#Veterinary Biochemistry Analyzer
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Enhancing Animal Care with Advanced Veterinary Solutions
Bioscience laboratories play a crucial role in advancing our understanding of life sciences, encompassing a wide range of fields such as biology, biochemistry, microbiology, and molecular biology. These laboratories are at the forefront of research and innovation, contributing to various sectors, including healthcare, agriculture, environmental science, and biotechnology.
What Are Bioscience Laboratories? Bioscience laboratories are specialized facilities equipped with advanced tools and technologies to conduct research on living organisms and biological processes. They provide a controlled environment for scientists to explore the complexities of life at the molecular, cellular, and organismal levels. These labs may focus on various research areas, including genetic engineering, drug development, clinical trials, and environmental monitoring.
Key Functions of Bioscience Laboratories Bioscience laboratories perform several vital functions:
Research and Development: They conduct experiments to develop new products, treatments, and technologies that can improve health outcomes, enhance agricultural productivity, and address environmental challenges.
Quality Control and Assurance: Laboratories play a critical role in ensuring that products, especially in pharmaceuticals and food industries, meet safety and quality standards through rigorous testing and analysis.
Diagnostics: Many bioscience labs specialize in diagnostic testing, providing essential services in detecting diseases and conditions, which is crucial for timely medical intervention.
Environmental Monitoring: These laboratories assess the impact of human activities on ecosystems, monitoring pollutants and studying biodiversity to promote sustainable practices.
Technological Advancements in Bioscience Laboratories With the rapid advancement of technology, bioscience laboratories are increasingly adopting innovative tools to enhance research efficiency and accuracy. Some notable advancements include:
High-Throughput Screening: This technology allows scientists to conduct large-scale experiments quickly, enabling the rapid identification of potential drug candidates or genetic variations.
CRISPR Technology: CRISPR-Cas9 gene editing has revolutionized genetics by allowing precise modifications to DNA, paving the way for breakthroughs in treating genetic disorders.
Bioinformatics: The integration of computational tools in biological research helps analyze complex biological data, facilitating discoveries in genomics and proteomics.
Automated Laboratory Systems: Automation streamlines laboratory processes, reducing human error and increasing productivity.
Challenges Faced by Bioscience Laboratories Despite their significant contributions, bioscience laboratories encounter various challenges:
Funding and Resources: Securing adequate funding for research projects is a persistent issue, often limiting the scope of studies and technological advancements.
Regulatory Compliance: Laboratories must adhere to stringent regulatory guidelines, which can complicate research processes and timelines.
Ethical Considerations: Research involving genetic modifications and other sensitive topics raises ethical concerns, requiring laboratories to navigate complex moral landscapes.
The Future of Bioscience Laboratories The future of bioscience laboratories is promising, with ongoing advancements in technology and a growing emphasis on interdisciplinary collaboration. As global challenges such as pandemics, food security, and climate change persist, bioscience laboratories will play an essential role in developing innovative solutions. By fostering partnerships with academia, industry, and government, these laboratories can leverage diverse expertise and resources to drive impactful research and development.
Conclusion Bioscience laboratories are vital to scientific progress and innovation, shaping the future of healthcare, agriculture, and environmental stewardship. By investing in research and supporting the work of these laboratories, we can unlock new possibilities for improving the quality of life and addressing some of the world’s most pressing challenges. As we look ahead, the continued evolution of bioscience laboratories will undoubtedly lead to transformative discoveries that benefit society as a whole.
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oscarbioproducts · 4 months ago
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Understanding Biochemistry Machines: Features, Benefits, and Usage
 Biochemistry machines, also known as biochemistry analyzers, are essential tools in clinical laboratories for analyzing blood and other body fluids to diagnose and monitor various diseases. These machines perform a wide range of biochemical tests, including those for enzymes, lipids, sugars, proteins, and electrolytes. This guide explores the features, benefits, and usage of biochemistry machines.
 What is a Biochemistry Machine?
A biochemistry machine is an automated device used in clinical laboratories to perform various biochemical analyses on blood, urine, and other biological samples. These machines can process multiple samples simultaneously and provide accurate and timely results.
 Features of a Biochemistry Machine
1. Automated Analysis
   - Fully automated operation minimizes manual intervention and reduces the risk of human error.
2. Multi-Parameter Testing
   - Capable of performing a wide range of tests, including liver function tests, kidney function tests, lipid profiles, glucose levels, and more.
3. High Throughput
   - Designed to process a large number of samples quickly, making them suitable for high-volume laboratories.
4. User-Friendly Interface
   - Equipped with touch screens and intuitive software for easy operation and navigation.
5. Sample Handling
   - Includes sample loaders, pipetting systems, and mixing units to handle samples efficiently.
 Benefits of Using a Biochemistry Machine
1. Accuracy and Precision
   - Provides highly accurate and precise results, essential for diagnosing and monitoring diseases.
2. Efficiency
   - Automated processes reduce turnaround time, allowing for faster diagnosis and treatment.
3. Versatility
   - Capable of performing a wide range of tests, making them versatile tools in clinical laboratories.
4. Consistency
   - Ensures consistent results across different samples and tests, enhancing the reliability of data.
5. Cost-Effective
   - High throughput and automation reduce labor costs and increase productivity.
6. User-Friendly
   - Easy-to-use interfaces and automated features make these machines accessible to laboratory technicians.
 How to Use a Biochemistry Machine
1. Preparation
   - Ensure the machine is properly calibrated and all reagents are loaded and ready for use. Perform routine maintenance checks as recommended by the manufacturer.
2. Sample Collection
   - Collect blood, urine, or other biological samples from patients following standard procedures. Label samples accurately to avoid mix-ups.
3. Loading Samples
   - Load the samples into the machine using the sample loader. Ensure samples are placed correctly to prevent errors.
4. Selecting Tests
   - Use the machine’s interface to select the required tests for each sample. The software will guide you through the process.
5. Running Tests
   - Start the analysis process. The machine will automatically handle the samples, add reagents, and perform the necessary tests.
6. Monitoring and Quality Control
   - Monitor the machine’s operation and ensure quality control measures are in place. Address any alerts or issues promptly.
7. Retrieving Results
   - Once the tests are complete, retrieve the results from the machine’s data management system. Review the results for accuracy and consistency.
8. Interpreting Results
   - Interpret the test results in conjunction with clinical findings to diagnose and monitor patient conditions.
 Applications of Biochemistry Machines
1. Clinical Diagnostics
   - Used in hospitals and diagnostic laboratories to perform routine blood tests and diagnose various diseases.
2. Research Laboratories
   - Employed in research settings to study biochemical processes and develop new diagnostic methods.
3. Pharmaceutical Industry
   - Used in drug development and clinical trials to monitor the biochemical effects of new drugs.
4. Veterinary Medicine
   - Utilized in veterinary clinics to perform biochemical tests on animal samples for diagnosis and treatment.
 Conclusion
The biochemistry machine is an indispensable tool in clinical laboratories, offering accuracy, efficiency, and versatility in biochemical testing. By understanding its features, benefits, and proper usage, healthcare professionals can effectively utilize these machines to improve patient outcomes and advance medical research. Regular maintenance and quality control are essential to ensure the reliability and longevity of these sophisticated devices.
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priyanshisingh · 1 year ago
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Automatic Veterinary Biochemistry Analyzer Market Share and Demand Analysis with Size, Growth Drivers and Forecast to 2030
The latest market report published by Credence Research, Inc. “Global Automatic Veterinary Biochemistry Analyzer Market: Growth, Future Prospects, and Competitive Analysis, 2016 – 2028. The global demand for automatic veterinary biochemistry analyzers was valued at USD 15.2 Billion in 2022 and is expected to reach USD 20.7 Billion in 2030, growing at a CAGR of 4.50% between 2023 and 2030.
The global veterinary landscape is undergoing a transformative change with the rise in the adoption of advanced diagnostic tools. One such tool leading this change is the Automatic Veterinary Biochemistry Analyzer. A recent market outlook report has provided in-depth insights into the current status, growth trajectory, and future prospects of this burgeoning market.
The Automatic Veterinary Biochemistry Analyzer is an innovative diagnostic tool designed specifically for veterinary purposes. It automates the analysis of biological samples, ensuring accuracy, repeatability, and speed. With the ability to detect a wide range of parameters, it plays a pivotal role in diagnosing various animal health conditions.
Automatic Veterinary Biochemistry Analyzer Market Major Challenges revolve around the intricacies of this specialized field. One of the significant hurdles is ensuring accuracy and precision in test results, as any deviation can lead to misdiagnoses or incorrect treatment plans for our beloved animal companions. Additionally, maintaining a high level of sensitivity and specificity is crucial when it comes to detecting various biomarkers in samples, considering that animals often exhibit similar symptoms for different conditions. This demands constant research and development efforts to enhance the capabilities of these analyzers. Moreover, another challenge lies in streamlining workflow processes within veterinary clinics or laboratories to optimize efficiency while handling an increasing number of samples daily.
Rising Awareness of Animal Health
More than ever before, there's a heightened awareness of the importance of regular health check-ups for animals. This has led veterinary clinics and animal hospitals to equip themselves with the latest diagnostic tools.
Advancements in Veterinary Technology
The field of veterinary medicine is embracing technology at a rapid pace. With advancements in biochemistry and diagnostics, there's a push towards automated solutions that guarantee precision.
Increasing Pet Ownership
With the surge in pet ownership globally, there's a direct correlation to the demand for advanced veterinary diagnostic solutions. Pet owners are seeking the best healthcare services for their beloved animals.
Browse 200 pages report Automatic Veterinary Biochemistry Analyzer Market By Type (Bench-Top Veterinary Biochemistry Analyzer, Portable Veterinary Biochemistry Analyzer) By Application (Pet Hospital, Veterinary Station) - Growth, Future Prospects & Competitive Analysis, 2016 – 2030)- https://www.credenceresearch.com/report/automatic-veterinary-biochemistry-analyzer-market
Regional Insights
The North American region, with its advanced veterinary infrastructure and high pet ownership rates, stands as a major market player. Europe, with its stringent animal welfare regulations, is also a significant contributor. The Asia-Pacific region, with its growing urbanization and increasing disposable income, shows promising growth potential in the coming years.
Key Market Players
Several key players dominate the Automatic Veterinary Biochemistry Analyzer market, offering innovative solutions that cater to the varying needs of the veterinary community. These companies focus on research and development, ensuring their analyzers are at the forefront of technology.
Conclusion
The Global Automatic Veterinary Biochemistry Analyzer Market is set to witness substantial growth in the coming years. With increasing awareness, technological advancements, and the rising demand for precise veterinary diagnostics, the future for this market looks extremely promising.
Why to Buy This Report-
The report provides a qualitative as well as quantitative analysis of the global Automatic Veterinary Biochemistry Analyzer Market by segments, current trends, drivers, restraints, opportunities, challenges, and market dynamics with the historical period from 2016-2020, the base year- 2021, and the projection period 2022-2028.
The report includes information on the competitive landscape, such as how the market's top competitors operate at the global, regional, and country levels.
Major nations in each region with their import/export statistics
The global Automatic Veterinary Biochemistry Analyzer Market report also includes the analysis of the market at a global, regional, and country-level along with key market trends, major players analysis, market growth strategies, and key application areas.
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nealreport · 1 year ago
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jean-perry · 2 years ago
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clinical-research · 3 years ago
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Clinical Research
Clinical Research is a division of healthcare science that determines the efficacy and safety of medical products, devices, diagnostic products, and other treatment regimens meant for human consumption. These can be utilized for diagnosis, prevention, diagnosis, or alleviating symptoms of an ailment. Clinical Research has gained much importance in the field of the health care industry. It deals with the collection, evaluation, and interpretation of data pertaining to health by conducting researches. Clinical Research Training Institutes have gained much reputation for equipping their students with knowledge pertaining to this important subject. Clinical Research Jobs is very well available and there are a number of Clinical Research Training Institutes, recruitment agencies, and Clinical Research Schools offering such courses.
Clinical Research Training Institutes offer excellent Clinical Research Training programs to participants from a number of different fields. These include microbiology, pharmacology, genetics, veterinary medicine, pharmacology, and biochemistry. The course duration for Clinical Research Jobs depends on the level of participation in the program. Some of these researches may last for years while others can be completed within a short period of time. The participants learn a lot of things while participating in Clinical Research Training Programs.
Clinical Research trains the students to conduct a series of four phases Clinical Research Interviews (CRIs). The objective of these four phases is to gather enough evidence on the efficacy and safety of potential drugs, procedures, products, and ingredients. In a Clinical Research interview, the interviewer collects data on the demographic, occupational, physiological, and environmental factors and the medical histories of the participants. Then, based on the collected data, the investigators discuss the possible benefits of the drug, procedure, product, or ingredient in light of the current knowledge on the topic. Based on the discussed benefit, the investigators then decide if it should be initiated into a clinical trial.
Clinical Research Jobs involves analyzing the data gathered during the Clinical Research Interviews, checking the accuracy and completeness of the data, writing the Clinical Study Reports, and finally communicating the findings of the research team to the various Clinical Research Organizations involved. Clinical Research Jobs is not just a job opportunity for people with an interest in science. It also provides excellent career opportunities for young people, professionals, and senior citizens alike. Many Clinical Research Jobs available now require more detailed training. In order to become eligible for Clinical Research Jobs, you need to have a Bachelor's degree or higher qualification. You can earn your doctorate degree in a number of fields, including biochemistry, anatomy, physiology, statistics, and computer science.
The main aim of Clinical Research Jobs is to make breakthroughs in the field of health care, using the most advanced tools and technologies available. For this purpose, the researchers conducted several experiments and surveys under the supervision of medical doctors. They are expected to deliver useful, relevant, and new information. The main components of Clinical Research Studies include experimental treatments, observational studies, drug tests, research design and analysis, data management, consulting with patients, regulatory agencies, and others. Some Clinical Research Jobs also includes post-graduate studies. There are opportunities for investigators looking for specific areas such as cancer treatments, diabetes, infectious diseases, genetic disorders, neurology, gastroenterology, cardiology, retina, and others.
Clinical Research Jobs involves conducting several types of Clinical Research Studies. These include drug trials, clinical trials with pharmaceutical companies, healthcare product trials, research design and analysis, data management, counseling, and others. Clinical Research Jobs can involve both closed and open enrollment methods. Clinical Research Jobs can be performed on a part-time basis or on a full-time basis.
Clinical Research Jobs can be grouped into four phases. These include pre-clinical research, clinical trials, phase I and II, phase III and IV trials. Clinical Research Jobs can be divided further into two categories: one-year and two-year clinical trials. Clinical Research Jobs can be supervised by senior researchers or by supervisors who are in charge of organizing the various aspects of Clinical Research.
Clinical Research Jobs can be of various levels depending upon the number of participants that participate in the Clinical Research Project. If more participants take part in the Clinical Research Project than originally planned, then Clinical Research Jobs can be developed for new participants. Clinical Research Projects can be performed on a global scale or on a local scale. It can be conducted on human volunteers, animals, plants, micro-organisms, or any combination thereof.
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A Tutorial about Setting Up Your own Laboratory
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They analyze body smooth samples within a clinical location in order to detect unwanted organisms, bacterias, together with other organisms that may possibly be evoking the patient's disease. Lab testing are maintained out in toxicology, hematology, biochemistry, microbiology, together with immunology in order to detect plus treat patients. Health lab technicians work throughout several health-related facilities that include things like hospitals, offices of doctors, homework laboratories, overall health establishments, veterinary clinic laboratories, clinical analysis laboratories, and biotechnology companies. The most common day involving a medical clinical technician begins by preparing plus adjusting lab tools. All over the day, their tasks contain collecting and having blood, muscle, pee, and other body substance trials from patients. These are required to prepare these trials for routine testing through a microscopic lense or automatic analyzer, which will give results detecting any abnormalities or diseases. The results will then be put directly into a good computer for additional analysis making use of graphs, chart, tables, and so forth Some selections could have to be saved less than controlled problems for prospect use. Throughout planning for the next moment, that they clean up the clinical equipment at the end of the time. The career associated with a medical laboratory technician will be able to be rewarding and furthermore challenging at the same exact time. An individual must be able to work along well with additional well being care pros, which include professionals and physicians. A new Healthcare laboratory technician must possibly be patient and detail-oriented considering that there are the significant traits of this profession.Laboratoire français de Genève Most information collected are required to follow often the records protection take action and even patient confidentiality exercise. Schooling, Training and Certification A good candidate should first have a good high school degree in order to enter a medical laboratory technical assistant program. Students are then required to complete on least an Associate's education, just like a 2-year knowledge plan offered by some sort of community school, technical school, vocational college, or school. There usually are also 1-year certificate packages available from hospitals to get those presently in relevant fields, such as breastfeeding. Healthcare clinical technicians will be constrained in the obligations they can accomplish, like they cannot perform sophisticated lab tests because many people do not have often the same type of extensive knowledge as a healthcare laboratory technologist. Pursuing additional education as a medical laboratory work technologist is usually therefore wise for laboratory technicians. Teaching programs wish very much helping students acquire the needed information and skills they must enter the workforce. Students have hands-on practice in actual research laboratory settings. Medical laboratory techs do not need any qualification in almost all states but some states and employers may call for a new license before a individual can practice. Qualified technicians usually have far better job offers and increased salaries. Medical laboratory professionals that want to get certified have to complete the particular accredited education and learning program just before they write down thier licensing examination. Continuing education breaks are usually required every year for you to maintain qualification. Work Atmosphere Medical laboratory work technicians primarily work in private hospitals in addition to laboratories including study specialised and veterinary amenities when some may work in public health centers, wellness treatment centers, and biotech companies. Regular Work Schedule The standard work involving some sort of health laboratory mechanic is 35-40 hours per 1 week nonetheless they may have to do shift work based on the service these people are working. Some labs are open 24 several hours a day whilst hostipal wards are open on week-ends and holidays a lot of techs who are working within these types of establishments will now have to work evenings, breaks and holidays. Issues that will affect the salary of any Medical Laboratory Technician Expertise - Medical Technicians who also just joined the arena will become a salary on $25, 000 while knowledgeable technicians will make from $45, 000 upwards. Education instructions Education will be critical on determining a new medical lab technician's pay. Although almost all states carry out not require a technician for being certified, employers usually tend to look for persons with certification and found in turn they receive more significant wages. Area - Location is also very significant in determining a new medical related laboratory technician's salary. Earnings can differ from Condition to State. The particular greatest paying state can be Rhode Island. Employer : Working for different employers will result in different incomes. Generally, experts working in hospitals include better pay than these who work in medical plus the facts laboratories. Top having to pay business employers in this occupation are office of cosmetic dentists, medical equipment and items manufacturing, junior colleges, prescription drug and medicine manufacturing, and laptop or computer system design and even related services. Business Identity: ANALAB Address: Analab SOCIAL FEAR Rue du Jura you, 1201 Geneva, Switzerland Number: +41 22 343 43 01 Email: info@analabs. ch Website: www.analab.ch
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nikhilghodse20051994 · 2 years ago
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Companion Animal Diagnostics Market Forecast, Trend, Analysis 2028
According to the latest study on “Companion Animal Diagnostics Market Forecast to 2027 - Covid-19 Impact and Global Analysis by Technology, Application, Animal Type, and End User", the global companion animal diagnostics market was valued at US$ 2,031.62 million in 2019 and is projected to reach US$ 2,684.86 million by 2027; it is expected to grow at a CAGR of 4.1% during 2020–2027. The report highlights trends prevailing in the global companion animal diagnostics market and the factors driving market along with those that act as hindrances.
Sample PDF showcases the content structure and the nature of the information included in the report which presents a qualitative and quantitative analysis –
The companion animal diagnostics market is expected to grow owing to factors such as growing prevalence of chronic diseases in pet animals and increasing adoption of pets for companionship. However, increasing pet care costs and extended pet lifespan are likely to restrain the growth of the market during the forecast period.
Zoetis Inc., IDEXX laboratories, Inc, Thermo Fisher Scientific Inc, Virbac, Randox Laboratories Ltd, idvet, IDEXX Laboratories, Inc, Heska Corporation, Fujifilm Corporation, and Skyla Corporation are among the leading companies operating in the companion animal diagnostics market.
Based on technology, the global companion animal diagnostics market is segmented into immunodiagnostics, clinical biochemistry, hematology, urinalysis, molecular diagnostics, and others. The immunodiagnostics segment is further sub-segmented into lateral flow assays, Elisa tests, allergen-specific immunodiagnostic tests, and immunoassay analyzers. Whereas the clinical biochemistry is sub-segmented into clinical chemistry analysis, glucose monitoring, and blood gas electrolyte analysis. The immunodiagnostics segment held a largest share of the market in 2019. However, the clinical biochemistry segment is estimated to register a higher CAGR during the forecast period owing to increasing adoption of clinical chemistry analysis, glucose monitoring, and blood gas electrolyte analysis products.
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The report segments global companion animal diagnostics Market as follows:
By Technology
Immunodiagnostics
Lateral Flow Assays
Elisa Tests
Allergen-Specific Immunodiagnostic Tests Diagnostics
Immunoassay Analyzers
Clinical Biochemistry
Clinical Chemistry Analysis
Glucose Monitoring
Blood Gas Electrolyte Analysis
Hematology
Urinalysis
Molecular Diagnostics
Others
By Application
Bacteriology
Clinical Pathology
Virology
Parasitology
Others
By Animal Type
Dogs
Cats
Horses
Others
By End User
Diagnostic Laboratories
Veterinary Hospitals and Clinics
Research Institutes and Universities
By Geography
North America
US
Canada
Mexico
Europe
France
Germany
UK
Spain
Italy
Asia Pacific (APAC)
China
India
Japan
Australia
South Korea
Middle East and Africa (MEA)
Saudi Arabia
UAE
South Africa
South and Central America (SCAM)
Brazil
Argentina
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metiresearchinfo · 2 years ago
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COMPANION ANIMAL DIAGNOSTICS MARKET WORTH $7.39 BILLION BY 2029
Meticulous Research®– leading global market research company published a research report titled “Companion Animal Diagnostics Market by Product [Consumables (Leukemia, Heartworm, Influenza), System, Software], Technology [ELISA, PCR, Hematology, Urinalysis], Animal Type [Canine, Feline], End User (Point of Care, Hospital) - Global Forecast to 2029”.
According to this latest publication from Meticulous Research®, the global companion animal diagnostics market is expected to grow at a CAGR of 9.8% from 2022 to reach $7.39 billion by 2029. The high growth of the companion animal diagnostics market is mainly attributed to the rising prevalence of diseases in companion animals, increasing animal health expenditure and pet insurance in developed countries, and technological advancements in veterinary diagnostics. Moreover, emerging countries provide growth opportunities for players operating in the companion animal diagnostics market. However, the increasing pet care costs in developed countries is restraining this market's growth.
The global companion animal diagnostics market study presents historical market data in terms of values (2020 and 2021), estimated current data (2022), and forecasts for 2029- by Product [Consumables (Heartworm, Leukemia, Influenza), System, Software], Technology [Immunodiagnostics, Molecular Diagnostics, Hematology, Urinalysis, Clinical Biochemistry, Other Technologies], Animal Type [Canine, Feline, Other Companion Animals), End User (Reference Lab, Veterinary Hospital, PoC Testing], and Geography. The study also evaluates industry competitors and analyzes the regional and country markets.
Based on product, in 2022, the consumables segment is estimated to account for the largest share of the companion animal diagnostics market. The large share of this segment is mainly attributed to the frequent use and availability of a diverse range of reagents and consumables for various diseases. Apart from this, the growing awareness regarding regular animal health check-ups and the emergence of various POC tests and assays are further expected to expand the portfolio of these consumables for early diagnosis.
Based on technology, the immunodiagnostics segment is estimated to account for the largest share of this market in 2022. Factors contributing to the large share of this segment include the growing adoption of diagnostic products based on immunodiagnostic technology and the development of advanced diagnostic immunoassay tests.
Based on animal type, the canines segment is estimated to account for the largest share of the market in 2022. The increasing canine population as pets and the prevalence of diseases such as diabetes are expected to propel the growth of this segment.
Based on end user, the companion animal diagnostics market is segmented into veterinary hospitals, reference laboratories, and point-of-care testing. in 2022, the reference laboratories segment is estimated to account for the largest share of the companion animal diagnostics market.
This research report analyzes major geographies and provides a comprehensive analysis of North America (U.S., Canada), Europe (Germany, France, U.K., Italy, Spain, and the Rest of Europe), Asia-Pacific (Japan, China, India, and RoAPAC), Latin America, and Middle East & Africa. North America is estimated to dominate the global companion animal diagnostics market in 2022, followed by Europe and Asia-Pacific. The increasing awareness of animal disease diagnosis, rising number of veterinarians, and increased spending on the healthcare of pet animals in the region supported the largest share of North America in the companion animal diagnostics market.
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The key players operating in the global companion animal diagnostics market are IDEXX Laboratories, Inc. (U.S.), Zoetis Inc. (U.S.), Thermo Fisher Scientific Inc. (U.S.), Heska Corporation (U.S.), Bio-Rad Laboratories, Inc. (U.S.), bioMérieux S.A. (France), INDICAL BIOSCIENCE GmbH (Germany), Agrolabo SpA (Italy), Neogen Corporation (U.S.), and IDvet (France), among others.
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healthinfotech · 2 years ago
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Companion Animal Diagnostics Market Projected to Reach US$ 2,684.86 million by 2027
The companion animal diagnostics market was valued at US$ 2,031.62 million in2019 and is projected to reach US$ 2,684.86 million by 2027; it is expected to grow at a CAGR of 4.1%from 2020to 2027.
The companion animal diagnostics market offerings deal with the epidemiology and pathogenesis of domestic animals and facilitate the prevention of further complications with the health of pets and their owners. The companion animal diagnostics market is expected to witness huge growth due to growing prevalence of chronic diseases in pet animals and increasing adoption of pets for companionship. However, increasing pet care costs and extended pet lifespan are expected to restrain the growth of the market during the forecast period.
 Growing Prevalence of Chronic Diseases in Pet Animals
Similar to humans, animals too suffer from chronic diseases. Arthritis and other orthopedic conditions, chronic kidney disease, cancer, hepatitis and other liver diseases, skin allergies, diabetes mellitus, inflammatory bowel disease, and thyroid disorders are among the common chronic diseases in pets. Cancer is widespread in animals and affects pet as well as wild animals. Animals have been diagnosed with various types of cancer till date, which have symptoms similar to humans, including weight loss, abnormal swelling, and lethargy. As per the veterinary cancer society, cancer is a leading cause of death in 47% of dogs, especially in dogs of age >10 years, and 32% of cats. Further, FETCH a Cure, a nonprofit organization, has estimated that over 6 million dogs and ~6 million cats would be diagnosed with cancer in 2020. Furthermore, as per the Pet Cancer Facts and Figures, one in four dogs and one in five cats develop cancer in their lifetime. According to the association for pet obesity prevention (APOP), in 2018, ~55.8% of dogs and 59.5% of cats in the US were overweight or obese.
Based on technology, the global companion animal diagnostics market is segmented into immunodiagnostics, clinical biochemistry, hematology, urinalysis, molecular diagnostics, and others. The immunodiagnostics segment is further sub-segmented into lateral flow assays, Elisa tests, allergen-specific immunodiagnostic tests, and immunoassay analyzers. Whereas the clinical biochemistry is sub-segmented into clinical chemistry analysis, glucose monitoring, and blood gas electrolyte analysis. The immunodiagnostics segment held a largest share of the market in 2019. However, the clinical biochemistry segment is estimated to register a higher CAGR during the forecast period owing to increasing adoption of clinical chemistry analysis, glucose monitoring, and blood gas electrolyte analysis products.
 The companion animal diagnostics market is expected to grow owing to factors such as growing prevalence of chronic diseases in pet animals and increasing adoption of pets for companionship. However, increasing pet care costs and extended pet lifespan are likely to restrain the growth of the market during the forecast period.
 Zoetis Inc., IDEXX laboratories, Inc, Thermo Fisher Scientific Inc, Virbac, Randox Laboratories Ltd, idvet, IDEXX Laboratories, Inc, Heska Corporation, Fujifilm Corporation, and Skyla Corporation are among the leading companies operating in the companion animal diagnostics market.
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jean-perry · 2 years ago
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mrfrblogresearch02 · 3 years ago
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Veterinary Laboratory Testing Market Size, Scope, Growth, Competitive Analysis 2027
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Market Highlights
The global Veterinary Laboratory Testing Service Market is expected to grow at a CAGR of 10.1% during the forecast period.
Primary Drivers and Barriers
The mounting number of surgeries of pets, particularly in emerging nations facilitates the growth of the veterinary laboratory testing market. The key surgical procedures are dental, cataract, wound repair, hip dysplasia, and spay or neuter. Other factors include dramatic growth in the number of veterinary laboratory practitioners and the surge in technological advances in terms of new products and tools. The market growth is further bolstered by the escalation in health insurance for animals, burgeoning population of companion animals along with the soaring number of government initiatives to deal with the surge in zoonotic diseases.
Significant rise in periodontal issues among pets paired with the huge preference for high quality diagnostic testing options drives the global market growth. The rise in oral surgeries as well as periodontal surgeries has raised the demand for veterinary laboratory testing services.
Health issues such as obesity among pets and companion animals have surged considerably over the years, leading to heart diseases, diabetes, dental problems, and osteoarthritis. Majority of these conditions boost the need for veterinary laboratory testing services. Huge breakthroughs within the veterinary field benefits the global industry as well.
Regional Study
North America secures the lead in the global market for veterinary surgical instruments study guide, given the surging use of diagnostic tests as animal diseases continue to rise in the region. The lead has been taken by the United States, on account of the surging awareness level among the population about the latest laboratory-based diagnostics for their pets. The significant rise in technological advances in veterinary diagnostics is bound to raise the market demand in the following years.
Europe forms the second biggest market for veterinary laboratory testing services, in view of the surge in technical developments and the rising awareness among people. The burgeoning pool of animals like buffaloes, goats, and cow affected by different diseases would elevate the market position more in the years to come.
In Asian countries, the veterinary laboratory testing market is relatively new, but the progress rate in the years ahead is expected to be quite significant. Diseases such as rabies, which require detection via veterinary testing, are very commonly left undiagnosed in the region, leading to several deaths. As a result, countries like India have been increasingly adopting veterinary laboratory testing services and equipment to address the issue. Segmentation
The global veterinary laboratory testing market has been segmented into animal type, technology, product, and end user.
The market, on the basis of animal type, has been segmented into companion animal and livestock animal. The companion animal segment is further classified as dogs, cats, horses and others. The livestock animal segment is further classified as cattle, pigs, poultry and others.
The market, by technology, has been segmented into clinical biochemistry, immunodiagnostics, hematology, molecular diagnostics, urinalysis, and others.
The clinical biochemistry segment is further classified as clinical chemistry analysis, glucose monitoring, and blood gas & electrolyte analysis. The clinical chemistry analysis segment includes clinical chemistry reagent clips and cartridges and clinical chemistry analyzers. The glucose monitoring segment includes blood glucose strips, glucose monitors and urine glucose strips. The blood gas & electrolyte analysis segment includes blood gas and electrolyte reagent clips and cartridges and blood gas & electrolyte analyzers.
The immunodiagnostics segment is further classified as ELISA tests, lateral flow assays, allergen-specific immunodiagnostic tests, immunoassay analyzers, and others. The lateral flow assays segment includes lateral flow rapid tests, and lateral flow strip readers.
The hematology segment is further classified as hematology cartridges, and hematology analyzers.
The molecular diagnostics segment is further classified as polymerase chain reaction (PCR) tests, microarrays, and others.
The urinalysis segment is further classified as urinalysis clips & cartridges/panels, urine analyzers, and urine test strips.
The market, by product, has been segmented into consumables and instruments.
The market, by end user, has been segmented into veterinary hospitals & clinics, in-house testing, research institutes, diagnostic laboratories, and others. The veterinary hospitals & clinics segment held the largest segment of the market in 2017. This can be attributed to the increasing incidence of zoonotic diseases. On the other hand, the academic institutes segment is estimated to be the fastest growing segment.
Key Players
Some of the prominent players in the global veterinary laboratory testing market are Abaxis, Inc., BIOCHECK Inc., Biomérieux SA, Henry Schein, Inc., Heska Corporation, Idexx Laboratories, Idvet, Neogen Corporation, Pfizer, Qiagen N.V., Randox Laboratories, Ltd., Thermo Fisher Scientific, VCA Inc., Virbac, Zoetis, Inc. and others.
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healthcare-market · 3 years ago
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Companion Animal Diagnostics Market Growth to be Affected by Consolidation of Leading Vendors
Transparency Market Research (TMR) has published a new report on the companion animal diagnostics market for the forecast period of 2019–2027. According to the report, the global companion animal diagnostics market was valued at ~US$ 2.3 Bn in 2018 and is projected to expand at a CAGR of ~9% from 2019 to 2027.
Global Companion Animal Diagnostics Market: Overview
· Expansion of the global companion animal diagnostics market can be attributed to a rise in the incidence of obesity and other diseases in companion animals and increasing pet ownership.
· North America dominated the global companion animal diagnostics market in 2018, and the trend is anticipated to continue during the forecast period. Highly structured healthcare industry, early new product adoption, and presence of major market players are expected to drive the market in North America.
· Asia Pacific is expected to be a highly lucrative market for companion animal diagnostics, expanding at a high CAGR during the forecast period.
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Clinical biochemistry to Dominate Companion Animal Diagnostics Market
· The clinical biochemistry segment dominated the global companion animal diagnostics market in 2018, and the trend is likely to continue during the forecast period. Clinical biochemistry tests refer to blood tests or lab tests that help gain information about the health of the companion animal. Clinical biochemistry also includes glucose analysis, electrolyte analysis and others. Increasing demand and popularity of chemistry analyzers and glucose monitoring devices in disease diagnosis drives the segment. Moreover, the high preference for various advanced clinical diagnostic products by veterinarians, pet owners, and laboratory technicians is likely to fuel the clinical biochemistry segment in the next few years.
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Companion Animal Diagnostics Market: Clinical Pathology to Offer Lucrative Opportunities
· In terms of application, the global companion animal diagnostics market is divided into clinical pathology, bacteriology, parasitology, and others.
· The clinical pathology segment includes cytopathology, hematology, clinical chemistry, immunohematology, coagulation, urinalysis, endocrinology, and general pathology. The clinical pathology segment dominated the global companion animal diagnostics market due to a rise in the demand for diagnostic products and consumables needed to be used during pathology testing, and an increase the number of pathology tests performed on pets.
· Bacteriology is estimated to be a highly lucrative segment of the companion animal diagnostics market during the forecast period. Bacteriology refers to the diagnosis of various bacterial diseases and infection in companion animals. Bacteriology tests include bacterial pathogens testing in blood or serum samples, and aerobic and anaerobic culture testing.
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Veterinary Reference Laboratories Account for Major Market Share
· The veterinary reference laboratories segment dominated the global companion animal diagnostics market, in terms of revenue, in 2018. The trend is projected to continue during the forecast period. Increase in the number of veterinary reference laboratories across globe and availability of new advanced tests are likely to propel the segment. Furthermore, veterinary reference laboratories provide veterinary diagnostics to pet owners, and government-related programs or research collaborations are likely to boost the veterinary reference laboratories segment in the companion animal diagnostics market during the forecast period.
· Veterinary hospitals and clinics is projected to be the second-most lucrative segment of the global companion animal diagnostics market during the forecast period. The segment is expected to expand at a significant CAGR from 2019 to 2027, as veterinary hospitals and clinics provide diverse veterinary diagnostic services for companion animals, and also provide advanced diagnosis testing.
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North America to Dominate Global Companion Animal Diagnostics Market
· North America accounted for a major share of the global companion animal diagnostics market in 2018, owing to an increase in pet ownership, pet insurance, and presence of major manufacturers in the region. According to North American Pet Health Insurance Association (NAPHIA) reports, the total number of pets insured in the U.S. and Canada reached 2.43 million at year-end 2018, an increase of 17% from 2017.
· The companion animal diagnostics market in Asia Pacific is likely to expand at a high CAGR from 2019 to 2027. This can be attributed to an increase in the number of companion animals in countries such as China and Japan, improvement of healthcare infrastructure in terms of better facilities, and a rise in the demand for advanced products in the region.
Global Companion Animal Diagnostics Market: Competitive Landscape
· The global companion animal diagnostics market is fragmented in terms of number of players. Key players operating in the global companion animal diagnostics market include Heska Corporation, IDEXX Laboratories, Inc., Thermo Fisher Scientific, Inc., QIAGEN N.V., Zoetis, Inc., Neogen Corporation, bioMérieux SA, Randox Laboratories Ltd., and Virbac.
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biomedgrid · 3 years ago
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Biomed Grid | Alterations of Hematological and Biochemical Profile of Calves Infected Naturally with Tropical Theileriosis
Introduction
Tropical Thieleriosis is one of the most concerning Tick-Borne Diseases (TBD) of cattle prevailing in northern Sudan [1] The wide allocation of TBD throughout the world especially in tropical and sub-tropical district embrace Sudan [2]. Tropical theileriosis is caused by T. annulata and transmitted by Ixodid ticks of genus Hyalomma; after cyclical development in the vector [3]. The disease is highly endemic in some regions of Sudan, where it considered fatal in forgin and crossbred animals. The mortality in local breed animals is little or not exist at all; with almost no clinical signs or symptoms except in animals under environmental, nutritional or any other kind of stress [4]. Tropical theileriosis plays a crucial role in livestock production loss in Sudan; hence it considered as one of the most economically imposing diseases [5]. Sporozoite; is the form in which the theileria parasite introduced to the host body during the procedure of tick feeding. Straight entrance of the sporozoite into the leukocytes is then occur, where they get mature into macro schizont, the macro schizont evolve further into micro schizont and eventually into merozoites. These merozoites invade the RBCs and develop into piroplasm.
The cardinal symptoms shown by affected cattle are, high fever and lingering anemia because of the intraerythrocytic parasitism [6]. Other pivotal clinical symptoms include, weight loss, anorexia, petechial hemorrhage and general weakness [7]. Laboratory tests are vital auxiliary tools to evaluate the animal health condition. Sero-biochemical and hematological perversions is a prediction factors for evaluating the severity of the disease, helpful tool for diagnosis and reveal the prospect of disease prognosis [8,9]. Biochemical analyses of blood serum are very useful to get an insight in the metabolic and health status of animals. During diagnostic procedure it is very useful to compare the values obtained from ill animals with normal values in healthy animals. The majority of biochemical parameters in young animals differ from normal values for adults. These values are changing with the age [8]. The efficacy of specific organ’s function could be revealed throughout shedding a light on serum biochemical profile, serum biochemical profile values can reflect the prognosis of the disease, which eventually provide suitable therapeutic protocols towards most favorable clinical outcome [4].
Plasma biochemistry may be an indication of the severity of the infection, and a very good tool for diagnosis and evaluation of the therapy applied. Also, to understand the host-parasite relationship at a molecular level and to describe the disease clearly, some biochemical parameters may be determined based on the above considerations [10]. The present study was designed to investigate the impact of the tropical theileriosis on some serum components associated with protein, and carbohydrate metabolism in calves naturally infected with T. annulata
Ethical Approve
The ethical approve document was obtained from Sudanese Veterinary Council, Khartoum-Sudan.
Materials and MethodsAnimals, site and duration of trial
The experiment duration is 5 months; extended from November- 2016 to March-2017. 30 male calves, crossbred, 3-6 months age were brought from keynana Company, which exists in the middle of Sudan- (White Nile state)-tick controlled area. Calves moved to eastern Khartoum state, and allocated in a farm with history records of theileriosis infection and mortality, tick manifestation was clearly noticeable in the farms. Claves were put under hay feeding with add libtium reach to water supply
Samples collection
Prior to purchase blood samples were collected in plain and EDTA coated tubes. Samples screened for theileria using blood smear, then confirmed by IFAT and PCR, respectively to guarantee they are theileriosis free. Biochemical and hematological profile were determined as well. After appearance of clinical signs, blood samples were collected again, and the same tests mentioned above were done
Hematology and serum analysis
Blood heamogram
Blood samples were collected from jugular vein using 5 ml disposable syringe into clean dry bottles containing the disodium salt of ethylene diamine tetra acetic acid (EDTA) as anticoagulant for hematological samples; which were evaluated on the same day of collection. Blood was analyzed for hemoglobin (Hb) concentration, red blood cells count (RBCs), packed cell volume (PCV) and white blood cell count (WBCs), according to methods described by [11].
MCV, MCH and MCHC values were calculated according to equation described by
MCV= PCV/ RBCs count.
MCH= Hb/RBCs count.
MCHC= Hb/PCV.
Biochemical profile
A commercially available kit (Biosystem Laboratory Products LTD, Spain) was used to measure different serum biochemical parameters, following the instructions of manufacturer
Statistical analysis
The data thus generated were subjected to un-paired t-test to compare the difference of hematological and biochemical parameters at P≤0.05
Results and Discussion
Twelve calves out of thirty were infected with theileriosis (prevalence percentage 40%), nine infected calves died with mor
tality rate (30%) (Figure 2). Infection with theileriosis caused significant reduction (p≤0.05) of WBCs, RBCs, Hb, PCV, MCV and MCHC (Table 1), compared to the values recorded before infection. MCH, recorded pronounced elevation after infection. Serum biochemical profile showed significant low total protein, albumin, globulin, AST, ALT, GGT, D. Bilirubin, Glucose and Phosphorus in diseased animals (Figure 3). Creatinine, Urea and Calcium revealed no significant different values before and after infection (Table 2).
Figure 2:Prevalence and mortality incidence (%).
Table 1:Blood values parameters pre and post infection
Figure 3:Average of serum T.P, Alb, G and G/A ratio pre and post infection g/l. T P: Total Protein; Alb: Albumin; G: Globulin; G/Alb: Globulin/Albumin
Hematology results
The results obtained from hematologic investigation revealed significant reduction in RBCs, WBCs, Hb and PCV Values were 6.0 x 106/μl, 2.7 x 106/μl, 10.1g/dl and 27.6% respectively (Table 1), this result are in accordance with reported previously by [12] in cattle infected with theileriosis. Imtiaz and his coworkers reported a similar result also (6). Alteration in RBCs picture could be due to destructive parasite’s influence on RBCs, or because of lytic effect of intra erythrocyte parasite [13], immune-mediated mechanism such as erythrophagocytosis might be responsible RBCs count reduction eventually. Anemia proposed to be resulted from removal of piroplasm from infected erythrocytes by macrophages. Oxygen free radicals could be another causative factor of anemia. An elevation of PCV values in infected animals [6]. MCV and MCHC followed the same trend and recorded significant low values in diseased animals compared to pre infection status. Currently the MCH values were significantly higher after infection occurred. These observations were recorded formerly by [14].
Serum biochemical profile results
liver enzymes Serum ALT and AST, concentrations are indicators of liver function. ALT and AST, serum values were elevated significantly after infection; values were 62.8 and 99.4IU/L respectively (Table 2). This elevation could be attributed to macular degeneration; as a result of prolonged recumbency due to theileriosis. Hepatic dysfunction may also be caused by the inflammatory status; which caused by trapping the damaged infected RBCs, and lymphocytes. These findings are in agreement with [15]; who reported elevation of mentioned enzymes in cattle infected with tropical theileriosis. In regard to GGT levels, our current result is contrary to some previous studies and in agreement with others; hence Ali and his coworker’s high serum level of GGT in infected cattle compared to healthy ones. Similarly; this study showed significant elevation of serum GGT concentration too (Table 2), while Campbell and his team reported no significant different levels of the enzymes in serum of infected and healthy animals
Table 2:Blood values parameters pre and post infection
Total protein and Albumin
In the current study the observations about T.P, Alb and globulin levels recorded a significant decrease in infected animals (51.9, 40.8 and 12.1g/l respectively) in a comparison with pre infection values (60.5, 45.4 and 14.9 g/l), (Table 2). These findings are in line with reports of, Col and his team [12], and [6]. Who reported hypoproteinemia and hypo albuminemia. The reduction of serum protein level could be attributed to extra-vascular proteinaceous fluid in body cavities due to infected lymph nodes, resulting in edema [16].
The alteration of protein picture in animals after infection could be referred to decrease in protein synthesis as a consequence of anorexia and fever accompanied with theileria spp infection [17]. Two previous studies by Hassan [18], and Omer [19], reported that infection by theileria parasite has harmful influence on hepatocytes; leading to disturbed hepatic function such as decrease in albumin synthesis accompanied with increase in albumin catabolism.
Bilirubin
The present study reported significant raise of serum bilirubin levels after infection 4.6 mg/dl (Table 2), this might be due to increased destruction of parasitized RBCs by erythro phagocytosis in spleen, lymph nodes and other organs of reticuloenothelial system, or it might be caused by hepatic dysfunction and hemolytic anemia. These findings are in accordance with Imtiaz [6]and Jozica and Martina [8].
Glucose
Our present result revealed a significant decrease of serum glucose level after infection 73.4 mg/dl; (Table 2); this result could be justified by proposing utilization of glucose by theileria parasite [20]. Continuous fever and metabolic disturbance could be reasons behind that glucose reduction after infection [12].
Calcium and phosphorus
Though serum calcium level was lower after infection occurred (7.6 mg/dl), but the difference was not significant compared to pre infection levels (Table 2). This result disagrees with the findings of Imtiaz, who reported significant decrease in calcium concentrations in crossbred cattle infected with bovine theileriosis. On the other hand, our findings showed significant decrease of serum phosphorus level post infection (5.5 mg/dl); this could be due to diarrhea or renal wasting. The current finding is in line with observations reported by Mahmoud H [21], and Imtiaz et al. [6] another synergetic finding by [22]; reported no significant different level of serum calcium was detected in animals infected with theileriosis.
Creatinine and Urea
Creatinine and urea concentrations; were not significantly affect after infection, though the pre infection levels of both were lower (0.09 and 36.3 mg/dl), than post infection levels (0.19 and 46.0 mg/dl); but there was no significant difference at p≤0.05. These results disagree with the findings of Denızhan et al. [23], who reported significant elevation in serum creatinine levels in cattle in fected with theileriosis. On another hand the present findings about serum urea levels were similar to those reported by Omer and his team [22], no significant difference of serum urea level between pre and post infection. Present results and Omer et al results are in accordance with the findings of Singh et al. [24] and Denizhan et al. [25].
Conclusion
The massive alteration of hematological and biochemical profile of calves infected by theileriosis; demonstrates the potency of this disease to damage different animal body’s systems; leading to metabolic disturbances incorporates together and increase the severity of the disease. Monitoring biochemical profile of infected animals may help improving treatment protocol, when to make approaches to compensate any minerals, glucose, etc. deficiency; as a supportive treatment beside the principle medication to fulfill the need for fast recovery of the infected animals.
Research Highlights
1) Preparing the experimental site.
2) Purchase calves.
3) Performing the trial and follow up the progress of infection.
4) Samples collection and preservation.
5) Determination of blood biochemical profile
Limitations
Reagents and buffers are hard to found because of poor availability and expensive prices. Beside the obstacle high experimental animals’ cost.
Recommendation
This study discovered that every experiment has its own results depending on various factors including environmental and physiological ones, which can be beneficial for evaluating each case individually in order to provide a symptomatic treatment support the sick animal throughout the course of treatment by reducing the effect of deficiency of some nutrients. this study will help the researchers to uncover the critical areas of importance of serum biochemical profile in sustaining the animal condition until complete recovery.
Authors’ Contribution and Competing Interests
1) Corresponding author: write the manuscript.
2) 1st and sixth Author: performing the experiment and analysis of samples.
3) 2nd, 3rd, 4th and 5th Authors, follow up, correction
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