ onSelected: function(selectedData){ //var filterValue = selectedData.selectedData.value; var filterValue = ''; jQuery('.filter_child_divs_493').each(function(){ var v = jQuery(this).children('div').children('div').children('.dd-selected-value').val(); if(typeof v != 'undefined' && v != '*'){ filterValue += v; } }); if(filterValue == '**' || filterValue == ''){ filterValue = '*'; } container.isotope({ filter: filterValue }).isotope(); } }); jQuery('#svc_categories_filter_4931').ddslick({ onSelected: function(selectedData){ //var filterValue = selectedData.selectedData.value; var filterValue = ''; jQuery('.filter_child_divs_493').each(function(){ var v = jQuery(this).children('div').children('div').children('.dd-selected-value').val(); if(typeof v != 'undefined' && v != '*'){ filterValue += v; } }); if(filterValue == '**' || filterValue == ''){ filterValue = '*'; } container.isotope({ filter: filterValue }).isotope(); } }); jQuery('#svc_categories_filter_4932').ddslick({ onSelected: function(selectedData){ //var filterValue = selectedData.selectedData.value; var filterValue = ''; jQuery('.filter_child_divs_493').each(function(){ var v = jQuery(this).children('div').children('div').children('.dd-selected-value').val(); if(typeof v != 'undefined' && v != '*'){ filterValue += v; } }); if(filterValue == '**' || filterValue == ''){ filterValue = '*'; } container.isotope({ filter: filterValue }).isotope(); } }); function isotop_callback(response,view_filter){ var res = jQuery(response); res.imagesLoaded( function() { if(view_filter == 'yes'){ container.htm
l(''); } container.isotope({transformsEnabled: false,isResizeBound: false,transitionDuration: 0}).isotope( 'insert',jQuery( response ) ).isotope({transformsEnabled: false,isResizeBound: false,transitionDuration: '0.8s'}); svc_imag_animation(); //var ic = 0; //var ci = setInterval(function(){container.isotope();if(ic>8){clearInterval(ci);}ic++;},400); jQuery('#svc_infinite_493').val('0'); if(jQuery('#svc_paged_493').val() == jQuery('#svc_total_paged_493').val()){ jQuery('nav.svc_infinite_493').hide(); jQuery('#svc_infinite_493').val('1'); } jQuery('nav.svc_infinite_493 p').css('visibility','visible'); jQuery('nav.svc_infinite_493 div.loading-spinner').hide(); jQuery('.svc_highres_493').magnificPopup({ type: 'image', closeOnContentClick: false, closeBtnInside: false }); jQuery('.ajax-popup-link-493').magnificPopup({ type: 'ajax', closeBtnInside:false, }); }); } jQuery('.svc_highres_493').magnificPopup({ type: 'image', closeOnContentClick: false, closeBtnInside: false }); jQuery('.ajax-popup-link-493').magnificPopup({ type: 'ajax', closeBtnInside:false, }); }); If you are considering stem cell therapy for ALS, India is a great option. The cost of treatment is affordable, the facilities are top-notch, and the doctors are highly skilled and experienced. So if you are looking for a way to improve your quality of life, stem cell therapy in India may be the right choice for you. Please contact us today for a free consultation. We will answer to any questions you have about stem cell therapy for ALS in India. Contact Us: https://globalstemcelltherapy.com/contact/ #HopeForALS #NewHopeForALS #StemCellTherapy #CureALS #StemCellTreatment
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stemcellindia01 · 3 years ago
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Your shoulder is a ball and socket joint. Usually, the ball at the top of your upper arm (humerus) moves smoothly in the socket of your shoulder blade (scapula) on a lining of cartilage. The cartilage prevents the bones from rubbing together. If your cartilage is damaged by injury or worn away by arthritis, it can make your joint painful and stiff.
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advancells6k-blog · 5 years ago
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ALS Treatment in India | Stem Cell Therapy For MND
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Happy Women in STEM day (11 February)
Women of colour in STEM matter
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Non-Western women in STEM matter
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Immigrant women in STEM matter
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Jewish women in STEM matter
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Disabled and chronically ill women in STEM matter
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Lesbian and bisexual women in STEM matter
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Trans women in STEM matter
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Women inventors matter
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Women in STEM matter
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(yes, many of these women fit into multiple categories)
Women pictured; I encourage people to learn more about them:
Katherine Johnson: mathematician and human calculator who worked for NASA
Mae Jemison: doctor, engineer and first black woman astronaut
Rebecca Cole: doctor and social reformer
Jane Cooke Wright: cancer researcher
Mary Golda Ross: First native American woman engineer; worked for Lockheed skunk works and in rocketry
Nergis Mavalvala: Astrophysicist who participated in first gravitational wave detection
Ginger Kerrick: NASA physicist and flight director
Monserrate Román: NASA microbiologist who contributed to developing the ISS
Mary Jackson: NASA computer and engineer
Tu Youyou: medical researcher who discovered some malaria treatments
Indira Nath: immunologist; leprosy researcher
Alexandra Elbakyan: programmer who created Sci-hub
Sarah Al Amiri: computer scientist, former environmental minister and current head of UAE space program
Sameera Moussa: nuclear physicist; studied applications in medicine and energy
Wang Zhenyi: astronomer, mathematician, poet, polymath
Olga Tsuberbiller: mathematician; wrote standardized geometry textbook for USSR high schools
P. K. Thressia: India’s first woman chief engineer
Noriko Arai: roboticist
Cecilia Payne: astronomer; wrote important thesis about stellar atmospheres
Chien-Shiung Wu: nuclear physicist
Irma Goldberg: chemist
Flossie Wong-Staal: virologist who studied HIV
Alexandra Olaya-Castro: astrophysicist and quantum biophysicist
Marie Skłodowska Curie: discovered radioactivity
Maria Goeppert Mayer: theoretical nuclear physicist
Sossina Haile: chemist, invented solid acid fuel cells
Sofia Kovalevskaya: mathematician and writer
Vera Rubin: astronomer who discovered dark matter
Emmy Noether: mathematician who contributed to theory of relativity
Marietta Blau: physicist; studied cosmic rays
Rosalind Franklin: chemist; charcoal specialist; radiographer who discovered structure of DNA as well as several viruses
Rosalyn Yalow: medical physicist
Esther Lederberg: microbiologist; bacterial geneticist
Mayana Zatz: geneticist and genetic counselor
Stephanie Horovitz: chemist; proved that isotopes exist
Joan Feynman: space weather researcher
Annie Jump Cannon: astronomer; invented classification system for stars
Henrietta Swan Leavitt: astronomer; discovered Cepheid variable stars
Chieko Asakawa: computer scientist; develops accessibility technology
Farida Bedwei: software engineer
Helen Taussig: pediatric cardiology pioneer
Susan La Flesche: doctor, public health advocate, native American advocate
Ada King, countess of Lovelace: mathematician, writer; wrote first computer program
Joan Ball: invented first computer dating service
Caroline Hershel: astronomer; discovered several comets
Sophia Jex-Blake: doctor; fought for women in medicine
Marina Logares Jiménez: mathematician and LGBTQ+ activist
Katie Mack: astrophysicist and cosmologist
Sally Ride: astrophysicist and first American woman in space
Carolyn Bertozzi: chemist; bioorthogonal chemistry pioneer
Renée Hložek: cosmologist
Josephine Baker: doctor; radical public health advocate
Margaret Todd: doctor; coined the term isotope
Nina Vedeneyeva: physicist
Lynn Conway: computer scientist, inventor, engineer and transgender activist
Audrey Tang: software developer and technological minister
Joan Roughgarden: ecologist, evolutionary biologist, wrote about LGBTQ+ in nature
Rebecca Oppenheimer: astronomer
Martine Rothblatt: engineer, attorney, entrepreneur, biotechnologist, inventor
Robyn McCutcheon: astronomer, historian, engineer, foreign service worker (first to transition while abroad in foreign service)
Carys Massarella: doctor and transgender advocate
Autumn Kent: mathematician
Megan Povey: food physicist
Grace Hopper: computer scientist who invented COBOL, one of the first programming languages
Mary Sherman Morgan: rocket scientist; invented hydyne (type of rocket fuel)
Radia Perlman: computer programmer and network engineer who developed some internet protocols
Yvonne Brill: rocket scientist; invented hydrazine resistojet propulsion system
Stephanie Kwolek: chemist who invented Kevlar
Gertrude Elion: invented several medicines
Peggy Whitson: biochemist and astronaut
Cynthia Breazeal: roboticist and human-robot interaction researcher
Patricia Bath: ophthalmologist
Hypatia: astronomer, mathematician, philosopher and teacher at the Library of Alexandria
Margaret Hamilton: computer scientist; wrote program for Saturn V
Emma Haruka Iwao: computer scientist; holds record for calculating digits of pi
Lisa Randall: theoretical physicist
Nancy Roman: astronomer; NASA’s first chief of astronomy
Claudie André-Deshays Haigneré: doctor, politician and first French woman in space
Eunice Newton Foote: biologist, inventor, feminist; first person to realize that climate change is happening
Frances Kelsey: pharmacologist; prevented FDA from approving thalidomide
Sophie Germain: mathematician
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stemcelltherapyinindia · 5 months ago
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Improved Paddy Straw as Ruminant Feed: A Review-Juniper Publishers
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Abstract
Paddy straw is a major agro-residue fed to ruminants in India. Feeding only rice straw does not provide enough nutrients to the ruminants even for maintenance due to the low nutritive value of this highly lignified material containing high concentration of anti-nutrition factors like lignin, silicates and oxalates. Despite the improvements of crop residues through various processing methods such as physical and chemical, the efficient utilization to desirable extent is still awaited. So utilization of paddy straw in association with concept of complete feed along with biological agents is need of the hour to maximize advantage from given feeds in animal production systems.
    Introduction
In tropical zones of the world, ruminants depend on grazing on natural pastures usually during summer months when these pastures have abundant biomass or these animals are fed with cut grass and crop residues. Most of these areas face seasonal periods in which there is decrease in availability of herbages in these pasture. There is also reduction in the content of digestible energy and crude protein. In these areas rice straw is abundantly available from paddy cultivation and farmers offer rice straw as the main roughage source to their animals. This is particularly the case in developing Asian countries such as Thailand, Vietnam, Indonesia and India [1]. Approximately 80% of the world's rice is grown by small scale farmers in many  developing countries including South East Asia (Table 1) and it is common to use rice straw for animal feeding. As per reports of Devendra [2] that of the total rice straw production, 30-40% is utilized for animal feeding in South East Asia, including China and Mongolia, as rice straw being the principal crop residue fed to more than 90% of the ruminant livestock in this area [3]. Rice straw becomes especially important during periods when other feeds are deficient. In general, the maximum intake of rice straw by ruminants is about 1.0 to 1.2kg per 100kg live weight [2]. As per Saritha et al. [4], the major agro-residues in terms of volumes generated in India (in million metric tons, MMT) were rice straw (112.00), rice husk (22.40), wheat straw (109.90), sugarcane tops (97.80) and bagasse (101.30).
Chemical composition of paddy straw and constraints in feeding to ruminants
The chemical composition of paddy straw varies between varieties and growing seasons, with higher nitrogen and cellulose contents in early season rice compared to others [5]. Paddy straw contains 25-45% cellulose, 25-30% hemi- cellulose and 10-15% lignin with low nitrogen, vitamins, minerals and high quantities of silica which hinder the nutrient availability to rumen microbes and eventually limits the necessary nutrient uptake for a satisfactory performance of the animals [6,7]. Presence of anti-nutritional factors like silicates and oxalates in rice straw with low nutritive value, poor palatability and limited ruminal degradation render paddy straw as non-maintenance type of fodder, so cannot support nutrient requirement of the animals when fed alone [6,8].
Compiled from Prasad et al. [39], Singh & Oosting [52], Shen et al. [49], Van Soest [59], Wanapat et al. [62], Ganai & Teli [19], Akinfemi & Ogunwole [4], Hossain et al. [22], Gomma et al. [21], Hussein et al. [23], Sheikh et al. [48].
The chemical and mineral compositions of rice straw, cited by different workers, are illustrated in Table 2. Rice straw consists predominantly of cell walls, comprised of cellulose, hemi cellulose, and lignin. To break down these components cellulase, hemi cellulase and ligninase are required [9]. In ruminants cellulase and hemicellulase are produced by rumen microorganisms however, lignin cannot be broken down in the rumen due to the lack of ligninase. Lignin, however, has important effects on livestock production through effects on degradability and feed intake. Theoretically, lignin located between the cellulose micro fibrils is regarded as the most abundant natural aromatic organic polymer that plays a role in resisting compressing forces, providing protection against consumption by insects and mammals, and also inhibiting the rate and degree of microbial degradation [10]. Silica, one element of the rice cell walls, can be present in high concentrations ranging from 5% to 15%, depending on the rice variety [11] and the availability of this mineral in the soil [12]. Silica reduces palatability and the degradability of rice straw in the rumen due to its direct action in preventing colonization by ruminal microorganisms [12,13]. The role of silica on the quality of rice straw was also reviewed by Van Soest [8], in an attempt to put into perspective the problems of silicon metabolism. Besides cell wall polymers, rumen organisms need other nutrients for growth and metabolism.
Since rice straw does not contain enough sugars, amino acids and minerals for efficient microbial growth, feeding ruminants with only rice straw, without any supplementation of other required nutrient sources, will result in poor performance of the animals [14]. The combination of low intake, low degradability, low nitrogen content and an unbalanced mineral composition means that rice straw alone may not even meet the animal's maintenance needs. Poor degradability is caused by a series of factors [9]. The fiber is very difficult to degrade, which is partly an intrinsic characteristic of the straw fiber (higher lignin and silca content). The degradation of the straw fiber is also complicated by the poor functioning of the rumen due to the unbalanced availability of nutrients, the low protein content, the lack of easily available energy and the low content of essential minerals such as phosphorus and sulphur. Hence, due to the low degradability and the poor rate of degradation, animals will tend to consume less. The generally accepted theory of feed intake regulation for poor quality roughages is that the capacity of the rumen to process the feed is the major factor determining voluntary feed intake [15,16]. The rumen processing capacity is characterized by rumen fill, the rate of degradation of potentially degradable matter and the rate of passage out of the rumen. Devendra [2] summarized that the main determinants of intake and degradability of rice straw depend on their morphological characteristics, such as the proportion of the different plant parts (leaves and stems), their chemical composition and the distribution of the different chemical components in the tissues, their relative amounts of cell contents and cell walls and the physical and chemical nature of the cell walls. These factors influence the chewing behavior of animals and the extent of fragmentation in the reticulo-rumen. As per Theander & Aman [17], rice straw contains a relatively high proportion of leaf (60%), compared to other cereal straws such as barley (35%), oats (43%) and wheat (20-41%). Vadiveloo [18] reported that leaves of rice straw contain less NDF than the stems, but more ash and acid-insoluble ash, resulting in a lower in vitro dry matter digestibility (IVDMD) of the leaves (50-51%) compared to the stems (61%). In goats, Phang & Vadiveloo [19] observed an in vivo dry matter digestibility of 56.2% for rice leaf and 68.5% for the stem. However, treatment with a 4% urea solution for 21d increased the IVDMD of the leaf fraction more than that of the stem fraction [18]. Since rice straw consists of approximately 60% leaves [20], which are less degradable than stems, improving the feed value of rice straw should focus on improving the degradability of the leaves.
Possible strategies to improve rice straw utilization in ruminants
Feeding only rice straw does not provide enough nutrients to the ruminants even for maintenance due to the low nutritive value of this highly lignified material. Basically, the key to improving the use of crop residues for ruminants is to overcome their inherent barriers to rumen microbial fermentation. In the case of rice straw, the important factors that restrict bacterial degradation in the rumen are its high levels of lignification and silicification, and its low contents of nitrogen, vitamins and minerals [21]. The high level of lignification and silicification, the slow and limited ruminal degradation of the carbohydrates and the low content of nitrogen are the main deficiencies of rice straw, affecting its value as feed for ruminants [8]. To improve the feeding value of rice straw, it can be treated with different means and methods and other required nutrients can be supplemented in the ration of the animal. Strategies to improve the utilization of rice straw are summarized.
    Physical and chemical treatment
Extensive work has been done to improve nutritive value of crop residues by chemical and physical treatments. In physical treatment crop residues can be ground, soaked, pelleted or chopped to reduce particle size or can be treated with steam or X-rays or pressure cooked. Many of these treatments are not practical for use on small-scale farms, as they require machines or industrial processing. This makes these treatments in many cases economically unprofitable for farmers as the benefits may be too low or even negative [9] By treating rice straw with urea or calcium hydroxide or by supplementing rice straw with protein, the intake, degradability and milk yield can be enhanced as compared to feeding untreated rice straw alone [22,23]. In past years, several studies have been reported on the physical and chemical characterization and utilization of rice straw as ruminant feed [5,17,24]. In addition, numerous methods of physical, chemical and biological treatments have been investigated, including supplementation with other feed stuffs or components in order to improve the utilization of rice straw by ruminants [25-30]. The most commonly used alkaline agents are sodium hydroxide (NaOH), ammonia (NH3) and urea. Chemical treatments appear to be the most practical for use at farmers level, the chemicals are relatively cheap and the procedures to use them are relatively simple. However, safety precautions are needed for their use as these chemicals themselves are not harmless. Warly et al. [31] showed in a field trial that a ration of rice straw supplemented with soybean meal increased both degradability and intake. Because of the poor quality of untreated rice straw, supplementation easily can increase milk production, as shown for supplementation with cottonseed meal with an urea molasses- multi-nutrient block [28,32,33] and urea molasses treatment [34].
Rice straw is usually fed untreated without supplements in spite of the fact that many methods for improved utilization of rice straw have been developed and recommended. There are several reasons for farmers not to adopt the already developed methods for improved utilization of straw, such as physical, socio-economic conditions and practical reasons [2].
    Biological Methods
Despite the improvements of crop residues through various processing methods such as physical and chemical, the efficient utilization to desirable extent is still awaited. Hence, it is the need of the hour to utilize these crop residues available in appreciable quantum locally in association with concept of complete feed technology and use of biological agents (feed additives) to maximize advantage from given feeds in animal production systems. Biological treatment is a much favorable option and is believed to be more eco-friendly and safer than the use of chemicals. Various methods of biological treatment/ fortification of paddy straw to enhance its utilization in animals include treatment with white rot fungi, ensilage with agro-industrial byproducts like apple pomace or fortification with proteins, greens or enzymes [35-38]. Although the use of white rot fungi causes significant loss of dry matter and organic matter [21,39] besides needs much more technical know and sometimes beomes impracticable at farmers level. The ensiling of straw with fruit pommace or poultry excreta or rumen liquor does not need sophisticated infrastructure with such facilities available at farmers level, but the advantage of these methods lies in fact of improving digestibility of nutrients, gain in body weight and overall performance of animals. Despite being safe and environmental friendly these biological agents have potent effect on digestibility of fodder by manipulating rumen environment. Gado et al. [40] reported decrease in the total phenolics, saponins and aqueous fraction with higher average daily gain, TDN and digestibility coefficients for DM, OM, CP, CF, NDF and ADF in Ossimi male lambs fed paddy straw ensiled orange pulp treated with exogenous enzymes diet than control. In other study Gado et al. [40] suggested a strong potential in improving digestibility and degradation of NDF and ADF of rice straw pre-treated with exogenous enzymes. Karunanandaa et al. [26,41] also reported enhanced IVDMD in both leaves and stems of rice straw by incubation with white-rot fungi (Pleurotus sajor-caju) for 30 days. However, entire rice straw (leaf and stem) treated with Cyathus stercoreus had the highest IVDMD compared to the other fungi. This improved digestibility of biologically treated straw is result of improvement in chemical composition as Akinfemi & Ogunwole [4] evaluated chemical composition and in vitro digestibility of rice straw treated with Pleurotus ostreatus, Pleurotus pulmonarius and Pleurotus tuber-regium found significant increase in the crude protein and significant decrease in crude fibre, cellulose, neutral detergent fibre, acid detergent fibre and acid detergent lignin of fungal treated rice straw than control. Fungal treated rice straw showed higher values of minerals (Ca and Mg), gas volume, metabolisable energy, organic matter digestibility and short chain fatty acid were also higher in fungal treated straw than control. White rot fungi efficiently degraded the lignin and enhanced the in vitro digestibility of paddy straw [4]
In another study Ganai & Teli [21] reported increase in CP, DCP and TDN content and nitrogen balance in Corriedale sheep fed paddy straw treated white rot fungi (Pleurotus ulmarius). Similarly Abdel-Azim et al. [42] reported that treating rice straw and corn stalks with Trichoderma viride, improved feeding value resulting in higher intake, N balance and growth rate in cross-bred lambs. The author also reported that DM consumption of fungal treated paddy straw was significantly higher than untreated straw. Bassiouni et al. [43] studied the effect of fibrolytic enzymes supplementation on In Situ degradability of DM, CP and CF of different rations consisted of concentrate feed mixture + berseem hay, dried sugar beet tops, corn silage, rice straw or wheat straw in different ratios 60:40or 40:60 incubated in canulated multiparous Friesian cows. Rations contained rice straw showed the lowest (P<0.05) values of in situ DM, CP and CF disappearance. In support of these findings Khattab et al. [37] studied chemical composition, nutritive value, in vitro digestibility and scanning electron microscopy (SEM) of rice straw (RS) and Pleurotus ostreatus spent rice straw (SRS) and reported higher protein, amino acids (mg/100g) content, in vitro dry matter disappearance (IVDMD) and in vitro organic matter disappearance (IVOMD) for SRS compared to RS while, DM, OM, NFE, CF, NDF, ADF, ADL, hemicellulose and cellulose were less for SRS than for RS. Pothiraj et al. [44] reported that fibrolytic enzymes of A. nigersuch as cellulase, p-glucosidase and xylanase had reduced the lignocellulose compound of the rice straw (Figure 1).
Some studies, using fibrolytic enzymes alone could not significantly increase the degradability of rice straw because the ability of these enzymes to break down the esterified bonds within lignin-carbohydrate complexes may be limited. However, when using in combination with other pre-treatments they could increase degradability and in vitro fermentation characteristics, as shown by Eun et al. [51] treated rice straw with xylanase or cellulase in combination with ammonia, Hussein et al. [52] treated rice straw with urea and commercial effective microorganisms, Liu & 0rskov [29] treated rice straw with cellulase in combination with steam pre-treatment, Wang et al. [46] treated rice straw with multi-enzymes (xylanase, β-glucanase, carboxymethyl cellulase and amylase) in combination with NaOH, found that the use of combinations of fibrolytic enzyme with these pre-treatments is expected to have a synergistic effect on the nutritive improvement of rice straw. evaluated use of rumen liquor, chicken manure and commercial probiotic to improve nutritional value of rice straw and reported that crude protein level of rice straw fermented with chicken manure was the highest followed by that of rumen liquor treatment and significantly different from those of commercial probiotic and control treatments. Crude fiber level of rice straw fermented with manure showed the lowest level but not significantly different from rumen liquor and commercial probiotics. These values were significantly lower than control. While assessing the effect of incorporation of wheat straw-rice straw (WS-RS in 50:50 ratio) or Pleurotus florida harvested spent WS-spent RS (50:50) in kids, Kaur et al. [47] observed a higher DM intake (0.80 vs. 0.65kgd-1), digestibility of majority of nutrients (except cellulose which was depressed), N-retention (5.36 vs. 4.87g), apparent biological value (63.08 vs. 53.43%) and daily live weight gain were comparable in both the groups. Apart from enzymatic treatment [37] reported the microbial application of rice straw degraded the lignocellulosic contents, thus improving the rumen DM degradability which would affect the weight gain of animal. By degrading the lignocellulosic contents of rice straw, more nutrients are made available for ruminal microflora, which in turn will sustain the longevity of the microbes.
More importantly, harmful microorganisms such as toxin-producing fungi that contaminate the rice straw could be suppressed by application of microbials on the feedstuff, proving its ability to restrain the growth of the harmful toxin- producing fungi. Gomaa [48] verified the potential benefits of supplementing rice straw with exogenous anaerobic bacterial enzymes (ZAD) and orange pulp for Ossimi sheep found significant (P<0.05) decreases in %CF, %NDF; while %CP, %ADF and %ADL values increased for rations containing either ZAD, orange pulp or both. Rams fed rations containing either ZAD, orange pulp or both significantly increased (P<0.05) ruminal ammonia-N, total volatile fatty acids plasma total protein with low level of gas production post feeding values. Similarly Salehpor et al. [49] evaluated the effect of rice straw processing by Lactobacillus, multi enzymes and calcium hydroxide on the digestibility and nutritional value. Each of three processing operation, reduce the amount of ADF, cellulose and hemicelluloses in the straw. The same trend also has been in the NDF and bacterial processing has the lowest and enzymatic, chemical and control straw have the greatest amount of NDF, respectively. The amount of gas production rate in the bacterial methods was more than the other methods and with increasing incubation time, shows upward trend. Addition of lignocellulolytic enzymes and bacterial lignocellulolytic on rice straw resulted in significant improvement of all the fermentation products (volatile fatty acid, acetate, propionate, butyrate, and ammonia) between control and treatment groups. Lignocellulolytic enzymes @ 5% of dry matter dose rate resulted in optimal products of volatile fatty acid and ammonia [50].
Similarly Samsudin et al. [51] found improved nutritive values of rice straw fed to goats when treated with Aspergillus niger, fungal and effective microbes (EM). No significant (P>0.05) difference was observed on the chemical composition of rice straw treated with A. niger except the CP content increased significantly (P<0.01) when compared with untreated rice straw. However, when the fungal-treated rice straw was inoculated with EM, significant (P<0.01) improvement was observed in DMD, CP, OM, NDF, ADF and cellulose content of the rice straw compared with control. In other study Elmoghazy et al. [53] evaluated effect of sheep diets containing lignolytic microbiological treated (Bacillus licheniformis, Ruminococcus albus, Aspergillus oryzae, Rhizopus nigricans & Saccharomyces cerevisiae) rice straw on blood parameters and nitrogen balance. Results exhibited that the microbiological treatments significantly decreased the DM and CF while CP was significantly increased. Regarding nitrogen balance, haemato- biochemical and serum enzymes (aspartate transaminase and alanine transaminase) were not affected with microbiological treatment. The use of combinations of fibrolytic enzyme with these pre-treatments is expected to have a synergistic effect on the nutritive improvement of rice straw. Especially, the use of lignin-degrading enzymes, originating from fungi, seems a promising development. Although, application of enzymes has proven to increase the feed value of poor quality feedstuffs, its use by smallholder farmers is, for the time being, economically unattractive. However, it becomes a promising technology when used at commercial level [54-65].
    Conclusion
Rice straw being the principle agro-residues in terms of volumes generated in India, is poor in nutritive value with high level of lignification and silicification. So feeding of rice straw to livestock does not provide enough nutrients even for maintenance. Rice straw is usually fed untreated without supplements in spite of the fact that many methods for improved utilization of rice straw have been developed and recommended such as physical, chemical and biological treatments. Among these methods, biological treatment is a much favorable option and is believed to be more environmental friendly and safer.
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indiamedicaltourism · 6 months ago
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Blood Cancer Treatment in India for Foreign Patients
Blood cancer, also called hematologic cancer, is a type of cancer that starts in the bone marrow, where blood cells are produced. There are mainly three types of blood cancer; leukemia, lymphoma, and myeloma. These can be further categorized as non-Hodgkin lymphoma, Hodgkin lymphoma, multiple myeloma, myelodysplastic syndromes (MDS) myeloproliferative neoplasms (MPNs), and amyloidosis. Some of the rare types of blood cancer are Waldenstrommacroglobulinemia and aplastic anemia.
Blood cancer treatment in India includes stem cell (bone marrow) transplantation, chemotherapy, immunotherapy, and radiation therapy. Sometimes the course of treatment consists of a combination of these. This article explores blood cancer treatment cost in India, the best blood cancer treatment hospitals in India, and the top blood cancer treatment doctors in India.
Blood Cancer Treatment Cost in India
Blood cancer treatment cost in India ranges between US$12000 and US$35000. The price of blood cancer treatment in India depends on various factors like fees of the oncologist, the patient’s age, the severity of the cancer, the course of treatment advised by the doctor, other lab tests, and the hospital’s location. Due to the affordability of blood cancer treatment in India, most international patients come to India to get their treatment done at a low cost.
Best Blood Cancer Treatment Hospitals in India
Blood Cancer Treatment in India has advanced majorly in the last ten years. India has become the most popular place for medical tourism. Al AfiyaMedi Tour helps you get the best blood cancer treatment in India by finding the best hospitals for you. These hospitals are known for their world-class treatment and exceptional patient care. Here is a list of some of the best blood cancer treatment hospitals in India:
Fortis Memorial Research Institute, Gurugram
Max Superspeciality Hospital, Delhi
Wockhardt Hospital, Mumbai
Artemis Hospital, Gurugram
Apollo Hospital, Bangalore
Nanavati Max Institute of Cancer Care, Mumbai
MedantaTheMedicity, Gurugram
Top Blood Cancer Treatment Doctors in India
There are many outstanding oncologists and hematologists in India. The best oncologists in India are highly experienced and skilled, ensuring the best blood cancer treatment. Our consultants are trained to match you with top blood cancer treatment doctors. These doctors prioritize your health and offer excellent medical care. Here are the top five oncologists in India:
Dr. VikasDua - PaediatricHemato Oncologist and BMT
Dr. Rahul Bhargava - Hematologic Oncologist, BMT
Dr. Vinod Raina - Medical Oncologist, Hematologist,
Dr. Dharma Choudhary - Haemato Oncologist & BMT
Dr. Rakesh Chopra - Medical Oncologist, Internal Medicine
Al AfiyaMedi Tour is a leading medical tourism company in India. We offer medical tourism services such as finding the right doctor, the right hospital, and cost estimation etc. Some of the main countries are Bangladesh, South Africa, Egypt, Uganda, Zambia, Sudan, Dubai, Namibia, Iraq, Kenya, Saudi Arabia, Ethiopia, Nigeria, and so on. We provide free medical assistance for TURP surgery cost, lung cancer treatment, bone marrow transplant cost, best liver transplant hospital, brain tumor surgery cost, cosmetic andplastic surgery, heart surgery, kidney transplant cost, spine tumor surgery etc.  If you are searching for free medical and healthcare consulting to find the best hospitals and top doctors and surgeons in India for any treatment then contact us- Alafiyameditour.com.
Source:https://alafiyameditour1.blogspot.com/2024/05/blood-cancer-treatment-in-india-for_22.html
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Dental Pro 7 Promo Code
Even though dental care was actually certainly not a concentrated division of Ayurveda, it is actually included in its own Shalakya Tantra (device of surgical treatment). Troubles such as impairments of the oral cavity, plaques and also contaminations were actually dealt with in ancient India. For more about Dental Pro 7 Directions
Typical medication may treat different transmittable and also persistent ailments. Study has shown that all kinds of chewing sticks defined in ancient Ayurveda text messages have therapeutic as well as anti-cariogenic residential or commercial properties. 
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Its oil drawing (Kaval, Gandush) technique is claimed to cure concerning 30 wide spread ailments. Amla (Emblic myrobalan), is actually a basic rebuilder of oral health. Bilberry fruit (Vaccinium myrtillus) and also hawthorn berry (Crateagus oxycanthus) support bovine collagen, enhancing the gum cells. Liquorice root (Glycyrrhiza glabral) markets anti-cavity action, reduces plaque, as well as has an antibacterial impact. Use safe, high quality products and also practices need to be ensured based upon offered evidence if standard medicine is actually to become acknowledged as portion of key healthcare. Scientific recognitions of the Ayurveda dental health strategies could possibly validate their unification right into modern-day dental treatment. Publicity of these techniques utilizing appropriate media would profit the standard populace by offering additional peace of mind in the ancient strategies, thereby avoiding dental caries and loss. Observe your dentist if you believe you possess gum disease due to the fact that the faster you alleviate it the much better. The onset of gum disease is actually contacted gingivitis. Keywords: Ayurveda, kaval, oral health, oil pulling, conventional medication Head to: OVERVIEW
Ayurveda is actually a comprehensive unit of medication which grew in India some 3000-5000 years back, an unit of traditional medication belonging to the Indian subcontinent, right now practiced in other portion of the globe as a form of corresponding medicine. [1] The earliest literary works on Indian medical technique showed up during the course of the Vedic period in India. The Susruta Samhita and the Charaka Samhita are its own earliest authoritative texts. 
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[2] Over the centuries, Ayurvedic experts created lots of medicinal plannings and surgical procedures for the treatment of numerous disorders as well as illness. [3] Despite the fact that dentistry was not a focused branch of Ayurveda, it was actually consisted of in its body of surgical treatment. In old India, problems including impairments of the oral cavity, oral plaque buildups as well as diseases might be handled as well as even remedied.
Conventional medicine is actually the sum total of know-how, capabilities and also methods based on the concepts, opinions as well as knowledge aboriginal to various societies that are used to sustain health, along with to stop, diagnose, strengthen or even deal with bodily and mental disorders. Standard medication that has actually been used by various other populaces (outside its own indigenous society) is often called complementary or even holistic medicine. Natural medications feature weeds, organic products, natural plannings, and ended up plant based items that contain aspect of plants or even various other vegetation components as energetic elements.
In some Asian and African nations, 80% of the populace depends upon conventional medication for main medical care. In numerous developed nations, 70% to 80% of the populace has actually made use of some type of alternative or complementary medication. Herbal therapies are the absolute most well-known form of conventional medication, as well as are actually strongly lucrative in the international market place. Yearly revenues in Western Europe connected with US$ 5 billion in 2003-2004. In China sales of products visited US$ 14 billion in 2005. Natural medicine revenue in Brazil was actually US$ 160 million in 2007. 
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[4] Ayurveda as well as oral health
In Ayurveda, dental health (danta swasthya in Sanskrit) is actually upheld be actually very self-loving, differing with everyone's constitution (prakriti), and also climatic adjustments resulting from sunlight, lunar and wandering effects (kala-parinama). The body constitution is classified based on the preponderance of several of the 3 doshas, vata, pitta and kapha. The authority dosha in both the personal and nature calculates medical care in Ayurveda, consisting of dental health. [5] Most likely to: CHEWING STICKS
Ayurveda advises chewing embed the early morning in addition to after every meal to prevent diseases. Ayurveda emphasizes making use of organic brushes, about 9 ins long as well as the fullness of one's little finger. These natural herb sticks must be actually either 'kashaya' (astringent), 'katu (acrid), or 'tikta' (unsweetened) in flavor. The method of use is to crush one point, eat it, as well as eat it little by little. [6] Toothbrushing is a task performed with a 'tooth brush' which is actually an unique little bit of brush developed for usage on teeth. Munching a medical stick of a kind encouraged through a Vaidya, or various other conventional professional, may validly be held to be equivalent to the western-pioneered activity of 'brushing the teeth ', yet it is not adequately comparable to be offered the same title, specifically because sticks that are actually nibbled are actually utilized entirely differently coming from combs.
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It is actually highly recommended that biting sticks be acquired coming from new contains of particular plants. The natures neem (margosa or the Azadiraxhta indica) is actually a widely known herbal chewing stick. The contains ought to be healthy and balanced, soft, without fallen leaves or knots as well as extracted from a healthy plant. Chomping on these stems is believed to cause attrition as well as levelling of attacking surface areas, assist in salivary tears and, probably, support in oral plaque buildup control, while some stems have an anti-bacterial activity. Apropos of the person's constitution and also prevalent dosha, it is actually mentioned that individuals with the vata dosha dominance might establish atrophic as well as receding gums, as well as are actually recommended to make use of chewing stick to bitter-sweet or even astringent flavors, like liquorice (Glycyrrhiza glabra) as well as black catechu or even the cutch tree (Acacia Catechu Linn.), specifically. [7] Pitta dosha dominant people are highly recommended to utilize chewing stick to an unsweetened taste including the branches coming from the margosa plant (Azadirachta indica or natures neem) and the arjuna plant (Terminalia arjuna). Those with the kapha dosha dominant are probably to possess ashen and hypertrophic gums as well as are inquired to utilize chewing sticks with a pungent flavor, pointing out the high temperature nut (Caesalipinia bonduc) as well as the popular milkweed plant (Calotropis procera). Modern research study has actually shown that all the chewing sticks described in ancient Ayurveda text messages (circa 200 BC) have medicinal as well as anti-cariogenic properties.
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 [8] Saimbi et alia (1994) examined the antiplaque effectiveness of Neem remove, Ayurvedic tooth particles and also commercial tooth mixes. Natures neem extract came out on top as well as office tooth mixes were actually the final. [9] In yet another research study Venugopal et al (1998) examined an overall of 2000 little ones (1-14 year age) in Mumbai for caries occurrence. Those youngsters who were using neem datun were actually found to be much less influenced along with tooth decays. [10] In southerly India, mango leaf is extensively used for cleansing teeth. A clean mango fallen leave is washed and the midrib is taken out. Fallen leave is then folded up lengthwise with lustrous surfaces experiencing one another. It is rolled right into a cylindrical pack. One end of the pack is actually bitten off 2-3mm to make a raw surface area which is rubbed on the teeth - pack is held in between the finger and the index finger. By the end, the midrib, which was first gotten rid of, is used as a tongue cleaner. Sumant et al (1992) examined the efficiency of mango leaf as an oral hygiene assistance and obtained appealing results. [11] Much higher delicate deposit ratings were actually disclosed in group that utilized mango fallen leave. Decays knowledge within this group using mango fallen leave resembled the group that used tooth brush. Mangiferin a material existing in mango leaves behind possessed significant antibacterial attribute against specific stress of Pneumococci, Streptococci, Staphylococci, and also Lactobacillus acidophilus.
The miswak (miswaak, siwak, sewak) is actually a teeth cleaning branch produced coming from a branch of the Salvadora persica plant, additionally known as the arak plant or the peelu tree as well as components in Islamic care jurisprudence. The miswak is predominant in Muslim places yet its own usage precedes the beginning of Islam. Almas and also Atassi (2002) administered investigation to analyze the effect of miswak and also tooth comb filaments end-surface texture on polish. 
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Twenty-one specimens were readied; they were separated right into Aquafresh toothbrush team, Miswak team as well as management team. Results showed that filaments end-surface structure play major part in unpleasant active task as well as polish tooth surface area reduction. Miswak presented smaller effect on enamel as matched up to Aquafresh toothbrush. [12] Almas and Zeid (2004) in a study to evaluate antimicrobial task of miswak eating stick in vivo, specifically on streptococcus mutans and lactobacilli concluded that miswak had an immediate antimicrobial effect compared to tooth brush. Streptococcus mutans were extra prone to miswak than lactobacilli. 
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