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"The Future of Blood Testing: Innovations in Serum Separation Gel"
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The global serum separation gel market is experiencing notable growth, driven by increasing demand for accurate and efficient diagnostic solutions. Valued at USD 6.6 billion in 2022, the market is projected to reach USD 10.10 billion by 2030, with a compound annual growth rate (CAGR) of 5.5% during the forecast period from 2023 to 2030. This growth reflects the critical role serum separation gels play in enhancing diagnostic accuracy and efficiency across various medical applications.
Why Serum Separation Gel?
Serum separation gel is a vital component in blood collection and diagnostic processes. It enables the efficient separation of serum from blood cells, facilitating accurate and reliable test results. The gel's use is widespread in clinical laboratories, diagnostic centers, and hospitals, where it supports a range of tests, including biochemical assays, immunoassays, and hormone level measurements. As healthcare demands grow, the need for effective serum separation solutions becomes increasingly important.
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Advancements in serum separation gel technology are driving market growth. Innovations such as improved gel formulations, enhanced separation efficiency, and compatibility with various testing methods are enhancing the functionality of these products. This progress is crucial for meeting the evolving needs of diagnostic testing and laboratory workflows.
Market Dynamics and Growth Drivers
Several key factors are propelling the growth of the global serum separation gel market:
Increasing Diagnostic Testing Volume: The growing number of diagnostic tests and procedures across various healthcare settings is driving demand for serum separation gel. The need for accurate and reliable test results necessitates the use of high-quality separation gels.
Technological Advancements: Continuous innovations in gel formulations and manufacturing processes are improving the performance of serum separation gels. Developments such as better gel consistency, faster separation times, and enhanced stability are contributing to market growth.
Rising Prevalence of Chronic Diseases: The increasing incidence of chronic diseases and the need for regular monitoring drive the demand for diagnostic tests and, consequently, serum separation gels. Chronic disease management requires frequent blood testing, boosting the need for efficient separation solutions.
Growing Healthcare Infrastructure: Expanding healthcare infrastructure globally, especially in emerging markets, is enhancing access to diagnostic services and increasing the demand for serum separation gels. Investment in healthcare facilities and diagnostic technologies supports market growth.
Regional Analysis
North America: The North American market is a major contributor to the global serum separation gel market, driven by advanced healthcare infrastructure and a high volume of diagnostic testing. The U.S. and Canada are prominent players, with a focus on innovation and quality in diagnostic solutions.
Europe: Europe’s market benefits from established healthcare systems and a strong emphasis on diagnostic accuracy. Countries such as Germany, France, and the U.K. are key players, supporting market growth with advanced separation gel technologies.
Asia-Pacific: The Asia-Pacific region is experiencing rapid growth due to increasing healthcare investments and expanding diagnostic services. Emerging markets such as China and India are significant contributors, driven by rising healthcare needs and infrastructure development.
Latin America and Middle East & Africa: These regions are witnessing gradual growth, influenced by improvements in healthcare access and diagnostic capabilities. The need for reliable diagnostic solutions in these regions is contributing to market development.
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Competitive Landscape
The serum separation gel market is competitive, with a range of players offering diverse products. Key players include:
BD (Becton, Dickinson and Company): A leading provider of diagnostic solutions, including serum separation gels, with a focus on innovation and quality.
Thermo Fisher Scientific: Offers a wide range of serum separation gels and other diagnostic products, catering to various laboratory needs.
Greiner Bio-One International GmbH: Known for its advanced blood collection and separation solutions, including high-performance serum separation gels.
Sekisui Diagnostics: Provides a range of diagnostic products, including serum separation gels, with an emphasis on reliability and performance.
Emerging players and local manufacturers also contribute to market dynamics, offering innovative solutions and catering to niche markets.
Challenges and Opportunities
The market faces challenges such as the high cost of advanced separation gel technologies and the need for consistent quality control. Additionally, regulatory requirements for diagnostic products can impact market dynamics.
However, significant opportunities exist for growth. Innovations in gel formulations and manufacturing processes, along with expanding healthcare infrastructure, offer promising avenues for market expansion. Companies that focus on developing cost-effective, high-quality separation gels and expanding into emerging markets are well-positioned to capitalize on these opportunities.
Conclusion
The global serum separation gel market is poised for substantial growth, driven by increasing diagnostic testing needs, technological advancements, and expanding healthcare infrastructure. With revenue expected to reach USD 10.10 billion by 2030, the market presents ample opportunities for innovation and investment. As the demand for accurate and efficient diagnostic solutions continues to rise, serum separation gels will play a critical role in enhancing the precision and effectiveness of medical testing.
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rahulp3 · 4 months
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Key Developments in the Serum Separation Gels Market By 2032
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The Global Serum Separation Gels Industry is poised for substantial growth, with projections indicating a robust Compound Annual Growth Rate (CAGR) of 5%. According to the latest forecast, the market is expected to surge from US$ 7.61 billion in 2022 to an impressive US$ 12.39 billion by 2032.
The Global Serum Separation Gels Industry study provides critical information related to the global, regional, and top players including Serum Separation Gels market share analysis, winning strategies, recent developments, and financial planning. Besides providing information regarding the key players in the Global Serum Separation Gels Industry, the study also recalibrates, the impact of macroeconomic and microeconomic factors that have the potential to impact the growth of the Global Serum Separation Gels Industry.
Over the past decade, the healthcare sector has been expanding remarkably, following the advent of artificial Intelligence and the Internet of Things integrated medical devices. Advancements in technology has created impressive scope within the medical sector for diagnostics and therapeutics.
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healthcare-domain · 2 years
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Electrophoresis Market Scope of Current and Future, Key Players Analysis by 2025
The research segment is expected to witness the rising adoption of electrophoresis systems in the next five years
Based on application, the research segment accounted for the largest share of the electrophoresis market, followed by diagnostics and quality control & process validation in 2019. The large share of the research segment is attributed to the increasing application of electrophoresis in the field of drug discovery, proteomics, genomics, and antibody research. Moreover, increasing research in the field of biomarker discovery and NGS is increasing the adoption of electrophoresis systems and consumables.
Hospitals and diagnostic centers to increase the adoption of electrophoretic systems with increasing disease diagnosis needs
Based on end users, the electrophoresis market is segmented into academic & research institutes, hospitals & diagnostic centers, pharmaceutical & biotechnology companies, and other end users (CROs, forensic laboratories, and food testing laboratories). The hospitals & diagnostic centers segment is estimated to grow at the highest CAGR of during the forecast period. The use of electrophoresis in the analysis of plasma, enzymes (ALP, LDH, and CK), proteins, urine, lipoproteins, hemoglobin, serum, and cerebrospinal fluids has increased with the rising incidences of immunodeficiency diseases and serum protein disorders. This is further expected to support market growth in the coming years.
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North America to dominate the electrophoresis market during the forecast period
In 2018, North America dominated the global electrophoresis market, followed by Europe. The large share of North America can be attributed to the increasing investments in the development of structure-based drug designs, growing research in the fields of genomics and proteomics, rising demand for high-quality research tools for data reproducibility, and increasing focus on developing personalized therapeutics. The presence of a large number of global players in this region is another key factor contributing to the large share of this market segment.
According to the new market research report "Electrophoresis Market by Product (Gel Electrophoresis (1D & 2D Gel Electrophoresis, Agarose, PAGE), Capillary Electrophoresis (CZE, CGE, Isoelectric Focusing), Reagents, Imaging), Application (Research, Diagnostics), and End User – Global Forecast to 2025", published by MarketsandMarkets™, the Electrophoresis Market is expected to reach USD 3.6 billion by 2025 from USD 2.7 billion in 2020, at a CAGR of 6.0% during the forecast period.
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Factors such as the rising incidence of cancer, infectious diseases, and genetic disorders; growth in funding for research on genomic, proteomic, and electrophoresis techniques; the growing number of industry-academia research collaborations; growing use of capillary electrophoresis with mass spectroscopy; the increasing use of next-generation sequencing; and rise in the number of clinical, forensic, and research laboratories are driving market growth.
By product, the electrophoresis reagents segment is expected to account for the largest share of the electrophoresis market
Based on product, the electrophoresis market is segmented into electrophoresis reagents, electrophoresis systems, gel documentation systems, and software. The electrophoresis reagents segment accounted for the largest share of the market in 2019. This is primarily due to the increasing use of consumables in tandem with electrophoresis systems in research fields of proteomics, genomics, drug discovery, antibody development, and personalized medicine, among others. Also, the increasing demand for 2D electrophoresis for protein separation is expected to propel the use of consumables in the capillary electrophoresis market.
Browse in-depth TOC on "Electrophoresis Market"
246 – Tables
44 – Figures  
254 – Pages
Prominent players in the Electrophoresis market are Thermo Fisher Scientific (US), Bio-Rad Laboratories (US), Merck Group (Germany), Agilent Technologies (US), Danaher Corporation (US), GE Healthcare (US), PerkinElmer (US), QIAGEN N.V. (Netherlands), Harvard Bioscience (US), Shimadzu Corporation (Japan), Lonza Group (Switzerland), Sebia Group (UK), C.B.S. Scientific Company (US), Helena Laboratories (US), Takara Bio (Japan), Syngene (UK), Teledyne Technologies (US), VWR International (US), Analytik Jena (Germany), and TBG Diagnostics Ltd. (Australia).  
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WHAT IS HGH?
1. WHAT IS HGH?
Human growth hormone (HGH) is a hormone that is naturally produced by the body. It is synthesized and secreted by cells in the anterior pituitary gland located at the base of the brain. Its secretion into the circulation follows a pulsatile pattern resulting in widely fluctuating blood levels that are influenced by multiple factors such as age, gender, sleep, physical activity, diet, stress, fever, steroids, and the environment.
In serum, hGH exists as a complex combination of different molecular forms (isoforms), including the major 22-kDa form and minor isoforms such as the 20-kDa form.  Furthermore, hGH also exists as aggregates of these isoforms (dimers and oligomers, forming both homos- and heterodimers).  Following secretion into the blood circulation, the 22-kDa hGH has a short half-life of 10-20 minutes.
HGH stimulates many metabolic processes in cells. HGH affects protein, fat, carbohydrate, and mineral metabolism. The major role of hGH is to stimulate the liver to secrete Insulin-like Growth Factor-I (IGF-I). IGF-I stimulates the production of cartilage cells, resulting in bone growth and also plays a key role in muscle protein synthesis and organ growth.
hGH is prohibited both in- and out-of-competition under section S2 of WADA’s List of Prohibited Substances and Methods.
2. WHAT EFFECT CAN HGH HAVE ON ATHLETIC PERFORMANCE?
Some of the effects attributed to hGH, which may explain the attraction for its use as a doping agent, especially in power and endurance sports, include the reduction of body fat (lipolysis), the increase in muscle mass and strength (anabolic effect), as well as its tissue-repairing effects (recovery) on the musculoskeletal system. The anabolic actions of GH are mostly mediated through IGF-I and include increases in total body protein turnover and muscle synthesis. hGH also appears to be used synergistically with other performance-enhancing drugs, thus having an effect, albeit indirect, on muscle anabolism and athletic performance.
3. WHAT ARE THE SIDE EFFECTS OF HGH ABUSE?
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Commonly reported side effects for hGH abuse are: diabetes in prone individuals; worsening of cardiovascular diseases; muscle, joint, and bone pain; hypertension and cardiac deficiency; abnormal growth of organs; accelerated osteoarthritis.
In untreated acromegalic individuals (known for pathological over-production of hGH), many of the symptoms described above are observed and life expectancy is known to be significantly reduced.
Because of the role that hGH plays in stimulating IGF-1 secretion, excessive use of hGH may also lead to metabolic dysfunction, including glucose intolerance and other side effects associated with excess levels of IGF-1.
4. DOES A TEST FOR HGH EXIST?
The menace that doping with hGH presents to fair play and the health and well-being of athletes has driven the sport and anti-doping authorities to support the development of analytical methods for its detection.  Such tests have been elaborated following two distinct, but complementary scientific approaches: the ‘isoforms approach’ and the ‘markers approach’.
The Isoform Differential Immunoassays (the Isoforms Test) was first introduced as a research-scale test at the 2004 Summer Olympic Games in Athens, Greece, and later applied at the 2006 Winter Olympic Games in Torino, Italy. Following a process of assay development and validation into a new technical platform (tube-based chemiluminescence technique), which is suitable for the production of commercial kits, the currently applied test kits were firstly used during the 2008 European Football Championship in Austria and Switzerland, as well as during the 2008 Summer Olympic Games in Beijing, China.  Currently, all WADA accredited laboratories to test for hGH using the Isoforms Test.
The hGH Biomarkers Test (the ‘markers approach’) was briefly introduced for testing during the 2012 London Olympic and Paralympic Games. However, following the temporary withdrawal from the market of one of its constituent assays, a process of validation of new assays for IGF-1 and P-III-NP has been completed in collaboration with USADA and several research groups, including the method-developer GH-2000 team from the UK and various WADA accredited laboratories. Following the completion of the study on the determination of the Decision Limits (DLs) for the hGH Biomarkers Test, the application of the method will be resumed in a number of WADA accredited laboratories in the near future.
5. HAVE THERE BEEN ANALYTICAL DOPING CASES INVOLVING HGH?
Yes. Since 2010, there have been approximately 15 adverse analytical findings reported following the application of the hGH Isoforms Test. In addition, two athletes were sanctioned following the detection of doping with hGH through the application of the hGH Biomarkers Test during the 2012 London Paralympic Games.
6. WHICH MATRIX IS USED FOR DETECTION OF HGH?
Tests for detection of hGH doping are applied in blood serum, which is obtained following the centrifugation in the laboratories of blood collected in specified tubes containing an inert polymeric serum separator gel and a clotting activation factor.
7. WHAT IS THE HGH ISOFORM DIFFERENTIAL IMMUNOASSAYS (THE ‘ISOFORMS APPROACH’)?
Since the total levels of hGH secreted into circulation vary naturally, are widely fluctuating over time, and may be influenced by several factors not associated with doping, it is practically impossible to develop an anti-doping test based simply on the measurement of increased total hGH concentrations. However, doping with recombinant HGH (recGH) alters the naturally constant proportions between the different isoforms of hGH present in the blood of an individual.  The hGH Isoform Differential Immunoassays were developed to detect these changes in the proportions of different hGH isoforms after recombinant recGH injection.
8. WHAT IS THE HGH BIOMARKERS TEST (THE ‘MARKERS APPROACH)?
HGH affects the expression of many different proteins which may serve as biological markers of hGH activity.  These include markers of hGH action in the liver such as IGF-I, as well as markers of hGH action on soft tissue collagen turnover, such as the N-terminal peptide of procollagen type III (P-III-NP). The measurement of these two hGH markers in serum may serve to uncover the manipulation of the hGH/IGF-I axis independently of the doping substance used, be it recGH or other agents used to increase circulating hGH [for example analogs of GH-releasing hormone (GHRH), HGH secretagogues such as GH-releasing peptides (GHRP) or even hGH gene doping]. The detection and quantification of such biomarkers of hGH activity constitute the rationale of the indirect method for the detection of doping with hGH, referred to as the ‘markers approach’.
9. ARE THE HGH TESTS RELIABLE?
The concepts and development of both hGH tests have been systematically reviewed by international independent experts in such fields as hGH and IGF-I, endocrinology, immunoassay, analytical chemistry, pharmacology, laboratory work, anti-doping, etc., and published in international scientific journals.
The 2013 Court of Arbitration for Sport (CAS) decision on the FIS vs. Veerpalu case confirmed that the current Isoforms Test is robust and scientifically reliable. As a result of criticism expressed by the CAS Panel on the statistical procedure originally applied to the determination of the test’s DLs, new statistical analyses were performed on an increased number of hGH doping control data (samples from athletes treated under real doping control conditions of sample collection, transportation, storage, and analysis, including standardized analytical protocols and instrumentation) by two independent teams of statisticians. The results of the study have been published in an independent peer-reviewed scientific journal specialized in GH and IGF-I research.
The revised DLs have been incorporated into a new version of the Guidelines on hGH Isoform Differential Immunoassays for anti-doping analyses, available on WADA’s website. These Guidelines continue to provide direction on the sample pre-analytical preparation procedure, the performance of the test, and the interpretation and reporting of the test results.
For more information on the process followed to determine the test’s DLs, please consult Hanley JA et al. “hGH isoforms differential immunoassays applied to blood samples from athletes: decision limits for anti-doping testing”. Growth Hormone & IGF Research, 2014.
The scientific validity and efficacy of the hGH biomarkers approach have been documented in multiple scientific publications for over a decade. A series of placebo-controlled recombinant recGH administration studies performed in Europe and Australia have shown that both IGF-I and P-III-NP rise substantially following recGH administration in a dose-dependent manner. These markers have been evaluated for several confounding factors that might influence the scores of the discriminant functions, including age, gender, ethnicity, exercise, diurnal and day-to-day variation, intra-individual variation, bony and soft tissue injury, sporting discipline, and body habitus (physique). Nevertheless, before resuming its implementation in WADA-accredited laboratories, the study on the determination of the DLs for the new assays will be also subjected to independent peer review and publication in an international scientific journal.
10. ARE THE ISOFORM DIFFERENTIAL IMMUNOASSAYS AND THE HGH BIOMARKERS TESTS COMPLEMENTARY?
These two tests are complementary in nature and in a time window of hGH detection. The hGH Isoforms Test detects the alteration of proportions (ratios) between hGH isoforms up to 24-48 hours after recGH administration. The Biomarkers Test is based on measuring the increased synthesis of two biological markers of hGH bioactivity, namely IGF-I and P-III-NP, and it may not detect the initial phase of recGH use, but does so at later times and for a longer period than the Isoforms Test.
11. WHAT ARE GH-RELEASING FACTORS AND ARE THEY DETECTABLE?
GH-releasing factors include the GH Releasing Hormone (GHRH) and its analogs, GH secretagogues (GHS), and GH-releasing peptides (GHRPs). These compounds induce the secretion of endogenous HGH by the pituitary gland. Therefore, they are used in place of recGH to attain the effects of hGH doping, and possibly to mask detection of recGH use with the Isoforms Test. However, anti-doping laboratories have developed mass spectrometry-based methods for their detection, and adverse analytical findings have been reported following their detection in doping control samples. In addition, their use may be detected with the indirect hGH Biomarkers Test.
12. WHEN IS THE BEST TIME TO TEST ATHLETES FOR HGH?
As for any other doping controls, test distribution plans for hGH testing should be based on the implementation of ‘Intelligent Testing’ strategies aimed at making effective and efficient use of available testing resources. Athletes use HGH as a doping agent for extended periods of time in order to benefit from its purported performance-enhancing effects (in contrast, for example, to other doping agents such as stimulants, which may have an immediate effect). In addition, doping athletes suspect that they may be tested for hGH during competition periods.
Therefore, testing for hGH should be prioritized to out-of-competition periods, and be based on intelligent, non-notice, and unpredictable testing. Target testing of suspected athletes based on intelligence information (e.g. information about doping routines), prior suspicious test results, or dubious and unexpected sporting achievements is also recommended. Due to their complementary nature in detecting hGH doping, it is advised that samples are tested with both the Isoforms and the Biomarkers Tests.
13. IS A URINE TEST FOR HGH LIKELY TO BE DEVELOPED?
According to the majority of international experts, the blood matrix is the most suitable matrix for the detection of hGH.
hGH in urine is found in extremely small quantities (less than 1% than that found in the blood), and not much information is available regarding the excretion of different hGH isoforms in the urine.
Research efforts undertaken to develop urine-based detection methods for hGH have been unsuccessful so far. However, WADA continues collaborating with research teams to explore this possibility using novel scientific ideas and technical strategies.
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foodandbeveragedbmr · 3 years
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Face Protection Market Share & Trends Analysis Report By Application, Regional Outlook, Competitive Strategies, And Segment Forecasts To 2028
 Face Protection Market will grow at a rate of 10.32% for the forecast period of 2021 to 2028. Face protection market report analyses the growth, which is currently being growing due to rise in consumer awareness.
Face protection is the type of protection which provides shield to the entire face. These day people use face masks as they have properties such as tone brightening, hydration and deep cleansing. These masks help to get rid from problems like skin allergies, dark marks, pigmentation and acne among others. Many people also use equipment like goggles and face shields to protect their faces.  Cream masks, clay masks, gel masks, sheet masks and exfoliating masks are some of the type of the masks which are used by the people. Mask is very useful as it helps the lotions, serum and night-time products to be absorbed by your skin quicker and deeper.
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Global Face Protection Market is segmented on the basis of product type, type, distribution channel, end-user and price range. The growth amongst the different segments helps you in attaining the knowledge related to the different growth factors expected to be prevalent throughout the market and formulate different strategies to help identify core application areas and the difference in your target markets.
On the basis of product type, face protection market is segmented into cotton, non- woven, hydrogel and bio- cellulose.
Based on type, the face protection market is segmented into eye spectacles, googles, wielding shields, laser safety googles and face shields.
Based on distribution channel, the face protection market is segmented into online, large stores, drugs stores and pharmacies, speciality stores and individual retailers.
Based on end-user, the face protection market is segmented into wholesale and retail.
The face protection market is also segmented on the basis of price range into premium and economic.
The major players covered in the face protection market report are 3M, Honeywell International Inc., Mallcom Limited, MSA, Armstrong Products Pvt, Ltd., Centurian Safety Products Ltd., DELTA PLUS, Joseph Leslie & Co. LLP, KARAM, NAFFCO., Sure Safety Limited, Swiss One Safety, Oskia Skincare Ltd, Lancôme, Kracie Holdings,Ltd. Christian Dior SE, L'Oréal, REN Clean Skincare and Chanel. among other domestic and global players. Market share data is available for global, North America, Europe, Asia-Pacific (APAC), Middle East and Africa (MEA) and South America separately. DBMR analysts understand competitive strengths and provide competitive analysis for each competitor separately.
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ivdreagent · 3 years
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VITRO DIAGNOSTIC REAGENT
In vitro diagnosticrotechnic reagents comprises of the reagents used in various steps of the process of biochemistry assays. These can be in the form of primary or secondary substances such as inulin, bovine serum albumin, human neutrophil elastase, human plasma albumin, mouse monoclonal antibodies, or yeast. The primary substances are precipitated using primary methods such as those using streptacins, enzyme-linked immunosorbent assay (ELISA), goat-stew cultures, and other broth approaches. The secondary substances are precipitated using various procedures based on the primary methods. The methods used in vitro diagnosticrotechnic reagents may include solid phase, injector fractionation, enzyme-linked immunosorbent assay (ELISA), bead separation, electrophoresis, and bead coating.
The invention of VITRO DIAGNOSTIC REAGENT is credited to Merck Pharmaceuticals. This breakthrough product made the analysis of various biological samples easy and less costly. As a result, medical devices became more accurate and easily available for clinical practice. VITRO DIAGNOSTIC REAGENT is ideal for in vitro diagnostics of many types. This is why it has been adopted in various areas of medicine such as oncology, gastroenterology, infectious disease, pediatrics, heath care, cardiology, neurology, rheumatology, dermatology, gastroenterology, infectious diseases, orthopedics, and veterinary science. In fact, VITRO DIAGNOSTIC REAGENT supplies are used in almost all areas of medicine.
VITRO DIAGNOSTIC REAGENT is the market leader in the field of live cell imaging. It is a product that uses the latest imaging technology with its novel methods for administering its drugs. This is why it is used for the diagnosis of a wide range of diseases, as well as its treatment. This report from the US Department of Health and Human Services' market research report on Diagnostic and Therapeutic Drug Products includes this information about VITRO DIAGNOSTIC REAGENT.
When VITRO DIAGNOSTIC REAGENT products are used, it is used along with special technologies that allow live cells to pass through the gel coating that is placed on the device's slide or wafer. The use of this allows the reagents to enter the gel and pass through the sample at a rate that depends on how certain the reagents are, which is called quality control. The quality control of the reagents in diagnostic process depends on many factors including the type of material (polymers or liquids), the concentration used, the temperature at which the samples are tested, and the types of disease for which they are being used.
VITRO DIAGNOSTIC REAGENT manufacturers use two types of quality control. First, they use the data collected by the laboratory's quality control staff during the clinical phase of the testing process. In this process, the laboratory's staff monitors and collects the relevant data that is needed for quality control purposes. Then, they make copies of these test results, evaluate them, and then submit them to the manufacturers for their further processing. The manufacturer then receives data that helps them determine the appropriate reagents for their VITRO DIAGNOSTIC REAGENT products and send them to distribution and clinical facilities.
The second stage in the supply chain process begins when VITRO DIAGNOSTIC REAGENTS are received at the manufacturing facility from the distribution points. At this point, quality assurance checks and approval is conducted on these products to confirm their identity, according to international guidelines. The final step in the supply chain process occurs at the receiving plant, where VITRO DIAGNOSTIC REAGENTS are packed for shipment to all key distribution points in various regions of the world. This final stage in the supply chain cycle makes sure that the VITRO DIAGNOSTIC REAGENTS arrive in schedule and on time to help support patient care.
There are several challenges and issues facing the VITRO DIAGNOSTIC REAGENT industry. One challenge is the absence of a standardized VITRO DIAGNOSTIC REAGENT manufactured by any one company. The lack of standardization forces re-manufacturers to re-evaluate manufacturing processes to improve on process control and reduce cost. The lack of a uniform distribution channel also forces re-manufacturers to improve their own service to better support their customers. With such a large number of companies involved in the supply chain, it can be difficult for a client to monitor their own supply chain, and in many cases, they are left guessing at how well they should monitor their own supply chain. In VITRO DIAGNOSTIC REAGENT manufacturer and company like Kangte Bio is about to manufacture.
To address these challenges, FDA has implemented stringent regulations and rules to help the VITRO DIAGNOSTIC REAGENT industry. Currently, VITRO DIAGNOSTIC REAGENTS must meet stringent quality requirements and are subject to significant FDA oversight. VITRO DIAGNOSTIC REAGENT manufacturers must meet certain standards set forth in the NDA and NPDES permit documents. The final outcome, according to FDA, is that reagents are safer than powdered medications containing the same active ingredients. VITRO DIAGNOSTIC REAGENT manufacturers have the ability to meet FDA's quality parameters and NPDES permits with consistency and confidence.
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healthcare-market · 3 years
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Serum Separation Gel Market : Technological Growth Map over Time to Understand the Industry Growth Rate
Serum Separation Gel Market: Introduction
· Serum separation gel enables the stable and reliable separation of the blood clot and serum with low influence on the clinical results. Serum separating gel is a substance used in serum separation tubes (SSTs), which is widely utilized to collect blood samples in clinical assays. Serum separation gel provides high resistance to the irradiation and offers effective recovery of therapeutic drug monitoring (TDM).
· Serum separation gel provides faster and complete separation of blood cells, which improves the serum stability and thus offers higher plasma levels and minimize contamination. The serum separation gel has low specific gravity and hence, offers high quality serum. The separator gel improves the serum and plasma analyte stability, thereby facilitating storage and transport. Under centrifugal force, the serum separating gel forms a stable barrier between the serum and blood cells.
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Key Drivers, Restraints, and Opportunities of Global Serum Separation Gel Market
· Increase in number of blood banks across globe, rising incidences of chronic diseases, and steep rise in incidence of hematological diseases and chronic infectious diseases across globe are anticipated to propel the market of global serum separation gel market. As per Centers for Disease Control and Prevention (CDC), in 2019, blood infections were estimated to have been the cause of a considerable high mortality rate in the geriatric population, which in turn is expected to boost the demand for serum separation gel across the globe. Furthermore, an increase in the number of contract research organizations and investments in the biotechnology industry is estimated to propel the global serum separation gel market.
· Rise in number of manufacturing plants in emerging countries is estimated to boosts the serum separation gel market. Furthermore, stable and reliable result by separating the blood clot and serum with low entry barrier is estimated to offer significant opportunity for the market during the forecast period.
· However, high cost of the serum separation gel is projected to hamper the serum separation gel market in the near future. Moreover, tedious clinical composition of the serum separation gel is likely to make the clinical assay complicated to interact with the blood ingredients.
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North America to Capture Major Share of Global Serum Separation Gel Market
· North America is likely to account for a notable share of the global serum separation gel market during the forecast period. Technological advancements, increase in prevalence of chronic diseases, presence of hematological conditions among patients, and a rise in the demand for serum separation gels are a few factors that are expected to boost the serum separation gel market in North America. Rising investments in research & development and advantage of gel tubes in testing for thyroid function are anticipated to boost the serum separation gels market in North America.
· The serum separation gel market in Asia Pacific is likely to expand at a rapid pace during the forecast period. Presence of key players, such as Sekisui medical co., ltd, and Boai nky pharmaceuticals, is expected to boost the serum separation gel market in the region. Rising rate of the blood cells preservation in mammals and increasing number of biotechnology companies are a few factors that are anticipated to propel the serum separation gel market in Asia Pacific.
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Key Players Operating in Global Serum Separation Gel Market
The global serum separation gel market is consolidated with the presence of small number of leading players.
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Serum Separation Gel Market Precise Outlook and Study of Top Players 2026
" The Serum Separation Gel market report discusses new business challenges and investment research in the Serum Separation Gel market which understands market attributes, industry structure and competitive scenario, problems, concepts of desire, as well as business strategies and market efficiency. It is the meticulous market research report that studies the challenges, market structures, opportunities, driving forces and competitive landscape of the business. This market report offers an in-depth study of the driving factors, opportunities, restraints, and challenges of the market to gain crucial market insights. The market report makes available smart solutions for versatile business challenges and initiates effortless decision-making process. The research and studies associated with competitor analysis clearly maintains the competitive landscape at the center of attention with which the Serum Separation Gel industry may choose or advance its own strategies to thrive in the market. The purpose of the report: The primary objective of the Serum Separation Gel market report is to impart knowledge to the business explorers to understand the growth of the Serum Separation Gel market during the forecast period. It also offers a competitive landscape defining the profiles of top players driving the growth of the Serum Separation Gel industry. The study focuses on mergers and collaborations between key players to explore opportunities for business expansion by establishing global connectivity. From a regional perspective, the Serum Separation Gel market report provides regional market segmentation which shows regional demand and trends. >> Download FREE Research Sample with Industry Insights (150+ Pages PDF Report) @  
Dominant Players in the Global Serum Separation Gel Market include:  Qiagen Merck Bio-Rad Laboratories Cardinal Health Roche Medtronic BD Danaher BOAI NKY PHARMACEUTICALS
The new report on the global Serum Separation Gel market report further contains an assessment of the business space on the basis of segment performance and regional growth episodes. Industrial market players focus on product launches, strategic industry collaborations and long-term contracts with leading end-user companies. The report presents the huge events and regulations on file and data on the latest events and news on things going on around the commercial space. This report segments the market based on the following types: Serum Separation Gel Integrated with Tube Serum Separation Gel without Tube On the basis of Application, the market is segmented into: Hospital Blood Bank Biotechnology Companies Others Furthermore, the market report further provides information on the market development, trends, changes in supply and demand in many regions of the world. Additionally, the production, revenue and market share by key vendors, key regions and types. The Serum Separation Gel Market consumption in terms of volume is also provided for major countries (or regions), and each application and product globally. From this market report, the reader will also be able to learn about the latest developments in the industry. On the basis of regional analysis the market is segmented into: -Americas (United States, Canada, Mexico, Brazil) -APAC (China, Japan, Korea, Southeast Asia, India, Australia) -Europe (Germany, France, United Kingdom, Italy, Russia) -Middle East and Africa (Egypt, South Africa, Israel, Turkey, GCC countries) What benefits will the research study bring? 1) Latest trends influencing the industry and development scenario 2) Identify Powerful Opportunities of Global Serum Separation Gel Market 3) The key decision in planning and to further expand the market share 4) Identify key business segments, market proposition and gap analysis 5) Help in the allocation of marketing investments 6) Latest opportunities and challenges, threats, historical and future trends 7) Know the research methodology
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TOC Highlights: Chapter 1. Introduction: The Serum Separation Gel research work report covers a concise introduction to the global market. This segment provides assessments of key participants, a review of Serum Separation Gel industry, outlook across key areas, financial services, and various difficulties faced by Serum Separation Gel Market. This section depends on the Scope of the Study and Report Guidance. Chapter 2. Outstanding Report Scope: This is the second most significant chapter, which covers market segmentation along with a definition of Serum Separation Gel. It characterizes the whole scope of the Serum Separation Gel report and the various features it is describing. Chapter 3. Market Dynamics and Key Indicators: This chapter incorporates key elements focusing on drivers [Includes Globally Growing Serum Separation Gel frequency and Increasing Investments in Serum Separation Gel], Key Market Restraints[High Cost of Serum Separation Gel], opportunities [Arising Markets in Developing Countries] and introduced in detail the arising trends [Consistent Innovate of New Screening Products] development difficulties, and influence factors shared in this latest report. Chapter 4. Type Segments: This Serum Separation Gel market report shows the market development for different kinds of products showcased by the most far-reaching organizations. Chapter 5. Application Segments: The analysts who composed the report have completely assessed the market capability of key applications and perceived future freedoms. Chapter 6. Geographic Analysis: Each provincial market is deliberately examined to understand its current and future development, improvement, and request situations for this market. Chapter 7. Impact of COVID-19 Pandemic on Global Serum Separation Gel Market: 7.1 North America: Insight On COVID-19 Impact Study 2021-2026 7.2 Europe: Serves Complete Insight On COVID-19 Impact Study 2021-2026 7.3 Asia-Pacific: Potential Impact of COVID-19 (2021-2026) 7.4 Rest of the World: Impact Assessment of COVID-19 Pandemic Chapter 8. Manufacturing Profiles: The significant players in the Serum Separation Gel market are definite in the report based on their market size, market served, products, applications, regional development, and other variables. Chapter 9. Estimating Analysis: This chapter gives price point analysis by region and different forecasts. Chapter 10. North America Serum Separation Gel Market Analysis: This chapter includes an appraisal on Serum Separation Gel product sales across major countries of the United States and Canada along with a detailed segmental viewpoint across these countries for the forecasted period 2021-2026. Chapter 11. Latin America Serum Separation Gel Market Analysis: Significant countries of Brazil, Chile, Peru, Argentina, and Mexico are assessed apropos to the appropriation of Serum Separation Gel. Chapter 12. Europe Serum Separation Gel Market Analysis: Market Analysis of Serum Separation Gel report remembers insights on supply-demand and sales revenue of Serum Separation Gel across Germany, France, United Kingdom, Spain, BENELUX, Nordic, and Italy. Chapter 13. Asia Pacific Excluding Japan (APEJ) Serum Separation Gel Market Analysis: Countries of Greater China, ASEAN, India, and Australia & New Zealand are assessed, and sales evaluation of Serum Separation Gel in these countries is covered. Chapter 14. Middle East and Africa (MEA) Serum Separation Gel Market Analysis: This chapter centers around Serum Separation Gel market scenario across GCC countries, Israel, South Africa, and Turkey. Chapter 15. Research Methodology The research procedure chapter includes the accompanying primary realities, 15.1 Coverage 15.2 Secondary Research 15.3 Primary Research Chapter 16. Conclusion >> [With unrivaled insights into the Serum Separation Gel market, our industry research will help you take your Serum Separation Gel business to new heights.] <<
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Why Report Hive Research: Report Hive Research delivers strategic market research reports, statistical surveys, industry analysis and forecast data on products and services, markets and companies. Our clientele ranges mix of global business leaders, government organizations, SME’s, individuals and Start-ups, top management consulting firms, universities, etc. Our library of 700,000 + reports targets high growth emerging markets in the USA, Europe Middle East, Africa, Asia Pacific covering industries like IT, Telecom, Semiconductor, Chemical, Healthcare, Pharmaceutical, Energy and Power, Manufacturing, Automotive and Transportation, Food and Beverages, etc. Contact Us: Report Hive Research 500, North Michigan Avenue, Suite 6014, Chicago, IL – 60611, United States Website: https://www.reporthive.com Email: [email protected] Phone: +1 312-604-7323 Qiagen Merck Bio-Rad Laboratories Cardinal Health Roche Medtronic BD Danaher BOAI NKY PHARMACEUTICALS , Argentina Serum Separation Gel Market, Australia Serum Separation Gel Market, Belgium Serum Separation Gel Market, Brazil Serum Separation Gel Market, Canada Serum Separation Gel Market, Chile Serum Separation Gel Market, China Serum Separation Gel Market, Columbia Serum Separation Gel Market, Egypt Serum Separation Gel Market, France Serum Separation Gel Market, Germany Serum Separation Gel Market, Global Serum Separation Gel Market, India Serum Separation Gel Market, Indonesia Serum Separation Gel Market, Italy Serum Separation Gel Market, Japan Serum Separation Gel Market, Malaysia Serum Separation Gel Market, Mexico Serum Separation Gel Market, Serum Separation Gel Applications, Serum Separation Gel Industry, Serum Separation Gel Key Players, Serum Separation Gel Market, Serum Separation Gel Market 2020, Serum Separation Gel Market 2021, Netherlands Serum Separation Gel Market, Nigeria Serum Separation Gel Market, Philippines Serum Separation Gel Market, Poland Serum Separation Gel Market, Russia Serum Separation Gel Market, Saudi Arabia Serum Separation Gel Market, South Africa Serum Separation Gel Market, South Korea Serum Separation Gel Market, Spain Serum Separation Gel Market, Sweden Serum Separation Gel Market, Switzerland Serum Separation Gel Market, Taiwan Serum Separation Gel Market, Thailand Serum Separation Gel Market, Turkey Serum Separation Gel Market, UAE Serum Separation Gel Market, UK Serum Separation Gel Market, United States Serum Separation Gel Market, COVID 19 impact on Serum Separation Gel market, Hospital Blood Bank Biotechnology Companies Others , Serum Separation Gel Integrated with Tube Serum Separation Gel without Tube , Serum Separation Gel, Serum Separation Gel Market, Serum Separation Gel Market comprehensive analysis, Serum Separation Gel Market comprehensive report, Serum Separation Gel Market forecast, Serum Separation Gel Market Forecast to 2027, Serum Separation Gel Market Growth, Serum Separation Gel market in Asia, Serum Separation Gel market in Australia, Serum Separation Gel Market in Canada, Serum Separation Gel market in Europe, Serum Separation Gel Market in France, Serum Separation Gel Market in Germany, Serum Separation Gel Market in Israel, Serum Separation Gel Market in Japan, Serum Separation Gel market in Key Countries, Serum Separation Gel Market in Korea, Serum Separation Gel Market in United Kingdom, Serum Separation Gel Market in United States, Serum Separation Gel market report, Serum Separation Gel market research, Serum Separation Gel Market Forecast to 2026, Serum Separation Gel Market 2020, Serum Separation Gel Market Rising Trends, Serum Separation Gel Market is Emerging Industry in Developing Countries, Serum Separation Gel Market SWOT Analysis, Serum Separation Gel Market Updates"
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Vacuum Blood Collection Tube Market Profile, Key Players and Segmentation Till 2027
Vacuum Blood Collection Tube Market overview
A vacuum blood collection tube is a sterile glass or plastic tube that uses a stopper for creating a vacuum seal for collecting the blood samples directly from the vein in the human body. This collection tube helps to prevent the needlestick damage by avoiding the use of needles and moreover the risk of contamination. The tube contains a double pointed needle that is attached to a plastic tubular adapter.
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The vacuum blood collection tube also contains additional constituents that are used for preserving blood for treatment in medical labs. These additives include anticoagulants such as EDTA, sodium citrate, heparin and gel. This tube is mostly used by clinics and labs to store blood for testing processes. Vacuum blood collection tubes are present in different sizes and specimens for testing and other purposes.
The vacuum blood collection tube market report presents the prominence over the forecast period for 2018 to 2027. It is projected that the collection tube market is anticipated to grow at a CAGR of 11.6% during the aforementioned forecast period. The demand for safe and reliable equipment for collecting blood and the use for aseptic techniques during the patient care process.
Vacuum Blood Collection Tube Market segmentation
The global vacuum blood collection tube market report showcases the total market based on the type, applications, and end-users. Moreover, the blood tests that are carried out for diagnosis of different diseases such as HIV, anemia, diabetes and other heart diseases that will fuel the growth of the vacuum blood collection tubes. The drivers, lack of skilled personnels and the risks associated with the blood transfusion are restraining the global market.
On the basis of the type, the global vacuum blood collection tube market can be split into:
Heparin tubes
EDTA tubes
Clot activator tube
Serum separating tubes
Others
And based on the applications, the global product market can be classified into:
Biochemical test
Blood routine examination
Coagulation testing
Blood segmentation testing
Others
And lastly, based on the end-users, the global vacuum collection tube market can be segmented into:
Clinics
Hospitals
Blood banks
Pathology laboratories
Outpatient centers
Others
Vacuum Blood Collection Tube Market Regional analysis
On a geographical basis, the vacuum blood collection tube market has been segmented in the regions of Europe (France, Germany, UK, France, Italy, and Spain), Asia-Pacific (China, Japan, India, Republic of Korea, and Australia), North America, South and Central America, Middle East and Africa. As per the report, many large and small key players are dominating the global product market that is working towards developing the innovative products and research methodologies that are augmenting the growth of the global vacuum blood collection tube market. According to the American National Red Cross, there are 13.6 million whole blood and red blood cells that are collected per year in the United States.
Vacuum Blood Collection Tube Industry news
Amidst the coronavirus pandemic, Terumo, a Japanese largest manufacturer, and Senko are making more heart-lung machines, responding to government production subsidies, that will increase the production of heart-lung machines for treating severe COVID-19 that are surging the demand for the growing number of novel virus infections. The company will operate at full capacity to provide subsidies to companies for increasing the production of ECMO.
Table Of Contents:
Chapter 1. Report Prologue
Chapter 2. Market Introduction
2.1 Definition
2.2 Scope Of The Study
2.2.1 Research Objective
2.2.2 Assumptions
2.2.3 Limitations
Chapter 3. Research Methodology
3.1 Introduction
3.2 Primary Research
3.3 Secondary Research
3.4 Market Size Estimation
Chapter 4. Market Dynamics
4.1 Drivers
4.2 Restraints
4.3 Opportunities
4.4 Challenges
4.5 Macroeconomic Indicators
4.6 Technology Trends & Assessment
Chapter 5. Market Factor Analysis
….Continued
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At Market Research Future (MRFR), we enable our customers to unravel the complexity of various industries through our Cooked Research Report (CRR), Half-Cooked Research Reports (HCRR), Raw Research Reports (3R), Continuous-Feed Research (CFR), and Market Research & Consulting Services.
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Serum Separation Gel – Demand and Sales Forecasts, Market Share, Market Size, Market Trends Serum Separation Gel Market Report The report offers an overview of the Serum Separation Gel with the help of application segments and geographical regions (United States, Europe, China, Japan, Southeast Asia, India, Central & South America, ROW) that govern the market currently.
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healthcare00897 · 6 years
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Blood Collection Tubes Market 2018 Target Client, Brand Strategy, Distributors, Marketing Channel Development and Trend to 2026
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Blood collection tubes are sterilized plastic or glass tubes used for the collection of blood samples, urine samples, and serum samples of patient for the diagnosis of blood related disease. There are various types of blood collected tubes such as sodium heparin blood collection tube, serum separating tubes, vacutainer blood collection tubes, plasma separation tube and EDTA tubes. Vacutainer blood collection tubes are available in different size such as 16mm*100mm, 13mm*57mm and 13mm*100mm. Vacutainer blood collection tubes is the blood collector system tubes which has the push button technology for safety mechanism promptly helps to protect the patient against needle stick injury. In such type of vacutainer blood collection tubes the blood samples are collected and stored safely.
There are various forms of tubes with different functions such as green-top tube is a sodium heparin tube contains sodium heparin and is used for collection of heparinized plasma or whole blood for special tests, whereas, in grey-top tube (Potassium Oxalate/Sodium Fluoride) contains sodium fluoride as a preservative and is used to preserve glucose in whole blood and also contains potassium oxalate as an anticoagulant. Furthermore, EDTA tubes are of lavender-top and contains EDTA as an anticoagulant and is used for most hematological procedures whereas serum gel tubes contains a clot activator and serum gel separator and is used for various laboratory tests such as urine and glucose tests.
Blood Collection Tubes market taxonomy:
Global Blood Collection Tubes Market by Product Type
   Plasma Separation Tube
   Heparin Tubes
   Serum Separating Tubes
   EDTA Tube
   Rapid Serum Tubes
   Others
Global Blood Collection Tubes Market by End User
   Hospitals
   Clinics
   Ambulatory Surgical Centers
   Others (Blood Banks, Clinical laboratories)
Global Blood Collection Tubes Market, by Geography
   North America
   Latin America
   Europe
   Asia Pacific
   Middle East
   Africa
Increase in number of surgical procedures and blood donation rate around the globe expected to favors the demand for blood collection tubes in the near future
North America is expected to account for largest share of the blood collection tubes market in 2016, mainly due to the rising prevalence of diseases such as HIV, hepatitis B and increase in number of surgical procedures such as knee replacement surgery, cataract surgery and many more. As per The World Bank stats, in 2012, number of surgical procedures performed in the U.S. were around 30,500 per 100,000 of population.
Also, the increase in blood donation rate is projected to support the growth of blood collection tubes market in the near future. As per World Health Organization (WHO), in 2013, 112.5 million blood donations collected globally and around half of these are collected in the developed countries such as the U.S.
Furthermore, in emerging countries such as Bangladesh, India and China, up to 65% of blood transfusions are given to children under 5 years of age; whereas in developed countries 75% of blood transfusion are given to the patient of age 65 years and over.
Also, as per WHO, in 2013, the blood donation rate was around 33.1 per 1000 population in developed countries such as U.S.,11.7 per 1000 population in middle-income countries such as India and 4.6 per 1000 population in low-income countries such as Afghanistan. Also, the blood donations were increase by 10.7 million in between 2008 to 2013.
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Key players for blood collection tubes market
The key players in the market are Greiner Bio-One, FL MEDICAL s.r.l., LP Italiana, Terumo Corporation, QIAGEN N.V and   BD Vacutainer
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martynnx-blog · 6 years
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Blood Collection Tubes Market Future and Technological Advancement
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Blood collection tubes are sterilized plastic or glass tubes used for the collection of blood samples, urine samples, and serum samples of patient for the diagnosis of blood related disease. There are various types of blood collected tubes such as sodium heparin blood collection tube, serum separating tubes, vacutainer blood collection tubes, plasma separation tube and EDTA tubes. Vacutainer blood collection tubes are available in different size such as 16mm*100mm, 13mm*57mm and 13mm*100mm. Vacutainer blood collection tubes is the blood collector system tubes which has the push button technology for safety mechanism promptly helps to protect the patient against needle stick injury. In such type of vacutainer blood collection tubes the blood samples are collected and stored safely.
There are various forms of tubes with different functions such as green-top tube is a sodium heparin tube contains sodium heparin and is used for collection of heparinized plasma or whole blood for special tests, whereas, in grey-top tube (Potassium Oxalate/Sodium Fluoride) contains sodium fluoride as a preservative and is used to preserve glucose in whole blood and also contains potassium oxalate as an anticoagulant. Furthermore, EDTA tubes are of lavender-top and contains EDTA as an anticoagulant and is used for most hematological procedures whereas serum gel tubes contains a clot activator and serum gel separator and is used for various laboratory tests such as urine and glucose tests.
Increase in number of surgical procedures and blood donation rate around the globe expected to favors the demand for blood collection tubes in the near future
North America is expected to account for largest share of the blood collection tubes market in 2016, mainly due to the rising prevalence of diseases such as HIV, hepatitis B and increase in number of surgical procedures such as knee replacement surgery, cataract surgery and many more. As per The World Bank stats, in 2012, number of surgical procedures performed in the U.S. were around 30,500 per 100,000 of population.
The key players in the market are Greiner Bio-One, FL MEDICAL s.r.l., LP Italiana, Terumo Corporation, QIAGEN N.V and   BD Vacutainer
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Global Electrophoresis Reagents Market by Products, Applications, Techniques, End-users, and Regions – Global Industry Analysis, Growth, Share, Size, Trends, and Forecast 2020 – 2026
The electrophoresis reagents market is anticipated to expand at a CAGR of around 5.5% during the forecast period, between 2020 and 2026. The growth of the market is attributed to increasing number of infectious diseases and genetic disorders around the world. Surging fame of personalized medicines is also one of the factors driving the growth of the market. Additionally, preference of predictive diagnosis is boosting the growth of the market. 
Electrophoresis is an electrical current method which is used to separate RNA, DNA, and proteins based on the fragment size or molecular weight. Electrophoresis reagents are the reagents which are used in the electrophoresis technique. The technique is generally used in sectors such as clinical research, medical diagnostics, and life sciences. 
Electrophoresis reagents help in identifying the infectious diseases and genetic disorders. It is used for better treatment of patients in clinical research and medical diagnosis. The technique helps in detecting the presence of abnormal protein if any in the human body. Additionally, it is also used to measure the presence of various groups of proteins in serum, plasma, and urine.
Market Trends, Drivers, Restraints, and Opportunities:
Growing technological advancements regarding electrophoresis reagents is one of the major factors driving the growth of the market.
Increasing production of innovative and new transforming applications is also one of the factors propelling the growth of the market.
Surging geriatric population with increasing disposable incomes across the globe is one of the factors boosting the growth of the market.
Rising funds and spends by various organizations and government for the research of genomics and proteomics is increasing the growth of the market.
Growing research & development activities in the life sciences industry specifically is boosting the growth of the market.
Increasing time consumption due to the technique of electrophoresis is one of the major factors restraining the growth of the market.
Presence of substitute technologies with better efficiencies and limited sample analysis via gel electrophoresis are also the major factors hampering the growth of the market.
Rising costs of instruments, dearth of well-trained operators, and strict regulatory approval procedures are amongst the factors which are hindering the growth of the global electrophoresis reagents market.
Read More: https://dataintelo.com/report/electrophoresis-reagents-market/
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sapanas · 4 years
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Vacuum Blood Collection Tube Market Size, Historical Analysis, Emerging Technologies And Global Trends
Market Research Future published a Half – Cooked research report on “Global Vacuum Blood Collecting Tube Market Research Report - Forecast to 2027” – Market Analysis, Scope, Stake, Progress, Trends and Forecast to 2027.
Global vacuum blood collecting tube Market - Overview
Global vacuum blood collecting tube market is growing exponentially owing to rising prevalence of chronic respiratory disease and increasing usage of combination therapy are the major factor driving the vacuum blood collecting tube Market. The global market for vacuum blood collection tube is expected grow at a CAGR of 7.5% over the forecasted period.
The vacuum blood collection system consists of a double-pointed needle, a plastic holder or adapter, and a series of vacuum tubes with rubber stoppers of various colours. A vacuum blood collection tube is evacuated to create a vacuum inside the tube facilitating the draw of a predetermined volume of liquid. Most commonly used to collect blood samples in venipuncture, they are also used as urine collection tubes and as serum separator tubes. Vacuum Blood Collection Tube tubes may contain additives designed to stabilize and preserve the specimen prior to analytical testing. Tubes are available with or without a safety-engineered closure, with a variety of labelling options and closure colours as well as a range of draw volumes.
Vacuum collection tubes are glass or plastic tubes sealed with a partial vacuum inside by rubber stoppers. The air pressure inside the tube is negative, less than the normal environment. After inserting the longer needle into the vein, the phlebotomist pushes the tube into the holder so that the shorter needle pierces the stopper. The difference in pressure between the inside of the tube and the vein causes blood to fill the tube. The tubes are available in various sizes for adult and paediatric phlebotomies.
For additives, different blood tests requires different types of blood specimens. Most tubes have additives called anticoagulants which prevent clotting/coagulation of the blood. Plastic tubes may have an additive to enhance clotting of the blood. The anticoagulants are already in the tubes in the precise amount needed to mix with the amount of blood that will fill the tube. The colour of the stopper on each tube indicates if any anticoagulant is present in the tube. It is important to completely fill each tube so that the proportion of blood to chemical additive is correct, otherwise, the test results may not be accurate or the specimen will be rejected and will need to be recollected. It is also important to thoroughly mix the blood with the additive by gentle inversion.
The vacuum blood collection tube market is growing at an exponential rate. The cross infection occurring due to blood transfusion, blood donation leads to spread of infectious diseases which is anticipated to increase the demand for these products.
Global Vacuum Blood Collecting Tube Market - Regional Analysis
Depending on geographic region, Globally North America is the largest market for vacuum blood collecting tube. The North American market for vacuum blood collecting tube is expected to grow at a CAGR of 5.8% by the end of the forecasted period. These tubes may contain additional substances that preserve blood for processing in a medical laboratory. There is an increase in blood testing in these countries due to the prevalence new diseases.
Europe is expected to be the second-largest market for vacuum blood collecting tube which is expected to grow at a CAGR of 6.5%. It is used for blood culture and not for laboratory analysis, special collection to detect bacteria growing in blood.
Asia pacific region is expected to be fastest growing region in vacuum blood collecting tube market. Middle East & Africa is expected to have limited but steady growth in the market. These countries with the advancement of technology are expected to show large number of cases of infections and other hospital acquired disease which remain unnoticed currently.
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Global Vacuum Blood Collecting Tube Market - Company Analysis
A vacuum blood collection tube is a sterile glass tube with a colored rubber stopper creating a vacuum seal inside of the tube which facilitate drawing predetermined volume of liquid, it is known as a Vacutainer. The vacutainer tubes were invented by Joseph Kleiner and Becton Dickinson in 1949. Vacutainer is a registered trademark of Becton Dickinson, which manufactures and sells the tubes ever since. The new gel vacuum tube seems to be an effective tool in the evacuated blood collection system due to its advantage in reduction of time in specimen processing.
Becton, Dickinson and Company (US), Sunphoria Co., Ltd. (Taiwan), Narang Medical Limited, CML Biotech, Bio – X, Labtech Disposables, Hebei Xinle Sci &Tech Co.,LTD (China), Sekisui Chemical Co. Ltd, HUMAN (US), Terumo (Japan), GBO, Medtronic (US), Sarstedt and others are some of the prominent players at the forefront of competition in the global vacuum blood collecting tube market and are profiled in MRFR Analysis.
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