Cell Viability Assays Market: Global Growth Analysis, Share, Demand by Regions, Types and Analysis of Top Key Players Research Forecasts to 2026 -…

A new market research study titledGlobal Cell Viability Assays Market 2019explores several significant factors of the market and evaluates the global market. The report includes breakdown data by manufacturers, key regions, types, and application, which presents a detailed analysis of the drivers and restraints impacting the overallGlobal Cell Viability Assays Market.

Global Cell Viability Assays MarketBy Products (Consumables, Instruments), Cell Type (Human Cells, Microbial Cells, Animal Cells), Applications (Stem Cell Research, Clinical & Diagnostics Applications, Drug Discovery & Development, Basic Research, Other Applications), End-Users (Pharmaceutical & Biotechnology Companies, Academic & Research Institutes, Hospital & Diagnostics Laboratories, Other End-Users), Geography (North America, South America, Europe, Asia-Pacific, Middle East and Africa) Industry Trends & Forecast to 2026Global Cell Viability Assays Marketis expected to rise from its initial estimated value of USD 2.75 billion in 2018 to an estimated value of USD 5.30 billion by 2026, registering a CAGR of 8.57% in the forecast period of 2019-2026.

Cell Viability Assays Market report comprises of a chapter on the global market and all of its associated companies with their profiles, which gives important information and data pertaining to their outlook in terms of finances, product portfolios, investment plans, and marketing and business strategies. The report has information on product development, market sales, regional trade, investment calculation, investment opportunity, trade outlook, policy, regional market and another important characteristic of the Cell Viability Assays Market.

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Few of the major competitors currently working in the cell viability assays market are Thermo Fisher Scientific, Merck KGaA, Bio-Rad Laboratories, GENERAL ELECTRIC COMPANY, Danaher, BD, Promega Corporation, Biotium, Abcam plc, BioTek Instruments, Inc., PerkinElmer Inc., Pfizer Inc., Bristol-Myers Squibb Company, Boehringer Ingelheim International GmbH, GlaxoSmithKline plc. and Gilead Sciences, Inc., Others.

Market Definition: Global Cell Viability Assays Market

Viability means ability to survive or live. Cell viability is a homogeneous method to determine the number of cells that are dead or living on a total cell sample. They are usually based on the ongoing cellular metabolism and enzyme activity. The increase in the cell viability means that there is cell growth while decrease in the cell viability means that toxic effects of compound. To determine the optimal growth conditions of the cell populations often call viability is very useful.

Market Drivers

Market Restraints

The report can answer the following questions:

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Segmentation: Global Cell Viability Assays Market

Key Developments in the Market:

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Cell Viability Assays Market: Global Growth Analysis, Share, Demand by Regions, Types and Analysis of Top Key Players Research Forecasts to 2026 -...

At 8.4% CAGR, STEM CELL BANKING Market Size is Expected to Exhibit 11.2 Billion US$ by 2025 – Scientect

STEM CELL BANKINGMarket Size Covers Global Industry Analysis, Size, Share, CAGR, Trends, Forecast and Business Opportunity.

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Global STEM CELL BANKING Market to reach USD 11.2 billion by 2025.

Global STEM CELL BANKING Market valued approximately USD 5.4 billion in 2016 is anticipated to grow with a healthy growth rate of more than 8.4% over the forecast period 2017-2025. Global Rise in number of births and increase in R&D activities in regards with applications of stem cells, and surge in prevalence of fatal chronic diseases are owing towards a driving force for the growth of the market. The growth in GDP & disposable income is projected to help in increasing the number of stem cell units stored, which in turn boosts the market growth. The objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming eight years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study. Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, the report shall also incorporate available opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and product offerings of key players. The detailed segments and sub-segment of the market are explained below:

By Application oSample Collection & Transportation oSample Processing oSample Analysis oSample Preservation & Storage By Regions: oNorth America oU.S. oCanada oEurope oUK oGermany oAsia Pacific oChina oIndia oJapan oRest of the World

Furthermore, years considered for the study are as follows:

Historical year 2015 Base year 2016 Forecast period 2017 to 2025

Some of the key manufacturers involved in the market are. Cord Blood Registry, ViaCord, Cryo-Cell, China Cord Blood Corporation, Cryo-Save, New York Cord Blood Program, Cord Vida, Americold, CryoHoldco, and Vita34. Other prominent players in the value chain include Caladrius Biosciences, Cryoviva, Smart Cells International Ltd., Stemade Biotech, Cytori Therapeutics, Cellular Dynamics International, PerkinElmer, and Reelabs Acquisitions and effective mergers are some of the strategies adopted by the key manufacturers. New product launches and continuous technological innovations are the key strategies adopted by the major players.

Target Audience of the Global STEM CELL BANKING in Market Study:

oKey Consulting Companies & Advisors oLarge, medium-sized, and small enterprises oVenture capitalists oValue-Added Resellers (VARs) oThird-party knowledge providers oInvestment bankers oInvestors

Key factors influencing market growth:

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Brandessence Market Research also provides customization options to tailor the reports as per client requirements. This report can be personalized to cater to your research needs. Feel free to get in touch with our sales team, who will ensure that you get a report as per your needs.

Thank you for reading this article. You can also get chapter-wise sections or region-wise report coverage for North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.

To summarize, the STEM CELL BANKING market report studies the contemporary market to forecast the growth prospects, challenges, opportunities, risks, threats, and the trends observed in the market that can either propel or curtail the growth rate of the industry. The market factors impacting the global sector also include provincial trade policies, international trade disputes, entry barriers, and other regulatory restrictions.

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At 8.4% CAGR, STEM CELL BANKING Market Size is Expected to Exhibit 11.2 Billion US$ by 2025 - Scientect

On the move at the OneAZ, Spencer Fane, UArizona – AZ Big Media

OneAZ Credit Union names Ken Bauer SVP

OneAZ Credit Union announced Ken Bauer as senior vice president, Credit Administration.

Bauer oversees OneAZs mortgage, business and commercial banking teams, emphasizing efficiency and excellence to help the organization succeed. He joined OneAZ Credit Union in 2020, bringing 20 years of experience in commercial banking with local and national banks and credit unions.

Established in 1951, OneAZ Credit Union is owned by its members and serves Arizona with 20 locations and more than 140,000 members

Spencer Fane LLP announced Kelly Mooney has joined the firm as of counsel. She will be part of the Tax, Trusts, & Estates practice group and work out of the firms Phoenix office.

Mooneys practice focuses on handling complex matters related to federal taxation, working with attorneys in other practice groups to structure transactions that comply with federal tax law, offer tax relief when applicable, and provide tax-efficient results for her clients. She regularly assists clients with tax planning and analysis for partnerships, LLCs, and corporations; real estate joint ventures organized as LLCs and general and limited partnerships; and individuals.

Spencer Fane understands that tax issues impact virtually every aspect of business, investment, and personal wealth management, said Andy Federhar, Spencer Fane office managing partner in Phoenix. We understand our clients needs to assist them with finding the best solutions to favorably handle their tax liability, and Kellys experience in handling these matters through collaborative analysis fits well with our firms approach to client service.

Mooney has an accomplished track record of representing clients before the Internal Revenue Service and other taxing authorities on ruling requests, civil controversy cases, and collection matters. Her work has included successfully negotiating the settlement of several complex and multiyear IRS examinations and cases involving the imposition of trust fund penalties and contested claims for refund.

The University of Arizona College of Nursing has announced key new appointments, promotions, honors, awards and other notable items in recent weeks, including:

After a national search, the UArizona College of Nursing has named Kelley Wilson, DNP, MSN, CMSRN, as the new program director of the colleges Master of Science for Entry to the Profession of Nursing (MEPN) program. Dr. Wilson joins the college from Georgetown Universitys School of Nursing and Health Studies, where she had been serving as program director for the schools Bachelor of Science in Nursing program. She assumed her new role on July 13.

Dr. Wilson brings a wealth of experience in teaching and developing courses and academic programs, said Connie Miller, DNP, RNC-OB, CNE, clinical associate professor and chair, General Nursing and Health Education Division. She has solid experience in mentoring and leading teams, in addition to proven track record of service and scholarship. We look forward to welcoming her to our MEPN team.

Aleeca Bell, PhD, RN, CNM, joined the College of Nursing in mid-July. Dr. Bell most recently was an associate professor at the University of Illinois at Chicago (UIC), College of Nursing, Department of Women Children and Family Health Science. At UIC, she also earned her masters degree in nursing in midwifery in 1998, practiced as a certified nurse midwife, and earned a doctorate in nursing in 2009. In addition, she was a postdoctoral fellow there from 2009-11.

Dr. Bells research in translational, multidisciplinary and biobehavioral clinical studies focuses on the intersection of perinatal mother-infant health outcomes and the underlying oxytocin system. Oxytocin is a hormone that acts on organs in womens bodies and as a chemical messenger in the brain, controlling key aspects of the reproductive system, including childbirth, lactation and some behavior. This includes womens childbirth experience, intrapartum medical interventions, the endogenous oxytocin system (hormonal, genetic and epigenetic), maternal postnatal mood/anxiety and caregiving attitudes, newborn behaviors and mother-infant interaction. Learn more.

Tracy E. Crane, PhD, a College of Nursing assistant professor, has focused much of her career on cancer survivorship. She is co-director of the Behavioral Measurements and Interventions Shared Resource at the UArizona Cancer Center and a member of the UArizona Data Science Institute. Shes also co-chair of the cancer prevention and control behavioral science working group for NRG Oncology, a research non-profit led by faculty at Columbia University, NYU Langone Health, the University of Michigan and UArizona.

With a research focus on improving adherence to healthy lifestyle behaviors in cancer survivors and their informal caregivers, Dr. Crane has developed interventions geared toward extending lifespans of post-treatment ovarian cancer survivors and telephone counseling to improve diet and physical activity in Latina cancer patients. In early 2020, Dr. Crane extended her expertise across the Atlantic when she helped researchers at Gustave Roussy, Europes largest cancer center, fine-tune a new cancer study, Motivating to Exercise and Diet, and Educating to Healthy Behaviors After Breast Cancer (MEDEA).

In keeping with Dr. Cranes previous research, MEDEA aims to compare the effect of a personalized telephone-based health education weight-loss program based on motivational coaching, exercise and diet, compared with a standard health educational program control on fatigue of overweight or obese breast cancer patients. Learn more.

According to new research from College of Nursing Associate Professor Ruth Taylor-Piliae, PhD, RN, FAHA, tai chi can be beneficial to the psychological well-being for adults suffering from cardiovascular disease. Published in June in the European Journal of Cardiovascular Nursing, Dr. Taylor-Piliaes review and meta-analysis of more than a dozen studies on the topic found that the exercise eased stress, anxiety, depression and psychological distress for those who practiced the mind-body exercise that emphasizes concentration on posture, relaxation and breathing, using a soothing series of set movements. Go to the UArizona Health Sciences Connect website for a video on her research. Learn more.

Three cardiologists recently joined the University of Arizona Sarver Heart Center. Arka Chatterjee, MD, Talal Moukabary, MD, and Madhan Sundaram, MBBS, joined the faculty of the UArizona College of Medicine Tucson and are now seeing patients at Banner University Medical Center Tucson.

With the addition of Drs. Chatterjee, Moukabary and Sundaram we continue the rapid growth in cardiovascular medicine at the University of Arizona and Banner UMC Tucson and we enhance our ability to provide highly personalized and expert care in the most advanced cardiology procedures to our patients, said Nancy K. Sweitzer, MD, PhD, director of the UArizona Sarver Heart Center, professor of medicine and chief of the Division of Cardiology in the Department of Medicine at the college.

These three physicians not only bring experience in electrophysiology, coronary and peripheral interventions and minimally invasive valve replacement, but they will expand the research offerings of the Sarver Heart Center in important areas of cardiology. This will allow us to bring the latest advances in heart disease treatment to the people of Southern Arizona, added Dr. Sweitzer.

Drs. Chatterjee and Moukabary are associate professors and Dr. Sundaram is an assistant professor of medicine.

In addition, Dr. Chatterjee is associate director of the Structural Heart Program at Banner UMC Tucson. He is board certified in interventional cardiology, cardiovascular disease, internal medicine and echocardiography. Dr. Chatterjee is experienced in transcatheter therapies for valvular disease and other congenital/structural heart defects. He has completed more than 200 transcatheter aortic valve replacement (TAVR) procedures. He finds the best part of working in the structural heart team is the synergy that occurs when a multidisciplinary team of expert providers works together to identify the ideal treatment for each patients unique case. Dr. Chatterjees research interests include outcomes research after coronary, structural and adult congenital interventions, and advances in structural and device therapies for heart disease.

Dr. Moukabary is a cardiac electrophysiologist (a cardiologist specializing in heart rhythm disorders or arrhythmias). He is an expert in computer modeling of cardiac arrhythmia, imaging in the cardiac electrophysiology lab, cell-based arrhythmia therapy and clinical cardiac electrophysiology. He is board certified in clinical cardiac electrophysiology and internal medicine. Dr. Moukabarys research interests include use of stem cell and iPS (induced pluripotent stem) cell therapies for heart rhythm disorders.

Dr. Sundaram is director of the Banner UMC Tucson Cardiac Catheterization Lab and Endovascular Services. He is board certified in interventional cardiology, cardiovascular disease, echocardiography and internal medicine. His clinical interests include complex coronary interventions, chronic total occlusions, endovascular peripheral interventions, interventions for acute pulmonary embolism and structural heart disease interventions. His research interests include cardiac interventions in older adults and clinical trials in coronary artery disease, peripheral artery disease and pulmonary embolism.

Continued here:
On the move at the OneAZ, Spencer Fane, UArizona - AZ Big Media

Induced Pluripotent Stem Cells Market Size Is Anticipated To Reach US$ 17200 Mn at a CAGR of 7% By 2026, Owing to Increasing Number of Product…

The healthcare industry has been focusing on excessive research and development in the last couple of decades to ensure that the need to address issues related to the availability of drugs and treatments for certain chronic diseases is effectively met. Healthcare researchers and scientists at the Li Ka Shing Faculty of Medicine of the Hong Kong University have successfully demonstrated the utilization of human induced pluripotent stem cells or hiPSCs from the skin cells of the patient for testing therapeutic drugs.

The success of this research suggests that scientists have crossed one more hurdle towards using stem cells in precision medicine for the treatment of patients suffering from sporadic hereditary diseases. iPSCs are the new generation approach towards the prevention and treatment of diseases that takes into account patients on an individual basis considering their genetic makeup, lifestyle, and environment. Along with the capacity to transform into different body cell types and same genetic composition of the donors, hiPSCs have surfaced as a promising cell source to screen and test drugs.

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In the present research, hiPSC was synthesized from patients suffering from a rare form of hereditary cardiomyopathy owing to the mutations in Lamin A/C related cardiomyopathy in their distinct families. The affected individuals suffer from sudden death, stroke, and heart failure at a very young age. As on date, there is no exact treatment available for this condition.

This team in Hong Kong tested a drug named PTC124 to suppress specific genetic mutations in other genetic diseases into the iPSC transformed heart muscle cells. While this technology is being considered as a breakthrough in clinical stem cell research, the team at Hong Kong University is collaborating with drug companies regarding its clinical application.

The unique properties of iPS cells provides extensive potential to several biopharmaceutical applications. iPSCs are also used in toxicology testing, high throughput, disease modeling, and target identification. This type of stem cell has the potential to transform drug discovery by offering physiologically relevant cells for tool discovery, compound identification, and target validation.

A new report by Persistence Market Research (PMR) states that the globalinduced pluripotent stem or iPS cell marketis expected to witness a strong CAGR of 7.0% from 2018 to 2026. In 2017, the market was worth US$ 1,254.0 Mn and is expected to reach US$ 2,299.5 Mn by the end of the forecast period in 2026.

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Customization to be the Key Focus of Market Players

Due to the evolving needs of the research community, the demand for specialized cell lines have increased to a certain point where most vendors offering these products cannot depend solely on sales from catalog products. The quality of the products and lead time can determine the choices while requesting custom solutions at the same time. Companies usually focus on establishing a strong distribution network for enabling products to reach customers from the manufacturing units in a short time period.

Entry of Multiple Small Players to be Witnessed in the Coming Years

Several leading players have their presence in the global market; however, many specialized products and services are provided by small and regional vendors. By targeting their marketing strategies towards research institutes and small biotechnology companies, these new players have swiftly established their presence in the market.

Report Highlights:

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Induced Pluripotent Stem Cells Market Size Is Anticipated To Reach US$ 17200 Mn at a CAGR of 7% By 2026, Owing to Increasing Number of Product...

First lab-made ‘mini-hearts’ mimic the real thing – Futurity: Research News

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Researchers have created, for the first time, a miniature human heart model in the laboratory.

The mini-hearts are complete with all primary heart cell types and a functioning structure of chambers and vascular tissue.

The organoids are small models of the fetal heart with representative functional and structural features. They are, however, not as perfect as a human heart yet. That is something we are working toward.

These mini-hearts constitute incredibly powerful models in which to study all kinds of cardiac disorders with a degree of precision unseen before, says Aitor Aguirre, assistant professor of biomedical engineering at Michigan State Universitys Institute for Quantitative Health Science and Engineering and senior author of the study on the work on the bioRxiv preprint server. In the United States, heart disease is the leading cause of death.

The researchers created the human heart organoids, or hHOs for short,by way of a novel stem cell framework that mimics the embryonic and fetal developmental environments.

Organoidsmeaning resembling an organare self-assembling 3D cell constructs that recapitulate organ properties and structure to a significant extent, says first author Yonatan Israeli, a graduate student in Aguirres lab.

The innovation deploys a bioengineering process that uses induced pluripotent stem cellsadult cells from a patient to trigger embryonic-like heart development in a dishgenerating a functional mini-heart after a few weeks. The stem cells are obtained from consenting adults and therefore free of ethical concerns.

This process allows the stem cells to develop, basically as they would in an embryo, into the various cell types and structures present in the heart, Aguirre says. We give the cells the instructions and they know what they have to do when all the appropriate conditions are met.

Because the organoids followed the natural cardiac embryonic development process, the researchers studied, in real time, the natural growth of an actual fetal human heart.

This technology allows for the creation of numerous hHOs simultaneously with relative ease, contrasting with existing tissue engineering approaches that are expensive, labor intensive and not readily scalable.

One of the primary issues facing the study of fetal heart development and congenital heart defects is access to a developing heart. Researchers have been confined to the use of mammalian models, donated fetal remains, and in vitro cell research to approximate function and development.

Now we can have the best of both worlds, a precise human model to study these diseasesa tiny human heartwithout using fetal material or violating ethical principles. This constitutes a great step forward, Aguirre says.

Whats next? For Aguirre, the process is twofold. First, the heart organoid represents an unprecedented look into the nuts and bolts of how a fetal heart develops.

In the lab, we are currently using heart organoids to model congenital heart diseasethe most common birth defect in humans affecting nearly 1% of the newborn population, Aguirre says. With our heart organoids, we can study the origin of congenital heart disease and find ways to stop it.

And second, while the hHO is complex, it is far from perfect. For the team, improving the final organoid is another key avenue of future research.

The organoids are small models of the fetal heart with representative functional and structural features, Israeli says. They are, however, not as perfect as a human heart yet. That is something we are working toward.

The researchers are excited about the wide-ranging applicability of these miniature hearts. They enable an unprecedented ability to study many other cardiovascular-related diseasesincluding chemotherapy-induced cardiotoxicity and the effect of diabetes, during pregnancy, on the developing fetal heart.

Additional researchers from Michigan State and Washington University in St. Louis contributed to the work.

The American Heart Association and the National Institutes of Health funded the study.

Source: Michigan State University

Original Study DOI: 10.1101/2020.06.25.171611

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First lab-made 'mini-hearts' mimic the real thing - Futurity: Research News

Scientists grow the first functioning mini human heart model – MSUToday

Michigan State University researchers have created for the first time a miniature human heart model in the laboratory, complete with all primary heart cell types and a functioning structure of chambers and vascular tissue.

Aitor Aguirre, assistant professor of biomedical engineering at MSUs Institute for Quantitative Health Science and Engineering.

These minihearts constitute incredibly powerful models in which to study all kinds of cardiac disorders with a degree of precision unseen before, said Aitor Aguirre, the studys senior author and assistant professor of biomedical engineering at MSUs Institute for Quantitative Health Science and Engineering.

This study, Generation of Heart Organoids Modeling Early Human Cardiac Development Under Defined Conditions, appears on the bioRxiv preprint server and was funded by grants from the American Heart Association and the National Institutes of Health. In the United States, heart disease is the No. 1 cause of death.

The human heart organoids, or hHOs for short, were created by way of a novel stem cell framework that mimics the embryonic and fetal developmental environments.

Organoids meaning resembling an organ are self-assembling 3D cell constructs that recapitulate organ properties and structure to a significant extent, said Yonatan Israeli, a graduate student in the Aguirre Lab and first author of the study.

The innovation deploys a bioengineering process that uses induced pluripotent stem cells adult cells from a patient to trigger embryonic-like heart development in a dish generating a functional mini heart after a few weeks. The stem cells are obtained from consenting adults and therefore free of ethical concerns.

This process allows the stem cells to develop, basically as they would in an embryo, into the various cell types and structures present in the heart, Aguirre said. We give the cells the instructions and they know what they have to do when all the appropriate conditions are met.

Because the organoids followed the natural cardiac embryonic development process, the researchers studied, in real time, the natural growth of an actual fetal human heart.

This technology allows for the creation of numerous hHOs simultaneously with relative ease, contrasting with existing tissue engineering approaches that are expensive, labor intensive and not readily scalable.

One of the primary issues facing the study of fetal heart development and congenital heart defects is access to a developing heart. Researchers have been confined to the use of mammalian models, donated fetal remains and in vitro cell research to approximate function and development.

Now we can have the best of both worlds, a precise human model to study these diseases a tiny human heart without using fetal material or violating ethical principles. This constitutes a great step forward, Aguirre said.

Whats next? For Aguirre, the process is twofold. First, the heart organoid represents an unprecedented look into the nuts and bolts of how a fetal heart develops.

In the lab, we are currently using heart organoids to model congenital heart disease the most common birth defect in humans affecting nearly 1% of the newborn population, Aguirre said. With our heart organoids, we can study the origin of congenital heart disease and find ways to stop it.

And second, while the hHO is complex, it is far from perfect. For the team, improving the final organoid is another key avenue of future research. The organoids are small models of the fetal heart with representative functional and structural features, Israeli said. They are, however, not as perfect as a human heart yet. That is something we are working toward.

Aguirre and team are excited about the wide-ranging applicability of these miniature hearts. They enable an unprecedented ability to study many other cardiovascular-related diseases from chemotherapy-induced cardiotoxicity to the effect of diabetes, during pregnancy, on the developing fetal heart.

Other researchers involved in this study were Aaron Wasserman, Mitchell Gabalski and Kristen Ball at MSU; and Chao Zhou, Jinyon Zhou and Guangming Ni at Washington University in St. Louis.

(Note for media: Please include a link to the original paper in online coverage: https://www.biorxiv.org/content/10.1101/2020.06.25.171611v2)

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Scientists grow the first functioning mini human heart model - MSUToday

Meat from animal cells pioneer raises ‘steaks’ with relocation to Cambridge – Business Weekly

The global pull of the Cambridge life science cluster has prompted a UK startup growing meat products from animal cells to move its HQ here from Bristol as it chases a slice of a $1.4 trillion meat market.

Two-year-old Higher Steaks is moving into the Cambridge Science Parks new Incubator building and is already seeking to recruit stem cell scientists, tissue engineers and bioprocess engineers.

The company is also currently closing a seed round which CEO Benjamina Bollag says will get the business ready to pilot plant and secure necessary regulatory applications.

While in global terms a handful of US companies have a head start, Higher Steaks believes it has a market lead for a UK company in the precise segment in which it is operating.

Dr Ruth Faram, head of Research & Development, is moving to the new Cambridge HQ which chief scientific officer Dr James Clark formerly of PredictImmune is pathfinding.

Bollag told Business Weekly that Higher Steaks planned to leverage a number of unique selling points in a world becoming increasingly vegan and keen to seek healthier meat products or alternatives. She says the meat the company can produce from animals cells is better for agriculture, animal welfare and human healthcare.

Its meat doesnt contain antibiotics, is sustainable and does not require animal slaughter. Healthcare benefits are said to be numerous and its solution eliminates potential killers such as salmonella which causes around 420,000 deaths a year.

Using state-of-the-art cell culture techniques, Higher Steaks professionals extract a small sample of cells from an animal. They then expand those cells by feeding them a rich and animal-free growth medium.

When these cells have grown, they guide them to become muscle, fat and other types of tissue in order to form the desired meat product.

Early successes have produced the worlds first prototypes of laboratory-grown bacon rashers and pork belly.

Bollag says the pork belly is approximately 50 per cent cultivated meat to 50 per cent plant-based and the bacon around 70 per cent cultivated meat to 30 per cent plant-based.

The production of the first-ever cultivated bacon and pork belly is proof that new techniques can help meet the overwhelming demand for pork products globally, she said.

Our mission is to provide meat that is healthy and sustainable without the consumer making any sacrifices on taste: The prototype products represent a major milestone for Higher Steaks.

We have made substantial advancements in a relatively short amount of time whilst managing cash flow. We are accelerating the development of cultured pork products and the company is now focused on the next steps to bring our products to everyones homes.

One of the biggest challenges ahead is creating product at prices affordable to consumers and trade customers.

Bollag believes that increased global awareness of the risks of pork production will help the companys commercial viability long-term but stresses that getting the product right is more important to build a sustainable company with sought-after products than rushing to try to be first to market.

These are early days and our intention is to build a business and products that stand the test of time. That means getting the regulatory process rock solid and building a great team and solid financial foundations as we progress to every new stage of production. We believe the biotechnology cluster as it has evolved in Cambridge will be a tremendous asset for Higher Steaks as we continue to grow our team and technology. We are aware of the risks but also the massive potential in our marketplace.

The management team is highly experienced. Before founding Higher Steaks, Bollag a Swiss national co-founded a London-based B2B electronics company selling to FTSE500 companies.

She has also worked at Israeli 3D printing company, Stratasys, at the digital marketing division of PepsiCos joint venture with Strauss and was the lead developer an EdTech startup. She holds a Master of Chemical Engineering from the Imperial College London.

Dr Faram has over 15 years of experience working with stem cells and post doctoral expertise in induced pluripotent stem cells and epigenetics.

Dr Clark was chief technology officer of PredictImmune and has led the development of biotech and pharma products at early-stage and publicly traded companies.

The companys decision to move to Cambridge has been hailed as potentially transformative for the company and the sector by Tony Jones, CEO at the influential life sciences member organisation One Nucleus.

He told Business Weekly: In bringing this cutting edge biomedical technology to the region Higher Steaks not only gives the platform the best possible chances of success but also adds significant potential to the Cambridge cluster to be leaders in the rapidly emerging field of laboratory grown meat and the future of sustainable agriculture.

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Meat from animal cells pioneer raises 'steaks' with relocation to Cambridge - Business Weekly

Global stem cell banking market Enhancement And Its growth prospects forecast 2020 to 2027 – Scientect

Global stem cell banking market is set to witness a substantial CAGR of 11.03% in the forecast period of 2019- 2026. The report contains data of the base year 2018 and historic year 2017. The increased market growth can be identified by the increasing procedures of hematopoietic stem cell transplantation (HSCT), emerging technologies for stem cell processing, storage and preservation. Increasing birth rates, awareness of stem cell therapies and higher treatment done viva stem cell technology.

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Competitive Analysis:

Global stem cell banking market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of inflammatory disease drug delivery market for Global, Europe, North America, Asia-Pacific, South America and Middle East & Africa.

Key Market Competitors:

Few of the major competitors currently working in global inflammatory disease drug delivery market are: NSPERITE N.V, Caladrius, ViaCord, CBR Systems, Inc, SMART CELLS PLUS, LifeCell International, Global Cord Blood Corporation, Cryo-Cell International, Inc., StemCyte India Therapeutics Pvt. Ltd, Cordvida, ViaCord, Cryoviva India, Vita34 AG, CryoHoldco, PromoCell GmbH, Celgene Corporation, BIOTIME, Inc., BrainStorm Cell Therapeutics and others

Market Definition:Global Stem Cell Banking Market

Stem cells are cells which have self-renewing abilities and segregation into numerous cell lineages. Stem cells are found in all human beings from an early stage to the end stage. The stem cell banking process includes the storage of stem cells from different sources and they are being used for research and clinical purposes. The goal of stem cell banking is that if any persons tissue is badly damaged the stem cell therapy is the cure for that. Skin transplants, brain cell transplantations are some of the treatments which are cured by stem cell technique.

Cord Stem Cell Banking MarketDevelopment and Acquisitions in 2019

In September 2019, a notable acquisition was witnessed between CBR and Natera. This merger will develop the new chances of growth in the cord stem blood banking by empowering the Nateras Evercord branch for storing and preserving cord blood. The advancement will focus upon research and development of the therapeutic outcomes, biogenetics experiment, and their commercialization among the global pharma and health sector.

Cord Stem Cell Banking MarketScope

Cord Stem Cell Banking Marketis segmented on the basis of countries into U.S., Canada and Mexico in North America, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe in Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), Brazil, Argentina and Rest of South America as part of South America.

All country based analysis of the cord stem cell banking marketis further analyzed based on maximum granularity into further segmentation. On the basis of storage type, the market is segmented into private banking, public banking. On the basis of product type, the market is bifurcated into cord blood, cord blood & cord tissue. On the basis of services type, the market is segmented into collection & transportation, processing, analysis, storage. On the basis of source, market is bifurcated into umbilical cord blood, bone marrow, peripheral blood stem, menstrual blood. On the basis of indication, the market is fragmented into cerebral palsy, thalassemia, leukemia, diabetes, autism.

Cord stem cell trading is nothing but the banking of the vinculum plasma cell enclosed in the placenta and umbilical muscle of an infant. This ligament plasma comprises the stem blocks which can be employed in the forthcoming time to tackle illnesses such as autoimmune diseases, leukemia, inherited metabolic disorders, and thalassemia and many others.

Market Drivers

Increasing rate of diseases such as cancers, skin diseases and others Public awareness associated to the therapeutic prospective of stem cells Growing number of hematopoietic stem cell transplantations (HSCTs) Increasing birth rate worldwide

Market Restraint

High operating cost for the therapy is one reason which hinders the market Intense competition among the stem cell companies Sometimes the changes are made from government such as legal regulations

Key Pointers Covered in the Cord Stem Cell Banking MarketIndustry Trends and Forecast to 2026

Market Size Market New Sales Volumes Market Replacement Sales Volumes Market Installed Base Market By Brands Market Procedure Volumes Market Product Price Analysis Market Healthcare Outcomes Market Cost of Care Analysis Market Regulatory Framework and Changes Market Prices and Reimbursement Analysis Market Shares in Different Regions Recent Developments for Market Competitors Market Upcoming Applications Market Innovators Study

Key Developments in the Market:

In August, 2019, Bayer bought BlueRock for USD 600 million to become the leader in stem cell therapies. Bayer is paying USD 600 million for getting full control of cell therapy developer BlueRock Therapeutics, promising new medical area to revive its drug development pipeline and evolving engineered cell therapies in the fields of immunology, cardiology and neurology, using a registered induced pluripotent stem cell (iPSC) platform. In August 2018, LifeCell acquired Fetomed Laboratories, a provider of clinical diagnostics services. The acquisition is for enhancement in mother & baby diagnostic services that strongly complements stem cell banking business. This acquisition was funded by the internal accruals which is aimed to be the Indias largest mother & baby preventive healthcare organization.

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Research objectives

To perceive the most influencing pivoting and hindering forces in Cord Stem Cell Banking Market and its footprint in the international market. Learn about the market policies that are being endorsed by ruling respective organizations. To gain a perceptive survey of the market and have an extensive interpretation of the Cord Stem Cell Banking Market and its materialistic landscape. To understand the structure of Cord Stem Cell Banking Market by identifying its various sub segments. Focuses on the key global Cord Stem Cell Banking Market players, to define, describe and analyze the sales volume, value, market share, market competition landscape, SWOT analysis and development plans in next few years. To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market. To share detailed information about the key factors influencing the growth of the market (growth potential, opportunities, drivers, industry-specific challenges and risks). To project the consumption of Cord Stem Cell Banking Market submarkets, with respect to key regions (along with their respective key countries). To strategically profile the key players and comprehensively analyze their growth strategies To analyze the Cord Stem Cell Banking Market with respect to individual growth trends, future prospects, and their contribution to the total market.

Customization of the Report:

All segmentation provided above in this report is represented at country level All products covered in the market, product volume and average selling prices will be included as customizable options which may incur no or minimal additional cost (depends on customization)

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Global stem cell banking market Enhancement And Its growth prospects forecast 2020 to 2027 - Scientect

Global Tooth Regeneration Market : Industry Analysis and Forecast (2020-2027)-by Type, Application, Population Demographics and Region. – Good Night,…

Global Tooth Regeneration Marketwas valued US$ XX Mn in 2019 and is expected to reach US$ XX Mn by 2027, at a CAGR of 6.5% during a forecast period 2020-2027.

Global Tooth Regeneration Market, By Regions

Market Dynamics

The Research Report gives a comprehensive account of the drivers and restraints in the tooth regeneration. Somatic stem cells are composed and reprogrammed to induced pluripotent stem cells which can be placed in the dental lamina directly or placed in an absorbable biopolymer in the shape of the new tooth, which is a main source of the novel bioengineered teeth. Tooth replacement therapy is pondered to be a greatly attractive concept for the next generation bioengineered organ replacement.The report study has analyzed revenue impact of covid-19 pandemic on the sales revenue of market leaders, market followers and disrupters in the report and same is reflected in our analysis.

The global tooth regeneration market is mainly compelled by the high occurrence of dental problems with the new research and development activities. According to WHO, the Global Burden of Disease Study 2017 estimated that oral diseases affect close to 3.5 billion people worldwide, with caries of permanent teeth being the most common condition. Globally, it is likely that 2.3 billion people suffer from caries of permanent teeth and more than 530 million children suffer from caries of primary teeth. Additionally, positive refund policies for instance coverage of Medicaid insurance for dental loss treatment and emergence of new technologies like laser tooth generation techniques are projected to enhance the global tooth generation market throughout the estimated period.

Different researches are carried out by several academies and corporations to understand the possibility of stem cell-based regenerative medicines tooth regeneration. Though stem cell is the protuberant technology in research for tooth regeneration, several organizations are also leveraging laser, drug, and gel as mediums to regenerate teeth. For example, the Wyss Institute at Harvard University is engaged in research related to tooth regeneration using lasers. Tooth generation using stem cells is now under research through the globe. There are some key stem cells on which research are carried out such as stem cells from human exfoliated deciduous teeth (SHEDs), dental pulp stem cells, dental follicle progenitor cells (DFPCs), periodontal ligament stem cells (PDLSCs), and stem cells from apical papilla (SCAPs). A 2009 nationwide survey by the Nova South-eastern University in the U.S. publicized that around 96% of dentists expect stem cell regeneration to lead the future of the dentistry industry. However, occurrence rates are growing in low and middle-income countries. Though, some factors like the preference for endodontic treatment over tooth regeneration products in key dental surgeries and local inflammatory activity, which results in chronic complications to dental replacements, is anticipated to hamper the market throughout the forecast period.

Global Tooth Regeneration Market Segment analysis

Based on population demographics, the geriatric segment is expected to grow at a CAGR of XX% during the forecast period. According to NIH, the geriatric population has an average 18.9 remaining teeth. About 23% of the geriatric population has no teeth, making a positive market situation for manufacturing companies. The above 18 million dental procedures are anticipated to be carried out amongst the geriatric population between 2019 and 2027. Commercialization of tooth regeneration is expected to create lucrative market opportunities for industry players. Based on Type, the dentin segment accounted for a projecting share of the global tooth regeneration market in 2019, owing to the growing occurrence of dental surgery and the uprising demand for tooth regeneration in cosmetic surgery, particularly from developing economies like India, China, and Brazil.

Global Tooth Regeneration Market Regional analysis

The Asia Pacific is projected to dominate the global tooth regeneration market throughout the forecast period. Tooth regeneration addressable market is likely to be highest in the Asia Pacific, with China and India located as the major growth engines. The occurrence of tooth regeneration is projected to capture this market. Also, the number of dental procedures is anticipated to grow at the highest CAGR of ~10.8% in the Asia Pacific between 2019 and 2027. Besides, the growing incidence of dental cavities & periodontics, particularly in emerging countries like China and India has led to the rising demand for orthopedic & dental surgery. North America and Europe are estimated to collectively account for the major share of global procedures during the forecast period.

Key Developments

In June 2018, Datum Dental Ltd., the prominent provider of OSSIX brand innovative solutions for bone and tissue regeneration for dentistry, announced clearances for OSSIX Bone with Health Canada and CE Mark approval in Europe. OSSIX Bone received FDA clearance in July 2017 and was launched commercially in the USA. In April 2018, Datum Dental, the leading provider of OSSIX brand innovative solutions for bone and tissue regeneration for dentistry, announced the expansion of its global distribution network. In the USA, Dentsply Sirona Implants is now promoting the full OSSIX line.

The objective of the report is to present a comprehensive analysis of the Global Tooth Regeneration Market including all the stakeholders of the industry. The past and current status of the industry with forecasted market size and trends are presented in the report with the analysis of complicated data in simple language. The report covers all the aspects of the industry with a dedicated study of key players that includes market leaders, followers and new entrants. PORTER, SVOR, PESTEL analysis with the potential impact of micro-economic factors of the market has been presented in the report. External as well as internal factors that are supposed to affect the business positively or negatively have been analysed, which will give a clear futuristic view of the industry to the decision-makers.

The report also helps in understanding Global Tooth Regeneration Market dynamics, structure by analysing the market segments and projects the Global Tooth Regeneration Market size. Clear representation of competitive analysis of key players by Application, price, financial position, Product portfolio, growth strategies, and regional presence in the Global Tooth Regeneration Market make the report investors guide. Scope of the Global Tooth Regeneration Market

Global Tooth Regeneration Market, By Type

Dentin Dental Pulp Tooth Enamel Global Tooth Regeneration Market, By Applications

Hospitals Dental Clinics Others Global Tooth Regeneration Market, By Population Demographics

Geriatric Middle-aged Adults Others Global Tooth Regeneration Market, By Regions

North America Europe Asia-Pacific South America Middle East and Africa (MEA) Key Players operating the Global Tooth Regeneration Market

Unilever Straumann Dentsply Sirona 3M Zimmer Biomet Ocata Therapeutics Integra LifeSciences Datum Dental CryoLife BioMimetic Therapeutic Cook Medical

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Global Tooth Regeneration Market : Industry Analysis and Forecast (2020-2027)-by Type, Application, Population Demographics and Region. - Good Night,...

Research on Cell Culture Protein Surface Coating Market (impact of COVID-19) 2020-2026: Corning, EMD Millipore, Thermo Fisher Scientific – Red &…

In this study, we have issued the much-needed information on the Global Cell Culture Protein Surface Coating Market 2020 which covers detailed information about the Cell Culture Protein Surface Coating market size, Cell Culture Protein Surface Coating market trends, industrial dynamics and Cell Culture Protein Surface Coating market share. Furthermore, it drops light on the series of instantly changing Cell Culture Protein Surface Coating market scenarios as well as upcoming assessment of numerous factors that completely impacting the global Cell Culture Protein Surface Coating market report. The research on the world Cell Culture Protein Surface Coating market illustrates the whole international market alongside a detailed analysis of the revenue growth and profitability of the Cell Culture Protein Surface Coating market.

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The latest report on the worldwide Cell Culture Protein Surface Coating market represents a comprehensive understanding about the futuristic Cell Culture Protein Surface Coating market estimations, based on the historical and current predictions. It is considered to be the significant and professional document that especially focusing on the Cell Culture Protein Surface Coating market drivers, size, leading segments and topological zones. Moreover, the report splits the global Cell Culture Protein Surface Coating market size by volume and value on the basis of product types, applications, well-established vendors and major geographies.

Pivotal industry players involved in this report are:

Corning EMD Millipore Thermo Fisher Scientific Sigma-Aldrich

The Global Cell Culture Protein Surface Coating market divided by product types:

Animal-Derived Protein Human-Derived Protein Synthetic Protein Plant-Derived Protein

Cell Culture Protein Surface Coating market segregation by application:

Monoclonal Antibody Protein Therapeutics Induced Pluripotent Stem Cells Research Cryobanking Cell-Based Assays Development Others

In the recent research document, we have listed out a wide range of business policies, mergers & acquisitions, collaborations, upcoming as well as trending innovative techniques. It also demonstrates systematic information and analysis related to the Global Cell Culture Protein Surface Coating market trends, growth factors, share, segments, challenges, opportunities and forecasts details from 2020 to 2026.

The global Cell Culture Protein Surface Coating market report showcases several factors that are driving the industrial growth and meanwhile, evaluates the present market scenario, insightful details and new updates about the corresponding segments involved in the Cell Culture Protein Surface Coating market report. It also sheds light on the price trends, demand and supply ratio, historical as well as forecasted industry data, and company shares of the top Cell Culture Protein Surface Coating market players by geography.

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The report has been designed with the help of series of methodologies and essential techniques like SWOT analysis, Porters Five Forces analysis, graphical representation, pie charts and real-time analytics are helpful to add more precise and clear understanding about the Cell Culture Protein Surface Coating market related facts and figures.

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Research on Cell Culture Protein Surface Coating Market (impact of COVID-19) 2020-2026: Corning, EMD Millipore, Thermo Fisher Scientific - Red &...