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The Best News of Last Week - January 09, 2023
1. Top British universities offer Afghan women free courses until Taliban lift learning ban
Afghanistan's ruling Taliban announced last month that women would no longer be able to study at universities and higher education establishments. Institutions were told to implement the ban as soon as possible.
Now, a number of British universities have teamed up through FutureLearn to offer the women in Afghanistan free access to digital learning platforms. Girls and women with internet access will be able to study more than 1,200 courses from top institutions at no cost to themselves.
2. Arizona Gov. Katie Hobbs extends protections to LGBTQ+ state employees and contractors
Arizona’s newly elected Gov. Katie Hobbs (D) signed an executive order extending employment protections to state employees and contractors who are LGBTQ+.
As the Human Rights Campaign reports, the executive order, signed on Hobbs’s first day in office Tuesday, directs the state’s Department of Administration to update hiring, promotion, and compensation policies for all state agencies to prohibit discrimination based on sexual orientation and gender identity and include provisions in all new state contracts to prohibit discrimination based on sexual orientation and gender identity.
3. EU Carbon Emissions Drop To 30-Year Lows
It was supposed to be a dirty autumn and winter, with European nations scrambling to replace Russian gas with high-polluting coal. But according to the Centre for Research on Energy and Clean Air, the cold seasons so far have been the cleanest in more than 30 years.
4. Critically endangered rhinoceros gives birth to calf at Kansas City Zoo on New Year's Eve
The Kansas City Zoo got a special start to the new year: A critically endangered subspecies of rhinoceros gave birth to a calf on Dec. 31, officials announced. The calf is walking, nursing and even playing with its mother, Zuri, animal specialists said.
5. Cancer Vaccine to Simultaneously Kill and Prevent Brain Cancer Developed
Scientists are harnessing a new way to turn cancer cells into potent, anti-cancer agents. A new stem cell therapy approach eliminates established brain tumors and provides long-term immunity, training the immune system to prevent cancer from returning.
link to the paper …
6. The US has approved use of the world's first vaccine for honey bees.
It was engineered to prevent fatalities from American foulbrood disease, a bacterial condition known to weaken colonies by attacking bee larvae. As pollinators, bees play a critical role in many aspects of the ecosystem.
The vaccine could serve as a "breakthrough in protecting honey bees", Dalan Animal Health CEO Annette Kleiser said in a statement. It works by introducing an inactive version of the bacteria into the royal jelly fed to the queen, whose larvae then gain immunity.
7. Cat missing for nearly 6 years reunited with owner thanks to microchip
West Sacramento woman got the surprise of a lifetime Saturday when she was reunited with her missing cat after nearly 6 years thanks to microchip.
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Stages of Protection
Cancer-inducing mutations are common in our tissues yet most don't result in a tumour. Tracing cells bearing potentially cancer-inducing mutations in the mouse mammary gland reveals mechanisms that protect against cancer formation as the gland is being continuously remodelled by stem cells
Read the published research article here
Image from work by Marta Ciwinska, Hendrik A. Messal, Hristina R. Hristova and colleagues
Division of Molecular Pathology, Oncode Institute, The Netherlands Cancer Institute, Amsterdam, the Netherlands; VIB-KULeuven Centre for Cancer Biology, Department of Oncology, Leuven, Belgium
Image originally published with a Creative Commons Attribution 4.0 International (CC BY 4.0)
Published in Nature, September 2024
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For patients battling diabetes, a group of Chinese scientists and clinicians may offer a glimmer of hope. For the first time in the world, a patient’s diabetes has reportedly been cured using cell therapy.
The patient, a 59-year-old man who had been living with type 2 diabetes for 25 years, was at serious risk of complications from the disease. He had a kidney transplant in 2017, but had lost most of his pancreatic islet function which controls blood glucose levels, and relied on multiple insulin injections every day.
“He was at great risk of serious diabetes complications,” Yin Hao, a leading researcher at Shanghai Changzheng Hospital, told Shanghai-based news outlet The Paper earlier this month.
The patient received the innovative cell transplant in July 2021. Eleven weeks after the transplant, he was free of the need for external insulin, and the dose of oral medication to control blood sugar levels was gradually reduced and completely stopped one year later.
“Follow-up examinations showed that the patient’s pancreatic islet function was effectively restored,” Yin said. The patient has now been completely weaned off insulin for 33 months.
The medical breakthrough, achieved by a team of doctors and researchers from institutions including Shanghai Changzheng Hospital, the Centre for Excellence in Molecular Cell Science under the Chinese Academy of Sciences, and Renji Hospital, all based in Shanghai, was published in the journal Cell Discovery on April 30.
“I think this study represents an important advance in the field of cell therapy for diabetes,” said Timothy Kieffer, a professor in the department of cellular and physiological sciences at the University of British Columbia in Canada.
Diabetes is a chronic condition that affects the way our bodies convert food into energy.
What we consume is broken down into glucose – a simple sugar – and released into the bloodstream. Insulin, produced by the islets of the pancreas, is essential for regulating blood sugar levels.
In diabetes, this system is hijacked: either the body does not produce enough insulin, or it cannot use the insulin it produces effectively.
There are several types of diabetes, of which type 2 is the most common, affecting almost 90 per cent of sufferers. It is largely diet-related and develops over time.
Regardless of the type of diabetes, failure to maintain normal blood glucose levels over time can lead to serious side effects, including heart disease, vision loss and kidney disease.
According to the US Centres for Disease Control and Prevention, “there isn’t a cure yet for diabetes”.
Along with losing weight, eating well and taking medication, insulin is the mainstay of treatment for some, but this requires frequent injections and monitoring.
Scientists around the world are researching islet transplant as a promising alternative, mainly by creating islet-like cells from human stem cell cultures. Now, after more than a decade of work, the group of Chinese scientists has come a step closer.
The team used and programmed the patient’s own peripheral blood mononuclear cells, Yin said, which were then transformed into “seed cells” and reconstituted pancreatic islet tissue in an artificial environment.
While preclinical data from Kieffer’s team supports the use of stem cell-derived islets for the treatment of type 2 diabetes, the report by Yin and colleagues is, to Kieffer’s knowledge, “the first evidence in humans”.
Yin said the breakthrough was another step forward in the relatively new field of regenerative medicine – where the body’s own regenerative capabilities are harnessed to treat illness.
“Our technology has matured and it has pushed boundaries in the field of regenerative medicine for the treatment of diabetes.”
Globally, China has the highest number of people with diabetes. According to the International Diabetes Federation, there are 140 million people with diabetes in the country. Of those, about 40 million depend on lifelong insulin injections.
China’s diabetic population is disproportionately high, according to Huang Yanzhong, a senior fellow for global health at the Council on Foreign Relations.
In an article last year, he pointed out that while China accounted for 17.7 per cent of the world’s population, the country’s diabetic population made up a staggering quarter of the global total, placing a huge health burden on the government.
If this approach for cell therapy ultimately works, Kieffer said, “it can free patients from the burden of chronic medications, improve health and quality of life, and reduce healthcare expenditures”.
But to get there, he added, studies in more patients based on the findings of this Chinese study were needed.
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Best Cancer Hospital In Chennai
Are you or a loved one navigating the difficult journey of cancer treatment? Choosing the right hospital is pivotal, and Chennai stands out as a leading hub for advanced cancer care. This city is home to some of the finest cancer hospitals offering comprehensive services, from diagnosis to recovery.
Key Factors in Selecting the Right Cancer Hospital
When choosing a cancer hospital, consider the following:
Expertise: Seek hospitals with experienced oncologists specializing in medical, surgical, and radiation oncology.
Technology: Opt for hospitals utilizing the latest advancements in immunotherapy, targeted therapy, and precision radiation.
Comprehensive Care: Look for facilities providing surgery, chemotherapy, radiation, and palliative care.
Accreditation: Ensure the hospital is nationally or internationally accredited for its high standards.
Personalized Care: A top hospital tailors treatments to each patient's unique diagnosis.
Support Services: Choose hospitals offering psychological counseling, nutritional guidance, and rehab.
Patient Reviews: Research patient experiences and success rates for assurance.
Top Cancer Hospitals in Chennai
Chennai is home to some of India’s best cancer hospitals, where state-of-the-art facilities and expert oncologists provide world-class care. These hospitals are renowned for their advanced treatments, including robotic surgery, stem cell transplants, and cutting-edge radiation technologies.
VS Hospitals: Known for robotic surgery, immunotherapy, and radiation oncology, VS Hospitals focuses on patient-centered care.
Apollo Hospitals: A pioneer in advanced cancer treatments with the CyberKnife system and stem cell transplants.
Adyar Cancer Institute: One of the oldest institutions offering high-quality, affordable cancer care with advanced diagnostic technologies.
Rajiv Gandhi Government General Hospital: Providing affordable, multimodal cancer treatments and comprehensive diagnostics.
Kauvery Hospital: Known for robotic cancer surgeries, immunotherapy, and personalized treatments.
Gleneagles Global Health City: A global leader in bone marrow transplants and advanced radiotherapy.
MGM Cancer Institute: Offering a range of treatments from chemotherapy to advanced robotic surgeries.
MIOT International: Specializes in precision surgeries and cutting-edge radiation therapies.
Sri Ramachandra Medical Centre: Renowned for advanced diagnostics, robotic surgeries, and targeted therapies.
MGM Healthcare: Provides comprehensive cancer care with a focus on personalized treatments and multidisciplinary approaches.
Why Choose Chennai for Cancer Treatment?
Chennai’s cancer hospitals offer:
Advanced Technology: These hospitals boast precision diagnostics, minimally invasive surgeries, and effective radiation therapies.
Expert Oncologists: Highly skilled oncologists ensure top-tier treatment outcomes.
Holistic Care: Mental, nutritional, and rehabilitative support helps patients during their recovery.
Research & Innovation: Access to cutting-edge clinical trials and treatments.
Comprehensive Treatment: Multidisciplinary teams provide personalized and thorough care from diagnosis to recovery.
Conclusion
Choosing the right cancer hospital is crucial for successful treatment, and Chennai’s hospitals provide world-class services that combine expert care, state-of-the-art technology, and compassionate support. With some of the most advanced cancer treatment options available, Chennai offers a healing environment for both patients and their families. Take your first step toward recovery by selecting the best hospital for your needs. For more details: https://bestoncologytreatment.com/onco-target/radiation-oncology-chennai
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Comprehensive Blood Cancer Treatment at RGCIRC: A Beacon of Hope in India
Rajiv Gandhi Cancer Institute and Research Centre (RGCIRC) in Delhi is a leading facility for blood cancer treatment in India, offering cutting-edge care and innovative therapies for conditions such as leukemia, lymphoma, and myeloma. With a multidisciplinary team of specialists, RGCIRC provides a comprehensive approach to diagnosing and treating blood cancers, ensuring patients receive personalized care tailored to their specific needs.
At RGCIRC, patients benefit from advanced diagnostic techniques, including molecular profiling, which helps identify the most effective treatment options. The hospital offers a range of therapies, from traditional chemotherapy to targeted therapy and immunotherapy, which harnesses the body's immune system to combat cancer. Additionally, RGCIRC is recognized for its expertise in bone marrow and stem cell transplantation, providing critical treatment for patients with advanced blood cancers.
The team of hematologists and oncologists at RGCIRC is highly trained and experienced, using the latest medical advancements to deliver high-quality care. The hospital also emphasizes supportive care, offering psychological counseling, nutritional guidance, and rehabilitation services to enhance patients' overall well-being throughout their treatment journey.
With a patient-centered approach, RGCIRC has become a trusted destination for blood cancer treatment in India, attracting both domestic and international patients seeking effective and compassionate care. The institute's commitment to excellence in treatment and research makes it a beacon of hope for those battling blood cancers.
For more information: https://www.rgcirc.org/patient-family/types-of-cancer/blood-cancer/
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Top Universities in the UK for Research Opportunities: Where to Build Your Academic Career
For students interested in groundbreaking research, the UK is home to some of the world’s top universities, offering robust academic and research environments. The country’s reputation for producing leading research spans various fields, from the sciences and engineering to humanities and social sciences. If you’re looking at top universities in UK to build your academic career, here’s a look at institutions known for their exceptional research opportunities, state-of-the-art facilities, and impactful partnerships.
1. University of Oxford
One of the most prestigious universities in the world, the University of Oxford is renowned for its strong focus on research. Oxford offers research programs across disciplines such as medical sciences, technology, humanities, and more. The university is known for its world-class laboratories, libraries, and research centers, which enable students to engage in high-level research. Oxford’s partnership with organizations like the UK Research and Innovation (UKRI) allows students to participate in cutting-edge projects with global impact.
2. University of Cambridge
The University of Cambridge stands as one of the UK’s leading research institutions, consistently ranked among the top globally. Cambridge is a powerhouse in fields such as biotechnology, physics, and artificial intelligence, with multiple Nobel Prize winners among its alumni and faculty. Cambridge fosters interdisciplinary collaboration, particularly through its dedicated research centers, such as the Wellcome Trust Centre for Stem Cell Research. With access to industry networks, students have excellent opportunities to transition their research into impactful career paths.
3. Imperial College London
As a leading institution in science, engineering, and medicine, Imperial College London is ideal for students pursuing research-intensive careers. The university’s focus on technology and innovation positions it as a top choice for students interested in areas like robotics, environmental sciences, and healthcare technology. Imperial has strong connections with industry giants, providing students with ample opportunities to work on real-world research projects and gain hands-on experience that’s essential for both academia and industry.
4. University College London (UCL)
University College London, or UCL, is another globally recognized research institution that promotes innovation across various fields, including social sciences, neuroscience, and urban development. UCL’s collaborative research approach allows students to work on large-scale projects, often funded by government and industry partnerships. The university’s proximity to research hubs in London enables students to network with professionals and expand their research exposure, making it an ideal location for those looking to study abroad in a vibrant academic community.
5. University of Edinburgh
Known for its high-quality research programs, the University of Edinburgh offers students extensive support through its world-renowned research centers, such as the Edinburgh Centre for Robotics and the Usher Institute for Population Health Sciences. Edinburgh’s research environment is rich with interdisciplinary projects that bring together expertise from various fields, making it an excellent choice for students interested in combining scientific research with real-world applications. The university’s commitment to sustainability and innovation also aligns with current global challenges, adding further value to its research initiatives.
6. King’s College London (KCL)
King’s College London is renowned for its impactful research, particularly in the medical sciences, international affairs, and humanities. As a research-led university, KCL is ideal for students looking to work with globally recognized experts in fields like psychology, law, and health sciences. King’s extensive partnerships with government bodies, NGOs, and industry leaders provide students with access to research funding, internships, and a pathway to influential research careers. With several research institutes based within its campus, King’s offers a dynamic environment for students to pursue cutting-edge projects.
7. University of Manchester
The University of Manchester is a powerhouse in research, particularly in fields like engineering, material sciences, and environmental studies. Manchester is home to Graphene research, an innovative field that has gained worldwide attention. Students can engage in projects funded by large-scale organizations, which allows them to make significant contributions to areas such as sustainable energy, biotechnology, and public health. Manchester’s emphasis on practical applications of research makes it a valuable institution for those aiming to make an impact on society through research.
8. London School of Economics and Political Science (LSE)
For students interested in social sciences, the London School of Economics and Political Science offers one of the best research platforms in the UK. LSE specializes in fields such as economics, political science, and international relations, and students are encouraged to engage in policy-driven research that influences both national and global discussions. LSE’s research facilities and connections with political and economic think tanks provide students with unique insights and opportunities to impact public policy.
Finding the Right Research Program with Professional Guidance
Choosing the best university for research often requires a thorough understanding of each institution’s research strengths, available resources, and academic culture. Consulting with an overseas education consultancy can provide personalized insights and recommendations based on your field of interest and career goals. They can guide you in narrowing down your options, assist with the application process, and help you make informed decisions as you embark on a research-focused academic journey.
In conclusion, the UK offers world-class research opportunities across its top universities, providing a fertile environment for international students aiming to build academic careers. Whether you’re interested in pioneering technology, social sciences, or environmental studies, the UK’s universities offer a supportive platform for impactful research. With the right guidance and preparation, you can secure a spot in one of these prestigious institutions and set the foundation for a fulfilling career in research.
Read more:
Fully Funded vs. Partial Scholarships in the UK: Which Is Right for You?
Top 10 Courses in the UK for High-Paying Careers in 2025
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The Future of Wellness: Why You Should Consider a Longevity Centre in India
The pursuit of longevity and wellness is no longer just about living a long life; it's about living a vibrant, healthy, and fulfilling life well into your golden years. As advances in science and medicine continue to emerge, longevity centers are becoming increasingly popular across the globe. In India, this trend is rapidly growing, with top-tier facilities offering cutting-edge therapies that aim to enhance both physical and mental well-being. From anti-aging treatments to holistic health optimization, longevity centers in India provide a unique blend of traditional and modern techniques to help people live their best lives.
One of the most exciting aspects of this new wave in wellness is the integration of advanced medical therapies such as Hyperbaric Oxygen Therapy (HBOT), which is gaining popularity in centers across cities like Hyderabad. This blog will dive into the reasons why you should consider a Longevity centre in India, how HBOT in Hyderabad is making a difference, and what makes India a growing hub for advanced wellness and anti-aging treatments.
1. Comprehensive Wellness Programs for Holistic Health
The best longevity centers in India take a holistic approach to health. They don't just focus on one aspect of well-being but instead provide personalized wellness programs that address every facet of your physical, mental, and emotional health. These centers combine traditional wellness techniques like Ayurveda, yoga, and meditation with modern medical innovations like regenerative medicine, detox therapies, and hormone optimization.
By visiting a Longevity centre in India, you’re investing in comprehensive health solutions designed to enhance your vitality. These wellness programs include everything from nutritional guidance and fitness plans to stress management and advanced diagnostic testing. With this full-spectrum approach, individuals can experience not only extended life expectancy but also improved quality of life.
2. Cutting-Edge Treatments like Hyperbaric Oxygen Therapy (HBOT)
A treatment that is becoming increasingly popular at longevity centers is Hyperbaric Oxygen Therapy (HBOT). This therapy involves breathing pure oxygen in a pressurized chamber, allowing more oxygen to enter the bloodstream, which helps promote healing, reduce inflammation, and improve cognitive function.
HBOT in Hyderabad has gained attention due to its numerous benefits for wellness and anti-aging. By increasing oxygen supply to tissues, HBOT promotes cellular repair and regeneration, aids in faster recovery from injuries, and boosts the immune system. People are turning to HBOT for its ability to support recovery from chronic conditions, improve skin health, and slow the aging process.
Early adoption of HBOT can help individuals maintain optimal health, especially in today's fast-paced environment where stress and pollution take a toll on overall wellness. HBOT in Hyderabad is becoming a go-to therapy for those seeking advanced medical interventions to maintain their youth and vitality.
3. Advanced Anti-Aging and Regenerative Therapies
As the field of longevity and anti-aging research evolves, centers in India are leading the way with innovative treatments that aim to reverse the effects of aging at a cellular level. Stem cell therapy, hormone replacement therapy, and IV nutrient infusions are just a few of the groundbreaking treatments offered at the Best longevity Centre in India.
These therapies help repair damaged tissues, improve organ function, and stimulate the body's natural healing processes. For individuals looking to slow down or even reverse the signs of aging, these advanced treatments offer a promising solution. They can help reduce wrinkles, increase energy levels, improve mental clarity, and enhance physical performance—allowing individuals to age gracefully and with vitality.
4. Access to World-Class Medical Experts
India has long been a destination for medical tourism, with its high-quality healthcare services and affordable costs. Longevity centers in India are staffed by some of the world’s leading experts in wellness, regenerative medicine, and anti-aging treatments. The medical teams at these centers include specialists in cardiology, neurology, dermatology, and holistic health, ensuring that you receive comprehensive care.
At the Best longevity Centre in India , you will have access to top-tier diagnostics and treatment plans personalized to your needs. Whether you're looking to treat a specific condition, recover from surgery, or simply optimize your overall health, these centers offer the expertise and technology necessary to meet your goals.
5. Combining Tradition with Modern Science
India has a rich history of wellness practices that have been refined over thousands of years. Longevity centers in India blend this ancient wisdom with the latest advancements in medical science. Ayurveda, yoga, and meditation are seamlessly integrated into modern therapies, creating a unique approach to health and longevity that caters to both the body and the mind.
This balance between traditional and contemporary methods makes Indian longevity centers stand out globally. You can experience the healing power of ancient techniques like Panchakarma detox therapies alongside state-of-the-art treatments like HBOT, stem cell therapy, and genetic testing. This combination allows for a holistic approach to health, helping individuals achieve balance, longevity, and vitality in every aspect of their lives.
6. Preventive Care and Early Intervention
One of the key advantages of visiting a longevity center is the emphasis on preventive care. Rather than waiting for health issues to arise, longevity centers focus on early detection and intervention. By undergoing advanced diagnostic tests and assessments, individuals can catch potential health risks before they become serious problems.
Treatments like HBOT in Hyderabad are ideal for individuals looking to stay ahead of their health. By starting these therapies early, people can prevent long-term damage to their cells and organs, boost their immune systems, and reduce their risk of chronic conditions such as heart disease, diabetes, and neurodegenerative diseases. Prevention and early care play a critical role in extending both life expectancy and the quality of that extended life.
Why You Should Consider a Longevity Centre in India
India is rapidly emerging as a global hub for longevity and wellness. The Best longevity Centre in India are equipped with world-class facilities, offering cutting-edge treatments such as HBOT in Hyderabad, stem cell therapy, and comprehensive wellness programs tailored to individual needs. These centers combine traditional practices like yoga and Ayurveda with modern medical advancements to provide a unique, holistic approach to health and wellness.
Whether you’re looking to slow the aging process, recover from illness, or optimize your overall health, a longevity center in India can offer the expertise, treatments, and holistic care you need. Investing in your health now not only helps you live longer but also ensures that your years are filled with vitality, energy, and a sense of well-being.
Take the first step towards a longer, healthier life. Explore the Best longevity Centre in India and discover how advanced treatments like HBOT in Hyderabad can help you achieve the future of wellness today.
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Understanding MDS in Melbourne: Comprehensive Care and Treatment Options
Myelodysplastic Syndromes (MDS) are a group of rare blood disorders that affect the production of healthy blood cells in the bone marrow. In Melbourne, Australia, healthcare providers have made significant strides in diagnosing and managing Mds Melbourne cutting-edge research, advanced treatment options, and patient-centric care.
What is MDS?
MDS occurs when the bone marrow, the spongy tissue inside bones, fails to produce enough healthy red blood cells, white blood cells, or platelets. This leads to symptoms such as fatigue, frequent infections, easy bruising, and anemia. In some cases, MDS can progress to acute myeloid leukemia (AML), a more aggressive form of blood cancer.
Diagnosis and Treatment in Melbourne
Melbourne boasts some of Australia’s leading medical institutions, offering advanced diagnostic tools and personalized treatment plans for MDS. Diagnosis typically involves:
Blood tests to check for abnormalities in cell counts.
Bone marrow biopsy to analyze the bone marrow’s condition.
Genetic tests to identify chromosomal changes that may indicate MDS.
Once diagnosed, treatment for MDS in Melbourne is tailored to the individual’s needs based on their disease severity, age, and overall health. Some common treatments include:
Supportive care such as blood transfusions or medications to manage symptoms.
Medications to stimulate the production of blood cells or suppress abnormal bone marrow activity.
Stem cell transplants, which may be recommended for younger patients or those with more aggressive forms of MDS. Leading Melbourne hospitals like the Peter MacCallum Cancer Centre offer such advanced procedures.
Research and Clinical Trials
Melbourne is at the forefront of MDS research, with several hospitals and universities participating in global clinical trials to develop more effective treatments. These trials provide patients with access to the latest therapies, often offering hope when standard treatments have not been successful.
Support for MDS Patients in Melbourne
Living with MDS can be challenging, both physically and emotionally. Melbourne has several support networks that offer guidance, counseling, and resources to MDS patients and their families. The Leukaemia Foundation, for instance, provides educational materials, support groups, and patient advocacy services.
For more info:-
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Biobanks Market 2024 Analysis, Research, Review, Applications and Forecast to 2030
Biobanks Industry Overview
The global biobank market size was estimated at USD 76.74 billion in 2023 and is projected to grow at a compound annual growth rate (CAGR) of 8.8% from 2024 to 2030.
High investments in the R&D of advanced therapies, such as regenerative medicine, personalized medicine, and cancer genomic studies, are some of the driving factors. Moreover, the onset of COVID-19 has put biobanks at the forefront of the pandemic control measures, resulting in the organic revenue growth of the market. The COVID-19 outbreak had a major influence on the biobanking industry. Biobanking is important for the diagnosis & production of medicines for a variety of disorders. International initiatives to produce vaccines and other medicines to prevent the spread of the virus have been urgently needed.
The collection, processing, and analysis of patient samples are at the frontline of the COVID-19 crisis. For example, the Health Minister announced EUR 2 million in financing for the National Irish COVID-19 Biobank (NICB) in a July 2021 update from the Government of Ireland. The NICB has become a critical part of Ireland’s COVID-19 pandemic response. According to a February 2021 release, the Sample Collection Database was designed by the SciLifeLab Data Centre in partnership with Biobank Sweden and the research area ‘Biobanks for COVID-19’ of the SciLifeLab & KAW National COVID-19 research program.
Gather more insights about the market drivers, restrains and growth of the Biobanks Market
Furthermore, Tulane University announced a new COVID-19 biobank containing blood & cell samples from survivors in July 2021 to aid researchers in determining why some people heal rapidly while others have long-term effects. As a result, such activities show that the outbreak of the pandemic boosted the demand for biobank services, benefiting the global economy.
The increasing popularity of precision/personalized medicine and genetic testing has been a key driver of the market. Biobanks have been playing a significant role in biomedical research. Over the past few decades, there have been several advances in platforms and tools used in genetic studies. This has led to an increase in demand for biospecimens from clinical labs to develop assays for genetic testing. Collaborations between private and public institutions in biobanking have played a crucial role in market progression.
Digitalization, precision medicine, and virtualization are rapidly changing the biobanking industry through the development of novel methods and concepts of synergies initiated by public and private organizations. Companies across all fields are partnering with biobanks, which accelerates the market revenue. For instance, in October 2023, UK Biobank partnered with several philanthropists. Through this partnership, UK Biobank will access USD 34.5 million in funding.
An exponential increase in the number of global cases has rendered the significance of biobanks in containing the spread of the virus. High-quality COVID-19 specimens are required and helpful for both research and diagnostic purposes, and biobanks are considered vital repositories for these samples. Thus, biobanks are gaining ground to support clinical research and drug discovery processes to combat this global disaster.
Developing countries from the Middle East region are investing in biobanks to advance the medical research domain in the country. For instance, in September 2023, the Crown Prince of Abu Dhabi announced the launch of a biobank to support the requirement of personalized medicine through advanced treatments that utilize human tissues and stem cells in medical research. This research will help treat over 80 diseases and immune system issues. Moreover, it strengthens the position of the UAE in the global biobanks market.
Browse through Grand View Research's Biotechnology Industry Research Reports.
The global plasmid purification market size was estimated at USD 1.72 billion in 2023 and is projected to grow at a CAGR of 11.60% from 2024 to 2030.
The global enzymatic DNA synthesis market size was estimated at USD 232.4 million in 2023 and is projected to grow at a CAGR of 26.4% from 2024 to 2030.
Key Companies & Market Share Insights
Some of the key players operating in the market are adopting various organic & inorganic strategies such as collaborations with biobanking service providers and technological innovation to advance their product offerings in the biobanking industry.
Key Biobanks Companies:
Thermo Fisher Scientific Inc.
Merck KGaA
Qiagen
Hamilton Company
Tecan Trading AG
Danaher Corporation
Becton, Dickinson, and Company (BD)
Biocision, LLC.
Taylor-Wharton
Charles River Laboratories
Lonza
Stemcell Technologies
Biovault Family
Promocell Gmbh
Precision Cellular Storage Ltd. (Virgin Health Bank)
Recent Developments
In October 2023, AstraZeneca research announced unique relationships between rare changes in plasma proteins and genes that could enhance drug discovery with data from more than 50,000 UK Biobank participants.
Similarly, in January 2023, Hamad Medical Corporation, in collaboration with Qatar BioBank, launched a Tissue Biobank Service in Qatar. This biobank will focus on collecting samples and finding new potential treatments for heart diseases & cancer.
In January 2023, Quibim and European Commission launched European Commission’s European Federation for Cancer Images (EUCAIM) biobank. This biobank will focus on developing treatments for cancers along with early detection techniques.
In December 2023, Charles River Laboratories International, Inc. announced an agreement with CELLphenomics to expand 3D In Vitro Services for drug screening of cancer therapy. CELLphenomics biobank has over 500 in vitro models from around 20 tumor entities. It offers one of the largest complex in vitro models of rare and ultra-rare tumors like thymomas or sarcomas.
. In July 2023, Tecan announced the launch of Phase Separator. It has several applications in biobanking and liquid biopsy and is expected to benefit proteomics, genomics and across numerous disease areas, from neurodegenerative and oncology diseases to metabolic disorders.
In January 2023, Thermo Fisher Scientific, Inc. announced its participation as a founding sponsor of Momentum Labs, a new biotech hub located in Alachua, Florida. This collaboration aims to support the growth of innovative biotech startups and drive advancements in the industry. With Thermo Fisher's expertise in the life sciences and its commitment to innovation, the company is well-positioned to play a significant role in the success of Momentum Labs and the companies it supports. The establishment of this hub is expected to have a positive impact on the local economy and further solidify Florida's position as a hub for biotech innovation.
In February 2022, Hamilton company expanded its range of VersoQ series of storage systems at a debut at SLAS 2022 conference. This would increase the company’s product offerings in biobanking.
Order a free sample PDF of the Biobanks Market Study, published by Grand View Research.
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Empowering Your Healthcare Journey: Essential Embryology Training
Are you captivated by the science of embryology and considering it as your career path? Enrolling in an embryology course can be the gateway to a fulfilling and impactful career in healthcare and reproductive sciences. Here’s how this educational journey can open doors to exciting opportunities and set you on a path to success.
Embryology, the study of embryos and their development, is a crucial field that intersects with reproductive medicine, genetics, and developmental biology. As infertility rates rise globally and advancements in reproductive technology accelerate, the need for skilled embryologists is growing. This field combines scientific discovery with practical application, offering a unique and rewarding career choice.
Studying embryology provides you with a thorough understanding of reproductive anatomy, gamete biology, fertilization techniques, and embryonic development. Institutions like REVA University offer a solid theoretical foundation, complemented by hands-on laboratory experience at esteemed facilities such as MOMSOON Fertility & IVF Centre. This blend of academic learning and practical training ensures you acquire the skills needed to excel in this specialized field.
A standout feature of the embryology program at REVA University is its focus on practical training and clinical exposure. The curriculum often includes internships or clinical rotations at fertility clinics, research laboratories, and embryology centers. These real-world experiences enable you to apply your knowledge, collaborate with experienced professionals, and gain valuable insights into the operations of a fertility unit.
Additionally, embryology courses develop essential skills in laboratory techniques, microscopy, and assisted reproductive technologies (ART). These skills are highly sought after in the healthcare industry, especially in areas like in vitro fertilization (IVF), preimplantation genetic testing (PGT), and embryonic stem cell research.
A career in embryology offers diverse opportunities for professional growth. Whether you aspire to work in clinical embryology, research, academia, or the industry, the expertise gained from an embryology course can open doors to a wide range of career paths.
As you explore your educational and career options, remember that an embryology course at REVA University is more than just a stepping stone—it’s a transformative journey. Whether you’re excited by laboratory work, motivated by helping individuals and couples achieve their dreams of parenthood, or eager to contribute to scientific breakthroughs, an embryology course can provide a solid foundation for a successful and impactful career.
In conclusion, if you are passionate about reproductive sciences and eager to make a difference in the lives of those facing infertility, an embryology course could be the perfect fit. With its rigorous scientific training, practical experience, and promising career prospects, studying embryology at REVA University offers a pathway to a bright and rewarding future. Take the first step toward your career in embryology today!
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Understanding Retina Treatment-A Comprehensive Guide
Introduction
Common Retina Disorders
Diabetic Retinopathy: This condition occurs in individuals with diabetes, where elevated blood sugar levels damage blood vessels in the retina, leading to vision loss.
Age-Related Macular Degeneration (AMD): AMD affects the macula, the central part of the retina responsible for sharp central vision, often leading to blurred or distorted vision.
Retinal Detachment: This occurs when the retina detaches from its normal position at the back of the eye, requiring immediate medical attention to prevent permanent vision loss.
Retinal Vein Occlusion: This condition involves blockages in the veins carrying blood away from the retina, leading to vision problems.
Retinitis Pigmentosa: A group of genetic disorders causing a breakdown of cells in the retina, leading to progressive vision loss.
Treatment Options for Retina Disorders
Laser Therapy: Used to treat conditions like diabetic retinopathy and retinal vein occlusion, laser therapy helps seal or destroy abnormal blood vessels in the retina, preventing further damage.
Intravitreal Injections: These involve injecting medications directly into the eye’s vitreous humor to treat AMD and diabetic retinopathy by reducing inflammation and abnormal vessel growth.
Vitrectomy: A surgical procedure to remove the vitreous gel from the eye, allowing surgeons to access and repair the retina, often used for retinal detachment or severe diabetic retinopathy.
Retinal Laser Photocoagulation: Utilizes laser to treat retinal tears or detachments by creating scars that seal the tear and prevent further detachment.
Scleral Buckling: Surgery involving placing a flexible band around the eye to relieve traction on the retina, aiding in reattachment in cases of retinal detachment.
Pneumatic Retinopexy: A less invasive method for certain retinal detachments, involving injecting a gas bubble into the eye to push the retina back into place.
Advances in Retina Treatment
Ongoing research has led to promising advancements in retina treatment:
Gene Therapy: Targets genetic defects causing retinal diseases, offering potential cures for previously untreatable conditions like retinitis pigmentosa.
Stem Cell Therapy: Aims to replace damaged retinal cells with healthy ones, currently in experimental stages but showing potential for restoring vision.
Artificial Retinas: Also known as retinal implants or bionic eyes, these devices convert light into electrical signals that the brain can interpret, offering hope for severe cases of retinal damage.
Dr. Dudhbhate Netralay and Retina Centre
Dr. Dudhbhate Netralay and Retina Centre, based in India, is renowned for its specialized care in treating various retina disorders. Led by Dr. (Name), the centre offers state-of-the-art facilities and a team of experienced ophthalmologists dedicated to providing comprehensive diagnosis and personalized treatment plans. Services include advanced diagnostics, laser therapies, vitreoretinal surgeries, and innovative treatments such as gene therapy and stem cell research.
Patients at Dr. Dudhbhate Netralay and Retina Centre benefit from compassionate care combined with cutting-edge technology, aimed at preserving and restoring vision effectively. The centre’s commitment to excellence in retina care makes it a trusted choice for individuals seeking specialized treatment for retina-related issues.
Conclusion
The field of retina treatment continues to advance, offering hope for patients with various retina disorders. Early diagnosis, timely intervention, and personalized treatment plans are crucial in managing these conditions effectively and preserving vision. With ongoing research and technological innovations, the future looks promising for improving outcomes and enhancing the quality of life for individuals affected by retina disorders worldwide.
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Bone Marrow Transplant Cost in India
The supple, fatty tissue found inside your bones is called bone marrow. The cells that make blood and platelets are found in bone marrow, which also produces billions of new blood cells daily.
A bone marrow transplant (BMT) includes using healthy blood-forming stem cells to replace the patients' diseased or damaged bone marrow. This is a complicated and highly specialized method used to treat blood and marrow diseases as well as specific blood tumors including leukemia and lymphoma.
Bone Marrow Transplant Cost in India
For an allogeneic transplant, the average Bone Marrow transplant cost in India is between 20,25,000 INR and 30,37,500 INR. For a Haplo transplant, the average Bone Marrow transplant price in India ranges from 29,76,330 to 41,33,792 INR. Every cost of Bone Marrow transplant in India varies in India because of patient condition and hospital fees, which is another major factor. Everything relies on your medical needs and financial capacity. You have to check price of Bone Marrow transplant in India according to hospitals.
Best Bone Marrow Transplant Hospitals in India
Fortis Memorial Research Institute
Address: Gurgaon, Opposite HUDA City Centre, Sector 44, Gurugram, Haryana – 122002.
Fortis Memorial Research's Institute of Blood Disorders and Bone Marrow Transplant is the Best Doctors for Bone Marrow transplant in India that efficiently treats patients in need of hematopoietic stem cell transplants.
The center provides autologous or allogeneic bone marrow transplant to adults, newborns, kids, and teenagers with malignant or non-malignant blood-related disorders.
Medanta – The Medicity, Gurgaon
Address: CH Baktawar Singh Road, Sector 38, Gurugram, Haryana – 122001
A multi-super specialty and the best hospital for Bone Marrow transplant in India with worldwide accreditation, Medanta provides a variety of medical services and amenities. Medanta's Bone Marrow Transplant Program is one of the top hospitals in India that provides the best BMT care for patients with blood disorders.
3. Indraprastha Apollo Hospital, Delhi
Address: Sarita Vihar, Delhi Mathura Road, New Delhi – 110076.
A notable healthcare organization around the world is Apollo Hospitals. Because it offers reputable and cost-effective BMT therapy in India, the facility is a popular choice of location for many overseas patients.
With a high record of success, the blood and bone marrow transplantation facility at Apollo Hospitals provides comprehensive, well-coordinated, and patient services for the treatment of blood problems in both adults and children.
Best Bone Marrow transplant Doctor in India
Dr. Rahul Bhargav, a well-known and the Best Bone Marrow transplant doctors in India in the bone marrow transplant industry, is the department's leader and one of the greatest bone marrow transplant physicians in India. He did more than 800 bone marrow transplants.
The hospital is dedicated to one of the most well-known pediatric BMT programs in the nation, which includes experts like Dr. Satya Prakash Yadav, a renowned pediatric hematologist with years of experience. Under this initiative, hundreds of transplants are carried out on kids, including several with half-matched donors.
Notable figures like Dr. Shishir Seth are part of the BMT team at Indraprastha Apollo. Apollo Hospitals has performed more than 1500 transplants. The Apollo BMT center works hard to offer the greatest resources for the treatment and management of benign and malignant hematological illnesses with first-rate hematological laboratory and blood transfusion services.
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Source: https://mymedtrips.blogspot.com/2023/10/bone-marrow-transplant-in-india.html
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Blood Support
During embryonic development, generation of the stem cells from which all blood cell types are derived relies on a subset of vessel smooth muscle cells that bear the Runx1 molecule – insight towards lab-based production of blood components for transfusions
Read the published research article here
Image from work by Zaniah N. Gonzalez Galofre and colleagues
Centre for Cardiovascular Science, The University of Edinburgh, Edinburgh, UK
Image originally published with a Creative Commons Attribution 4.0 International (CC BY 4.0)
Published in Nature Communications, February 2024
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#science#biomedicine#immunofluorescence#bone marrow#stem cells#haemopoiesis#hemopoiesis#blood cells#immune system
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59-year-old man cured of type 2 diabetes with stem cells
Medical science is increasingly using stem cells in treating type 2 diabetes, with recent breakthrough promising further improvements.
A man who had suffered from type 2 diabetes for 25 years did not take insulin for 33 months after a regenerative islet cell transplant, according to China Daily. Diabetes, particularly type 2, can develop over a lifetime due to improper diet and lifestyle. It is one of the most common non-communicable diseases worldwide.
China is reportedly one of the world’s diabetes hotspots. 140 million people cannot produce their own insulin, suffering from kidney problems, blindness, amputations, and cardiovascular issues.
However, the new milestone, which comes after 10 years of research and testing, could change the treatment of the disease forever. Yin Hao, lead researcher on the team and director of Shanghai Changzheng Hospital’s Organ Transplant Centre, explained that they took the patient’s own peripheral blood mononuclear cells and used existing methods to reprogram them back into pluripotent stem cells for injection into the pancreas.
His team conducted the study in collaboration with scientists from the Centre for Molecular Cell Science at the Chinese Academy of Sciences.
Our technology has matured and it has pushed boundaries in the field of regenerative medicine for the treatment of diabetes.
Read more HERE
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The i3C BRIC-RCB Ph.D. Programme in Biosciences Introduction: The i3C BRIC-RCB Ph.D. Programme in Biosciences is a collaborative initiative aimed at promoting cutting-edge, multidisciplinary, and collaborative research in biosciences. Powered by Grand Challenges India, this programme brings together leading institutions to offer a transformative educational experience for highly talented Ph.D. scholars. Participating Institutions: Regional Centre for Biotechnology International Centre for Genetic Engineering and Biotechnology National Institute of Biomedical Genomics Institute for Stem Cell Science and Regenerative Medicine National Agri-Food Biotechnology Institute National Institute of Plant Genome Research Rajiv Gandhi Centre for Biotechnology National Brain Research Centre National Centre for Cell Science National Institute of Animal Biotechnology Institute of Life Sciences National Institute of Immunology The Centre for DNA Fingerprinting and Diagnostics Institute Of Bioresources And Sustainable Development Translational Health Science and Technology Institute Eligibility & Selection The i3C BRIC-RCB Ph.D. programme welcomes highly talented individuals from diverse backgrounds in biotechnology, medicine, and engineering. There are two tracks of entry into the programme: Track I: Number of Seats: Up to 70 Fellowship Emoluments: As per the extant fellowship norms of the respective funding agency. Educational Qualification: Indian/international students with an MSc/MTech in Life Sciences, Chemistry, Physics, MPharm, MVSc, MBBS, or an equivalent degree are eligible to apply. A minimum aggregate score of 55% or an equivalent grade in the preceding qualifying degree examination is required, with a 5% relaxation for SC/ST/OBC-NCL/differently-abled candidates as per statutory norms. Four-year undergraduates from the mentioned disciplines are also eligible as per UGC guidelines. Selection Criteria: Admission requires qualification in a national-level fellowship examination such as DBT-BET, CSIR-JRF, UGC-JRF, ICMR-JRF, or similar, providing a five-year valid fellowship for pursuing a Ph.D. Eligible applicants will undergo screening and shortlisting for interviews conducted around June-July each year. Track II: New G.N Ramachandran Fellowship: (10 seats) This track aims to encourage engineering (BTech/BE) and medicine graduates (MBBS) to apply to the programme. Educational Qualification: Undergraduates in any branch of engineering (BTech/BE) or medicine (MBBS) with 55% aggregate marks in the preceding qualifying degree examination are eligible, with a 5% relaxation for SC/ST/OBC-NCL/differently-abled candidates as per statutory norms. Selection Process: Involves a separate written examination and/or an interview. Emoluments: JRF: INR 43,000 pm + HRA (years 1-2) SRF: INR 50,000 pm + HRA (years 3-5) Contingency: INR 1,00,000 Per Annum Allotment of Institution and Ph.D. Supervisor: Selected students will receive counselling at RCB and be assigned institutions and Ph.D. supervisors along with their admission offer. The assignment will be based on interview merit scores and students’ preferred research areas and supervisors. Each iBRIC is requested to provide a list of available supervisors before each admission cycle. Registration and Enrolment: Selected students will register with RCB immediately after admission and activate their Ph.D. fellowships. A one-page broad description of the Ph.D. project, prepared in consultation with the assigned supervisor, needs to be submitted along with registration. Students will activate their fellowships directly through their respective parent iBRICs. During the first semester, students will be accommodated at RCB-administered facilities and provided with all campus amenities, including accommodation, transport, meals, medical and counselling facilities, library access, IT facilities, and sports facilities. [caption id="attachment_64420" align="aligncenter" width="1200"] The i3C BRIC-RCB Ph.D. Programme in Biosciences[/caption]
Programme Structure The i3C BRIC-RCB Ph.D. programme is structured to provide a comprehensive learning experience through a combination of coursework, immersive internships, and advanced technology training. Here's an overview of the programme structure: First Semester Courses: Duration: Approximately August to December Course Content: Taught by RCB and iBRIC faculty members along with external experts. Credit Requirement: Students are expected to complete 12 mandatory credits during this period. Compulsory Courses (9 credits): Research Methodology (4 credits) - Theory Science Communication and Ethics (2 credits) - Theory Biostatistics with Computation (3 credits) - Theory Optional (Elective) Courses (3 credits Mandatory): Biochemistry (3 credits) Molecular Biology (3 credits) Cell and Developmental Biology (3 credits) Microbiology (3 credits) Basic Neuroscience (3 credits) Basic Immunology (3 credits) Basic Plant Biology (3 credits) Selection of Online Courses Immersive Field Internships: Duration: Three months following the first semester of coursework. Objective: To provide practical exposure to students in areas of societal need. Requirement: Students must submit a report to RCB and the respective iBRIC at the end of the internship. High-end Platform Technology Courses: Focus: Training on advanced instrumentation facilities at the Advanced Technology Platform Centre (ATPC) of RCB and iBRIC facilities. Purpose: To familiarize scholars with the latest technology platforms used in modern biosciences, including protein purification, optical imaging, flow cytometry, mass spectrometry, data analysis, and next-generation genomics. Instructors: Dedicated, qualified technical personnel recruited for this purpose. Monitoring Ph.D. Research Progress: Thesis Supervision: Conducted by designated Ph.D. supervisors at iBRICs, RCB, or ICGEB. Thesis Committee: A student advisory committee (SAC) will be constituted for each student as per RCB norms to regularly monitor research progress. Annual Conclave: Purpose: To facilitate scholarly exchange and recognition of research work. Frequency: Held at iBRICs, RCB, or ICGEB in rotation. Participation Requirement: Each registered scholar must participate in two conclaves during the third and fifth years of their Ph.D. tenure. Activities: Third-year students will present posters of their research, while fifth-year students will make oral presentations. Poster and oral presentation prizes will be awarded to recognize meritorious work. Participating students may utilize fellowship contingency funds to cover conclave-related expenses. Application opens: May 3, 2024 APPLY HERE Application Deadline: June 2, 2024 Apply here
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RGCIRC: India’s Premier Destination for Comprehensive and Innovative Cancer Treatment
Rajiv Gandhi Cancer Institute and Research Centre (RGCIRC) in Delhi stands out as one of the best cancer hospitals in India, renowned for its commitment to excellence in cancer treatment and research. Established with the mission to provide high-quality, affordable cancer care, RGCIRC offers a comprehensive range of services for all types of cancer, including prevention, diagnosis, treatment, and rehabilitation.
Equipped with state-of-the-art technology, RGCIRC features advanced facilities for surgical oncology, medical oncology, radiation therapy, and supportive care. The hospital is particularly noted for its expertise in complex surgeries, including robotic-assisted procedures, which enhance precision and reduce recovery times. Furthermore, RGCIRC excels in bone marrow and stem cell transplantation, providing cutting-edge treatments for hematological malignancies.
The hospital's multidisciplinary approach ensures personalized treatment plans tailored to each patient's unique needs, leveraging the expertise of a dedicated team of oncologists, surgeons, radiologists, and support staff. RGCIRC also emphasizes holistic care, offering counseling, nutritional support, and rehabilitation services to enhance the overall well-being of patients.
With its patient-centric focus and innovative treatment options, RGCIRC has earned a reputation not only as a leader in India but also as a preferred destination for international patients seeking quality cancer care. The institute's commitment to advancing cancer research and improving patient outcomes positions it among the best cancer hospitals in the country, making it a beacon of hope for those facing cancer diagnoses.
For more information: https://www.rgcirc.org
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