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2020 Highlights the Disparities and Discrepancy of Sickle Cell Care – MD Magazine

Medicine is a mirror for the racial injustice in our society; it is a field riddled with racial disparities in everything from research funding to patient care to life expectancy.

These words appear in an article published last month in The New Journal of Medicine. Co-authors Alexandra Power-Hays, MD, and Patrick McGann, MD, underscore this intrinsicand perhaps under-appreciatedassociation between medicine and societal woes.

The authors argue, in far from oblique terms, that these medical-social relationships and issues of healthcare disparity"from research funding to patient care to life expectancyare poignantly felt in the realm of sickle cell care.

It is perhaps safe to acknowledge that the events of this past yearwhether that may be stringent lockdowns or the racial reckoning across the UShave augmented conversations and controversies surrounding healthcare access and related social inequalities.

Since sickle cell disease primarily affects people of color, most prominently African Americans, a group already at increased risk of socio-economic hardships, these conversations are especially relevant for this long-underserved patient community.

And yet, there is another layer to this issue of healthcare accessa problem that stems from new and innovative therapeutic options on the docket or horizon.

Medications like voxelotor (Oxbryta) and emerging technologies in gene therapy have no doubt offered hope in mitigating disease symptoms and ultimately curing it. But, with the promise of innovation comes the concern over access.

In an interview with HCPLive, Admiral Brett Giroir, MD, United States Assistant Secretary for Health, expressed this unfortunate reality for much of the sickle cell community.

All the science in the world is not going to help if you dont have a care-delivery system that can meet the needs of patients, Giroir said.

In order for these advancements to truly mean something, in order to ensure the sickle cell community at large can receive the most optimal outcomes, these underlying disparities in care-delivery, research funding, and resourcing cannot be overlooked.

The story of sickle cell disease, especially of this past year, dovetails with this increasing awakening to the gaps in healthcare access and the importance of equity.

As such, appreciating the therapeutic promises within this domain without acknowledging the inequities that plague sickle cell care would be a disingenuous reading of the narrative.

The Gap in Research and Healthcare

A cross-sectional study published this year by researchers at Stony Brook University Hospital and Johns Hopkins University School of Medicine noted that the US Food and Drug Administration (FDA) has approved only 4 medications for sickle cell diseasecompared with 15 for cystic fibrosis, a condition that is likewise inherited, progressive, and life-threatening.

Even more, between 2008-2018, mean federal funding per person for sickle cell disease was $812 versus $2804 for cystic fibrosis.

The study concluded that government funding of sickle cell disease research roughly equaled research for cystic fibrosis, despite the formers greater demand.

However, after the investigators factored in disease-specific private foundation funding, which significantly skewed towards cystic fibrosis, this disparity became even more pronounced.

When it comes to research, inadequate or disproportionate funding isnt the only barrier that investigators face.

Similarly essential and worrisome are the challenges in patient recruitment. Certain barriersincluding distrust of research, pain, difficult social situations, to name a fewmay preclude individuals with sickle cell disease from participation.

Various formal analyses have sought to assess the effectiveness of diverse strategiesfrom recruiting through clinics and affiliated sites to participating in community eventsin order to ensure study population size needs are met.

On the clinical side, healthcare providers have expressed dismay, recorded through investigator-led focus groups and questionnaires, over the lack of resources and support.

Many of these clinics, which are typically located in urban centers with diverse populations, may allocate funds in such a way that underserves the sickle cell population.

Further, issues stemming from lack of education on both the side of the patient and provider/staff as well as basic unmet patient needs (food, transportation, etc.) are underlying factors that can decrease the quality of care.

While challenges and disparities exist in various forms and degrees across the whole of sickle cell communities, issues with access to healthcare have tended to skew towards the adult population.

I think there has been good access to care in pediatrics, and where there have been limitations has been on the adult side, said Alan Anderson, MD, a pediatric hematologist-oncologist based in South Carolina and director of the Comprehensive Sickle Cell Disease Program at Prisma Health-Upstate.

We have seen that these strides to improve access to care, number of patients on modifying therapies, using preventative health guidelines that are put out by National Heart, Lung, and Blood Institute (NHLBI), ASH, and others, have really been pioneered on the pediatric side, he noted.

As for adult care, Anderson cited that many medical providers have historically received inadequate education or training in sickle cell disease.

Additionally, there are few dedicated medical homes for these patients that can best serve their specific needs. In fact, many adults with sickle cell disease end up in medical homes that are predominantly for cancer treatment.

Even when patients are seen for their disease, they can end up in a model of care where the primary focus of treatment tends to be on symptom and pain management, as opposed to education and disease modification.

What weve seen on the adult is that many patients end up in the emergency department or hospitals to receive their care, Anderson said.

An Exacerbation of the Issues

These disparities long existed before the pandemic, but, as with most other healthcare-related issues, the lockdowns and ensuing restrictions have only exacerbated what has long been broiling.

From the summertime protests after the killing of George Floyd to growing and recurring conversations around race, this concern over healthcare disparity in sickle cell care has further become the focal point for the specialty. It can no longer be ignored.

I think if we look at sickle cell disease as really being a health diagnosis that is a microcosm of the race-relations issues and socioeconomic issues associated with race that weve seen in our country historically, then you would expect this disease process would be very hard hit by COVID-19, Anderson said.

The pandemic has meant restricting resources in an already resource-limited space. The shift to telehealth has placed a greater burden on those with limited access to technologies. And the at-risk nature of the population has revealed that the only way to receive COVID-19 testing is through an emergency department setting.

This is the reality that many struggling patients within the sickle cell population face.

If anythingand as noted by Andersonthis year has only pushed and tested that which is already fragile for these patients and the healthcare systems they turn to.

Mending the Gap: An Admirals Charge

The cure for these social and systemic ailments must be a product of the synergy among individual, community, and top-down efforts.

When Admiral Giroir, MD, took office as Assistant US Secretary for Health in 2018, he made sickle cell disease a top priority.

Although a pediatrician by trade, Giroir made it his mission to ensure all sickle cell patients are able to receive the standard of care. By current estimates, they are received by only 10-15% of the population.

Being the Assistant Secretary for our health, as the senior public health person in the government, I wanted to do this not only for sickle cell, for people living with that, but for all people in the country who have diseases that are below the radar, he said.

Under his tenure, he oversaw programs to increase awareness for the disease, education, and understanding of care, which included first national report of sickle cell for all those covered by Medicaid and CHIP this year.

This year, the NIH has invested $120 million dollars into the Cure Sickle Cell Disease Initiative.

Furthermore, government health agencies have teamed up with the World Health Organization (WHO), World Bank, and other organizations like the American Society of Hematology (ASH), as well as pharmaceutical companies, to develop a program that promotes screening in newborns, an essential aspect of sickle cell care.

And finally, under Giroir, the federal health agencies sponsored and tasked the National Academies of Science Engineering and Medicine task with developing a sickle cell disease treatment roadmap, a document which was published this September, during Sickle Cell Disease Awareness Month.

The roadmap lays out a comprehensive plan for treating patients in this populationand other similar disease populations with few casesespecially those who are members of underserved communities subject to discrimination.

Im very proud of that, and we cant implement that tomorrow, but we have a team working to implement that right now, Giroir said.

While efforts at the top are moving forward to help mitigate social, systemic, and racial barriers to sickle cell care across the country, community-based programs and strategies are just asif not moreessential to combating these multi-layered shortcomings.

With the support of local and federal governments, healthcare systems and communities have the potential to develop a comprehensive care network that can help mend the socioeconomic, psychosocial, and racial gapsa sentiment shared by Giroir, Anderson, Power-Hays, and McGann.

If patients of underserved communities are empowered to overcome basic physical and emotional needs; if healthcare systems are provided the support to meet these needs and reduce systemic/racial barriers; and if all parties are appropriately educated on the novel therapeutic options and the disease itself, then the domain of sickle cell care for all ages would assuredly take a grand leap forward.

But, in light of the history of sickle cell care and the tragedies of this year, such a task seems almost insurmountableand all the more crucial.

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2020 Highlights the Disparities and Discrepancy of Sickle Cell Care - MD Magazine

Gene Therapy Market 2020: Demand Analysis, Key Players, Trends, Sales, Supply, Deployment Model, Segments, Organization Size, Production, Revenue Data…

Worldwide Gene Therapy Market Analysis to 2027 is a specialized and in-depth study of the Gene Therapy Industry with a focus on the global market trend. The report aims to provide an overview of global Gene Therapy Market with detailed market segmentation by product/application and geography. The global Gene Therapy Market is expected to witness high growth during the forecast period. The report provides key statistics on the market status of the players and offers key trends and opportunities in the market.

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The report also includes the profiles of key gene therapy market companies along with their SWOT analysis and market strategies. In addition, the report focuses on leading industry players with information such as company profiles, components and services offered, financial information of last 3 years, key development in past five years.

Whats included

Research report has been compiled by studying the market in-depth along with drivers, opportunities, restraints & other strategies as well as new-developments that can help a reader to understand the exact situation of the market along with the factors that can limit or hamper the market growth and the report also has been updated with Impacts & effects of Coronavirus pandemic and how it has influenced consumer behavior & the growth of the market as well as industries.

Global Gene Therapy market Witness Most Promising Rise in Demand

The Gene Therapy market is anticipated to grow with a significant rate in the coming 2027s, owing to factors such as, rising incidence and prevalence of chronic diseases, increasing healthcare expenses toward growth of eHealth, telemedicine, telehealth. Rapid growth in delivery of services to patients, several technological enlargements in the healthcare industry in Asia Pacific and Europe are expected to offer growth opportunities for the players operating in the market.

The global Gene Therapy market is segmented on the basis of component, application, end user and geography. The component segment includes, system and software, services and medical device. Based on application, the Gene Therapy market is segmented as, eHealth and others. Based on end user, the market is segmented as, hospitals and clinics, clinical research organization, research and diagnostic laboratories and others.

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The report offers key drivers that propel the growth in the global Gene Therapy market. These insights help market players in devising strategies to gain market presence. The research also outlined the restraints of the market. Insights on opportunities are mentioned to assist market players in taking further steps by determining the potential in untapped regions.

This report focuses on the global Gene Therapy market with the future forecast, growth opportunity, key market, and key players. The study objectives are to present the Gene Therapy market development in North America, Europe, China, Japan, Southeast Asia, India, and Central & South America.

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Gene Therapy Market 2020: Demand Analysis, Key Players, Trends, Sales, Supply, Deployment Model, Segments, Organization Size, Production, Revenue Data...

Global Stem Cell Manufacturing Market Research Study including Growth Factors, New Top Players, Competitive Analysis by regions from 2020 to 2027 -…

Data Bridge Market Research has recently added a concise research on the Global Stem Cell Manufacturing Market to depict valuable insights related to significant market trends driving the industry. This Report potentially presents with the numerous insights and business solutions that will help you stay ahead of the competition. The Global Stem Cell Manufacturing Market report is the best to know the trends and opportunities in industry. The precise and state-of-the-art information provided via this report helps businesses get aware about the types of consumers, consumers demands and preferences, their point of view about the product, their buying intentions, their response to particular product, and their varying tastes about the specific product already existing in the market. This market research report is formulated with the most excellent and superior tools of collecting, recording, estimating and analysing market data of industry.

This market research report serves a great purpose of better decision making and achieving competitive advantage. Two of the most widely used techniques namely SWOT analysis and Porters Five Forces Analysis have been used while generating this report. The report not only saves valuable time but also adds credibility to the work that has been done to grow the business. The report aids in identifying and analysing the rising trends along with major drivers, inhibitors, challenges and opportunities in the market. Market research analysis report is really a backbone for every business that wishes to boom in the market.

The Global Stem Cell manufacturing Market is expected to gain market growth in the forecast period of 2020 to 2027. Data Bridge Market Research analyses the market to account to USD 18.59 billion by 2027 growing at a CAGR of 6.42% in the above-mentioned forecast period. The growing awareness towards diseases like cancer, hematopoietic disorders and degenerative disorders is going to drive the growth of the stem cell manufacturing market.

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Global Stem Cell Manufacturing Market, By Product (Stem Cell Line, Instruments, Culture Media, Consumables), Application (Research Applications, Clinical Applications, Cell and Tissue Banking), End Users (Hospitals and Surgical Centers, Pharmaceutical and Biotechnology Companies, Clinics, Community Healthcare, Others), Country (U.S., Canada, Mexico, Germany, Italy, U.K., France, Spain, Netherland, Belgium, Switzerland, Turkey, Russia, Rest of Europe, Japan, China, India, South Korea, Australia, Singapore, Malaysia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific, Brazil, Argentina, Rest of South America, South Africa, Saudi Arabia, UAE, Egypt, Israel, Rest of Middle East & Africa) Industry Trends and Forecast to 2027

Healthcare Infrastructure growth Installed base and New Technology Penetration

Stem cell manufacturing market also provides you with detailed market analysis for every country growth in healthcare expenditure for capital equipment, installed base of different kind of products for stem cell manufacturing market, impact of technology using life line curves and changes in healthcare regulatory scenarios and their impact on the stem cell manufacturing market. The data is available for historic period 2010 to 2018.

The Global Stem Cell Manufacturing 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 stem cell manufacturing market for global, Europe, North America, Asia Pacific and South America.

Global Stem Cell Manufacturing Market Scope and Market Size

Stem cell manufacturing market is segmented on the basis of product, application and end users. The growth amongst these segments will help you analyse meagre growth segments in the industries, and provide the users with valuable market overview and market insights to help them in making strategic decisions for identification of core market applications.

Major Market competitors/players:Global Stem Cell manufacturing Market

Some of the major players operating in the stem cell manufacturing market are Thermo Fisher Scientific. Merck Group, Becton, Dickinson and Company. Holostem Advanced Therapies, JCR Pharmaceuticals, Organogenesis Inc, Osiris Therapeutics, Osiris Therapeutics, Vericel Corporation, AbbVie, American CryoStem, AM-Pharma, Anterogen.Co.,Ltd, Astellas Pharma, Bristol-Myers Squibb, Apceth Biopharma, Cellular Dynamics International, Rheacell, Takeda Pharmaceutical, Teva Pharmaceutical Industries Ltd. ViaCyte, VistaGen Therapeutics Inc, Translational Biosciences, GlaxoSmithKline plc, Daiichi Sankyo Company, Limited, among others.

Market Definition:

This market report defines the market trends and forecast the upcoming opportunities and threats of the stem cell manufacturing market in the next 8 years. Stem cell manufacturing is a process of extracting the cells either from bone marrow or peripheral blood cells and culturing the cells in the culture dish containing nutrient media. Stem cells can be isolated from umbilical cord blood, placenta, amniotic sac, amniotic fluid, adipose tissue and menstrual blood. Stem cell manufacturing is used in the cell therapy as well as in gene therapy. Stem cell therapy is under research for many diseases like degenerative diseases and hematopoietic disorders like sickle cell anemia, storage disorders. Now stem cells are also used in making the cell and tissue bank. Some of the cell culture banks are National Institute of Biomedical Innovation, Health and Nutrition and World Federation for Culture Collections.

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‘He was very honored in his work’ – Mercer Island Reporter

Dr. Sen-itiroh Hakomori was honored as a hometown hero at the Mercer Island Summer Celebration Parade in 2000. Courtesy photo

Pioneering scientist Dr. Sen-itiroh Hakomori dies at age 91.

Dr. Sen-itiroh Hakomori couldnt leave his lab work alone. He would often log 13-hour days, seven days a week, and even spend some time at his job on Christmas morning, intensely focused on his glycosphingolipid medical and biochemical research.

I realized fairly recently that all of the cells are just like a pet. You have to check up on them and make sure that things are going well because theyre alive, said his daughter Naoko Vaughn. As children, we did not understand why he went to work every single day. I realized that he had to.

Vaughns father, who she said had a heart of gold and would help anybody, died of natural causes at the age of 91 on Nov. 10 at his home on Mercer Island.

Roger Laine, a colleague and friend who was the last professor to visit Hakomori, said that he was truly a pioneering scientist in glycobiology, a field in which he spent seven decades participating in groundbreaking studies.

He worked most of his career showing differences between cancer cells and normal cells that could be targeted for therapy. If you asked him what was his goal in life, he would answer, cure cancer, said Laine, a professor, scientist and researcher at Louisiana State University.

Hakomori is survived by his wife, Mitsuko (they were married for 74 years); Vaughn; sons, Yoichiro and Kenjiro; four grandchildren and two great-grandchildren; two brothers and a sister.

A native of Japan, professor Hakomori made crucial contributions to new cancer-cell studies at the Cancer Research Institute at Tohoku Pharmaceutical University, and continued his vast research in the field when the family immigrated to the United States to the Boston area.

The family moved from Boston to Bellevue in the late 1960s and set up their new home on Mercer Island 46 years ago. Hakomori relocated his family to the Pacific Northwest to become involved with the Fred Hutchinson Cancer Research Center, and served as University of Washington professor of pathobiology and professor of microbiology. He was named a UW professor emeritus of pathobiology and global health in 2006.

Hakomori retired at the age of 88, finishing his career working at the Pacific Northwest Cancer Center in Seattle. During a celebration in Japan three years ago, Hakomori who was a member of the prestigious National Academy of Sciences spoke to the attendees and noted, We are all globally connected with research and science.

His two sons reflected on their fathers vital contribution to their lives.

Dad was passionate about his work and a great mentor to many of his younger colleagues. He has inspired me to try to emulate that passion in the work I do as an architect and professor, said Yoichiro.

Added Kenjiro: Dad taught me by example to work hard on trying to find out and work on resolving research questions it is a lifelong passion.

Vaughn added that her father instilled a high-level work ethic in his children, telling them, Whatever you do, whatever you choose to do, whatever your passion is, you do it 120 percent.

Hakomori made a worldwide impact with his research and was nominated five times for the Nobel Prize in chemistry. He received numerous awards, including the Philip Levine Immunohematology Award, the Karl Meyer Award from the Society of Glycobiology and the Rosalind Kornfield Award for Lifetime Achievement in Glycobiology.

He published 585 articles in peer-reviewed journals, and a pair of his many major scientific achievements were methylation analysis of glycoconjugates with mass spectrometry, and cell adhesion based on carbohydrate-carbohydrate interaction, particularly through GSL clusters at the embryonic stem cell surface.

He was very honored in his work, and he did not do it for money. He was very much just trying to help, which is rare these days, said Vaughn, adding that a host of his students and colleagues from around the world are assembling a memorial for her father to be published in a glycosphingolipid journal.

He was just a wonderful person. I think the most important thing is his colleagues really admired him. He made them successful in their lives, Vaughn added.

When Sarah Spiegel was a graduate student, she was drawn to Hakomoris papers and reviews on the role of glycoconjugates in cancer. Those documents sparked her imagination and inspired her to pursue a career in sphingolipids, she wrote on the Evergreen Washelli Funeral Home & Cemetery memorial page.

He was a champion of advancing careers of young female scientists and his generous spirit influenced my generation and generations to come, said Spiegel, Ph.D., professor and chair in the Department of Biochemistry and Molecular Biology at the Virginia Commonwealth University School of Medicine. His legacy will live on through the works of countless researchers who continue working in the field of sphingolipids and many colleagues throughout the world will miss him tremendously.

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'He was very honored in his work' - Mercer Island Reporter

Global Induced Pluripotent Stem Cells Market To Witness Huge Gains Over 2020-2026 – Factory Gate

The globalInduced Pluripotent Stem Cells marketresearch report is based on the market and extends over all particulars of the market factors. The report further contains detailed specification about the Induced Pluripotent Stem Cells market size in terms of sales, revenue and value. The report contains the detailed segmentation {Adult Sources, Fetal Sources, Others}; {Hematopoietic stem cell transplantation, Tissue repair damage, Autoimmune diseases, As gene therapy vectors.} of the Induced Pluripotent Stem Cells market, gives us the information of the global market and makes the forecasting about the market status in the coming future.

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In order to analyze the data and to understand the competition of the Induced Pluripotent Stem Cells market, the use of the Porters five forces model is made during the research. The report consists of detail segmentation of the market, factors contributing to the growth and restraining factors of the Induced Pluripotent Stem Cells market.

Induced Pluripotent Stem Cells Market COVID-19 Impact Analysis

The outbreak of COVID-19 was sudden and was not at all considered so dangerous when it first struck at Wuhan city of China. Although, everything in that city was closed but the coronavirus infection had wide spread in China as a wild fire. Within months it spread to the neighboring countries and then to every single country in the world. The World Health Organization announced it as a pandemic and till then it had created huge losses in several countries.

The listing supplies hints on the Upcoming pointers:

1.Business Diversification: Exhaustive Induced Pluripotent Stem Cells information about new services, untapped geographies, latest advances, and also investments.

2.Strong Assessment: start to finish examination of stocks, plans, organizations, and amassing capacities of these best players.

3.Business Penetration: Comprehensive information on Induced Pluripotent Stem Cells made accessible the very active players in the global sector.

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The global Induced Pluripotent Stem Cells market research report consists of the opportunities present in the market over the various end user segments. The report involves all the key players Organogenesis Inc., Bone Therapeutics SA, Stemgent, Regeneus Ltd., Axiogenesis, Waisman Biomanufacturing, System Biosciences, CellTherapies P/L, Medipost Co. Ltd., Fate Therapeutics, BrainStorm Cell Therapeutics Inc., Lonza, Reprocell, Ocata Therapeutics of the Induced Pluripotent Stem Cells market and also all the prominent players involved in the global Induced Pluripotent Stem Cells market. The global regional analysis of the Induced Pluripotent Stem Cells market was conducted and is mentioned in the global Induced Pluripotent Stem Cells market research report. The global Induced Pluripotent Stem Cells market research report also elaborates the major dominating regions according to the segments as well as reports the emerging regions in the market. This helps in the proper understanding of the Induced Pluripotent Stem Cells market, its trends, new development taking place in the market, behavior of the supply chain and the technological advancement of the market.

There are 15 Sections to show the global Induced Pluripotent Stem Cells market

Sections 1, Definition, Specifications and Classification of Induced Pluripotent Stem Cells , Applications of Induced Pluripotent Stem Cells , Market Segment by Regions; Section 2, Gathering Cost Structure, Crude Material and Suppliers, Amassing Methodology, Industry Chain Structure; Sections 3, Technical Data and Manufacturing Plants Analysis of Induced Pluripotent Stem Cells , Capacity and Commercial Production Date, Manufacturing Plants Distribution, R&D Status and Technology Source, Raw Materials Sources Analysis; Sections 4, Generally Market Examination, Limit Examination (Association Piece), Sales Examination (Association Bit), deals Esteem Examination (Association Segment); Sections 5 and 6, Regional Market Investigation that incorporates United States, China, Europe, Japan, Korea and Taiwan, Induced Pluripotent Stem Cells segment Market Examination (by Sort); Sections 7 and 8, The Induced Pluripotent Stem Cells Segment Market Analysis (by Application) Major Manufacturers Analysis of Induced Pluripotent Stem Cells ; Sections 9, Market Trend Analysis, Regional Market Trend, Market Trend by Product Type Adult Sources, Fetal Sources, Others Market Trend by Application Hematopoietic stem cell transplantation, Tissue repair damage, Autoimmune diseases, As gene therapy vectors.; Sections 10, Local Advancing Sort Examination, Overall Trade Type Examination, Stock system Examination; Sections 11, The Customers Examination of global Induced Pluripotent Stem Cells; Sections 12, Induced Pluripotent Stem Cells Research Findings and Conclusion, Appendix, system and information source; Sections 13, 14 and 15, Induced Pluripotent Stem Cells deals channel, wholesalers, merchants, traders, Exploration Discoveries and End, appendix and data source.

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The revenue generated through the sales from all the segments and sub-segments leads us to calculate the Induced Pluripotent Stem Cells market size. To validate the data, top down approach and bottom up approach were carried during the research. All the necessary methodical tools are used to perform a deep study of the global Induced Pluripotent Stem Cells market.

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Global Induced Pluripotent Stem Cells Market To Witness Huge Gains Over 2020-2026 - Factory Gate

Exosomes act as messengers and decoys to save healthy cells from viral infection – Massive Science

In 2007, scientists developed a method to determine the sexes of Atlantic walruses using only their jaws' size and shape. Researchers have now put that sexing (identification of an organism's sex) method to the test with Pacific walruses.

There was some doubt about whether this technique would work for one, Pacific walruses are significantly larger than their Atlantic counterparts. This size difference shows even in individual body parts, including the mandibles.

Yet, the team, led by Nathan Taylor at the University of Alaska, Fairbanks, persisted in applying the sex identification strategy since, if successful, it would significantly reduce the time and financial commitment needed for researching preserved, unidentified walrus specimens. To distinguish between male and female Pacific walruses, they measured the length and height of the jawbone, the minimum jawbone depth (from about the middle point of the jaw to the back), and jaw thickness.

A female Pacific walrus and a calf

USFWS via Wikimedia

The scientists had to be mindful of whether the jawbones were "not fully fused" (not fully developed, unique to juvenile walruses) or "fused" (fully developed, the sign of a mature walrus). Walruses with partially fused mandibles were likely to yield misleading results.

For example, jaws from male walruses that had not yet fully fused were similar in dimensions to mature females' jaws. To ensure the results were accurate, they could only include fully matured, fused specimens.

After measuring 67 modern specimens (33 of which were male, 24 belonging to females, and ten unknown) and 11 archaeological samples, the researchers concluded that jaw size is indeed a reliable body part to distinguish between male and female walruses. The most significant differences were jaw length and thickness, with females notably smaller in both categories.

A male Pacific walrus

Joel Garlich-Miller, USFWS, via Wikimedia

With the original sexing method now confirmed to work for Pacific walruses, scientists will be better prepared to perform several types of analyses, including measuring stable isotopes, trace elements, and hormones in study animals, with greater confidence and less risk of misidentification.

This is a crucial finding, given the insufficient data on Pacific walrus populations, and will hopefully push conservation efforts for this species forward.

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Exosomes act as messengers and decoys to save healthy cells from viral infection - Massive Science

Viral Clearance Market Is Expected To Reach USD 724.5 Million By 2023 From An Estimated USD 271.2 Million In 2018, At A CAGR Of 21.7% – LionLowdown

The global viral clearance market is expected to reach USD 724.5 million by 2023 from an estimated USD 271.2 million in 2018, at a CAGR of 21.7% during the forecast period. Growth in the pharmaceutical and biotechnology industries, increasing number of new drug launches, R&D investments in life science, advancements in nanofiltration technology, and the high incidence and large economic burden of chronic diseases are expected to drive the growth of the viral clearance market. However, the high-cost requirements for drug development may hamper the pace of activity in this sector, and consequently the adoption of viral clearance practices.

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The Final Report will cover the impact analysis of COVID-19 on this industry (Global And Regional Market).

By application, the other applications segment is expected to grow at the highest rate during the forecast period. On the basis of application, the global viral clearance market is segmented into recombinant proteins, blood and blood products, vaccines, and other applications. The other applications segment is expected to grow at the highest CAGR during the forecast period owing to the increasing use of cellular therapies in the treatment of cancer, hematologic malignancies, autoimmune disorders, and damaged tissue; growing industry focus on stem cell research; increasing awareness about stem cell therapies; and the use of tissue-based therapies to treat various diseases related to the kidneys, liver, heart, and lungs.

By method, the viral removal segment is expected to dominate the viral clearance market. On the basis of method, the global viral clearance market is segmented into two broad categoriesviral removal and viral inactivation. The viral removal segment is estimated to account for the largest share of the global viral clearance market in 2018. This segment is also expected to grow at the highest rate during the forecast period. The large share of this market segment is primarily attributed to the growth of biopharmaceutical R&D activities; high acceptance of this method; and the accuracy, speed, and flexibility provided by the method in life sciences research.

The Asia Pacific viral clearance market is expected to grow at the highest CAGR during the forecast period. Asia Pacific is expected to witness the highest growth from 2018 to 2023, owing to increase in generics development and manufacturing, surge in Chinese funding for medical research, and presence of large number of CROs to provide preclinical and clinical research services in China, government initiatives to boost the use of generic drugs, increasing aging population in Japan, rise in pharmaceutical R&D expenditures in India, and the growing pharmaceutical manufacturing in Singapore and Malaysia.

Break of primary participants was as mentioned below: By Company Type Tier 155%, Tier 225% and Tier 320% By Designation C-level43%, Director Level32%, Others25% By Region North America37%, Europe23%, Asia Pacific30%, RoW10%

The Final Report will cover the impact analysis of COVID-19 on this industry (Global And Regional Market).

Updated Research Report @sdki.jp With Impact Analysis of COVID-19

Hydraulics Market Lubricant Anti-wear Agents Market Genetic Toxicology Testing Market Lactic Acid Market

The key players in the global viral clearance market are Charles River Laboratories International, Inc. (US), Merck KGaA (Germany), Wuxi Biologics (Cayman) (China), Kedrion S.p.A. (Italy), Vironova Biosafety (Sweden), Texcell (France), Clean Cells (France), BSL BIOSERVICE Scientific Laboratories Munich GmbH (Germany), and ViruSure GmbH (Austria).

Research Coverage: The report analyzes the viral clearance market and aims at estimating the market size and future growth potential of this market based on various segments such as application, end user, method, and region. The report also includes competitive analysis of the key players in this market along with their company profiles, product offerings, recent developments, and key market strategies.

Reasons to Buy the Report The report can help established firms as well as new entrants/smaller firms to gauge the pulse of the market, which in turn would help them garner a greater share. Firms purchasing the report could use one, or a combination of the below mentioned five strategies.

This report provides insights into the following pointers: Market Penetration: Comprehensive information on the services offered by the top players in the viral clearance market. The report analyzes the market based on application, end user, method, and region Product Development/Innovation: Detailed insights on upcoming technologies, research and development activities, and product launches in the viral clearance market Market Development: Comprehensive information about lucrative emerging markets. The report analyzes the markets for various viral clearance solutions across regions Market Diversification: Exhaustive information about services, untapped regions, recent developments, and investments in the viral clearance market Competitive Assessment: In-depth assessment of market shares, strategies, distribution networks, and manufacturing capabilities of the leading players in the market

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The Final Report will cover the impact analysis of COVID-19 on this industry (Global And Regional Market).

The dynamic nature of business environment in the current global economy is raising the need amongst business professionals to update themselves with current situations in the market. To cater such needs, Shibuya Data Count provides market research reports to various business professionals across different industry verticals, such as healthcare & pharmaceutical, IT & telecom, chemicals and advanced materials, consumer goods & food, energy & power, manufacturing & construction, industrial automation & equipment and agriculture & allied activities amongst others.

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Viral Clearance Market Is Expected To Reach USD 724.5 Million By 2023 From An Estimated USD 271.2 Million In 2018, At A CAGR Of 21.7% - LionLowdown

Biobank Market Industry Network, Key Vendors, Growth Analysis, Size, Share, Revenue Strategies and Forecast Report 2020-2026 | Coherent Market…

CMI presents an in-depth overview of the Global Biobank Market Study, detailing the latest product/industry coverage and market forecasts and status by 2027. Market research is categorized as a key area to accelerate marketization. The current market is evolving its presence and some of the major players in the study are

This study focuses on the Global Biobank Market status, future forecast, growth opportunity, key market, and emerging players. The study objectives are to present the Biobank growth in Key regions. In order to provide valuable insight into each key element of the market, the highest and slowest growing market segment in the study is described. Newmarket participants are emerging and are accelerating the transition in the antistatic market. Merger and acquisition activities are expected to change the market environment for this industry.

Biobank is a type of repository which collects and store biological samples for biomedical research. The human biological materials include blood, purified DNA, saliva, serum, and other specimens. Preservation of cells and tissues samples is done by cryopreservation at -1960C or using chemicals. The biobanks keep a health related records of genetic information, lifestyle, and family history. Biobank help researchers to detect human diseases and their unspecified causes by conducting various tests on the samples. Biobanks are largely used to access variety of data representing a large number of people for providing personalized medications, minimizing drug reactions, stem cell research, updating age demographic databases. The bio-repositories play a fundamental role in research and development, which is associated with drug development and discovery. Biobanks also provide inevitable assistance in gaining prospective to orphan diseases associated with genome wide studies via single nucleotide polymorphism (SNP).

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The Global Biobank is segmented by:

By Product Type: Global Biobank Market, By Application.

Regional Markets: United States, Europe, China, Japan, Southeast Asia, India & Central & South America

List of Companies Mentioned:

1) Does Study provide Latest Impact on the Market due to COVID & Slowdown?

Yes, the study has considered a chapter on Impact Analysis and this 2020 Edition of the report provides detailed analysis and its impact on growth trends and market sizing to better understand the current scenario.

2) How companies are selected or profiled in the report?

The list of some players that are profiled in the report includes .. the list is sorted to come up with a sample size of at least 50 to 100 companies having greater topline value to get their segment revenue for market estimation.

** List of companies mentioned may vary in the final report subject to Name Change / Merger etc.

3) Is it possible to narrow down business segments by Application of this study?

Yes, depending upon the data availability and feasibility check by our Research Analyst, a further breakdown in business segments by end-use application in relation to type can be provided (If applicable) by Revenue Size or Volume*.

4) What is the base year of the study? What time frame is covered in the report?

Furthermore, the years considered for the study are as follows:

Historical year 2014-2019

Base year 2019

Forecast period** 2020 to 2027 [** unless otherwise stated]

** We will also include opportunities to utilize in micro markets that stakeholders can invest in, a detailed analysis of key competitors, and key services. **

Global Biobank Market What to expect from this report:

Focused Study on Niche Strategy and Market Development & penetration Scenario

Top 10 Global Biobank Companies in Global Market Share Analysis: Leaders and Laggards in 2017, 2019

Gain strategic insights on competitor information to formulate effective R&D moves

Identify emerging players and create effective counter-strategies to outpace competitive edge

Identify important and diverse product types/services offering carried by major players for market development

And many more .

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TABLE OF CONTENTS

PART 01: EXECUTIVE SUMMARY

PART 02: SCOPE OF THE REPORT

PART 03: RESEARCH METHODOLOGY

PART 04: Global Biobank MarketLandscape

PART 06: Global BiobankMarket Sizing

PART 07: Global BiobankMarket Segmentation

PART 08: CUSTOMER LANDSCAPE

PART 10: DECISION FRAMEWORK

PART 09: REGIONAL LANDSCAPE

PART 11: MARKET DYNAMICS: DRIVERS, TRENDS, RESTRAINTS, OPPORTUNITIES, AND CHALLENGES

Thanks for reading this article; you can also get individual chapter wise section or region wise report versions like North America, Europe, or Asia.

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Biobank Market Industry Network, Key Vendors, Growth Analysis, Size, Share, Revenue Strategies and Forecast Report 2020-2026 | Coherent Market...

Nociceptive neurons shown to boost hematopoiesis | 2020-12-28 – BioWorld Online

A U.S. study has shown for the first time that enhancing signals from the nociceptive nervous system could provide new approaches to improve the collection of hematopoietic stem cells (HSCs) for treating cancers of the blood and bone marrow, the authors reported in the December 23, 2020, edition of Nature.

The findings may help cancer treatments, as "in a meaningful fraction of leukemia, multiple myeloma and lymphoma patients, particularly those who have received anticancer treatment, the HSC mobilization yield can be insufficient," said study leader Paul Frenette.

"Therefore, more efficient HSC mobilization methods would allow the harvest of sufficient HSCs for life-saving transplantation," said Frenette, a professor and director of the Ruth L. and David S. Gottesman Institute for Stem Cell and Regenerative Medicine Research at Albert Einstein College of Medicine in New York.

HSCs characteristically migrate to different hematopoietic sites during embryonic development and continue to be released from the adult bone marrow.

Most hematopoiesis occurs in the bone marrow, where different types of blood cells are derived from limited numbers of HSCs, which are multipotent and capable of extensive renewal.

The HSC migratory properties have facilitated their collection from the blood and transplantation as regenerative cancer treatment, although the mechanisms by which HSCs migrate out of the bone marrow remain largely unknown.

In tissues exposed to the external environment, such as the skin, lung and gut, nociceptors enable the rapid detection of external insults, including pain, cold or heat, in order to avoid organ damage.

Nociceptor sensory neurons detect these harmful stimuli and can regulate the immune response to them by releasing neurotransmitters and other regulatory molecules.

However, other than for pain perception, the role of nociceptors in a deep tissue, such as the bone marrow, is poorly understood.

In bone marrow, HSCs are found in specialized microenvironments or niches, which are complex regulatory environments influenced by multiple cellular constituents, including nerves.

Although sympathetic nerves are known to regulate the HSC niche, the role of nociceptive neurons in the bone marrow in this regard remains unclear.

"We have previously shown that nerves from the sympathetic nervous system promoted HSC mobilization in bone marrow, so we were curious to see whether nociceptive neurons might also be involved," Frenette told BioWorld Science.

In their new Nature study, the Frenette and his team showed that nociceptive neurons are required for HSC mobilization and that they interact with sympathetic nerves to maintain HSCs in the bone marrow.

Notably, nociceptor neurons were demonstrated to drive granulocyte colony-stimulating factor (G-CSF)-induced HSC mobilization via secretion of calcitonin gene-related peptide (CGRP).

"Our findings may lead to more efficient mobilization methods in [blood and bone marrow cancer] patients in whom existing methods are insufficient," Frenette said.

For example, "we have shown that the CGRP pathway synergizes with G-CSF and plerixafor [(Mozobil, Genzyme), an immunostimulant used to mobilize HSCs into the bloodstream in cancer patients]." Unlike sympathetic nerves, which regulate HSCs indirectly via the bone marrow niche, CGRP was shown to act directly on HSCs via receptor activity modifying protein 1 (RAMP1) and the calcitonin receptor-like receptor to promote HSC egress via Galphas/adenyl cyclase/cAMP signaling pathway activation.

This research identifies potential treatment targets for boosting HSC mobilization, since "we have shown that increasing the downstream signaling of the CGRP receptor RAMP1, by increasing cyclic AMP can enhance HSC mobilization," said Frenette.

Importantly, the Einstein researchers then showed that ingestion of food containing capsaicin, a natural component of chili peppers that can trigger the activation of nociceptive neurons, significantly enhanced HSC mobilization in mice.

"Capsaicin tablets are currently sold over-the-counter to 'help support cardiovascular and digestive function' at higher doses than that predicted by our studies in mice for stimulating HSC mobilization in humans," said Frenette.

"These relatively low concentrations of capsaicin have biological effects without seemingly causing obvious pain," he said.

Collectively, these findings therefore suggest that targeting the nociceptive nervous system could represent a novel strategy by which to improve the yield of HSCs for stem cell-based therapies. (Gao, X. et al. Nature 2020, Advanced publication).

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Nociceptive neurons shown to boost hematopoiesis | 2020-12-28 - BioWorld Online

Stem Cell Therapy Market 2020: Demand Analysis, Key Players, Trends, Sales, Supply, Deployment Model, Segments, Organization Size, Production, Revenue…

The stem cell therapy marketwas valued at US$ 1,534.55 million in 2019 and is expected to grow at a CAGR of 16.7% from 2020to 2027 to reach US$ 5,129.66 million by 2027.

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Stem cells are preliminary body cells from which all other cells with specialized functions are generated. Under controlled environment in the body or a clinical laboratory, these cells divide to form more cells called daughter cells. Due to the advent of modern health science, these cells play a major role in understanding the occurrence of diseases, generation of advanced regenerative medicines, and drug discovery. There are certain sources such as embryo, bone marrow, body fats, and umbilical cord blood amongst others, where stem cells are generated. The globalstem cell therapy marketis driven by factors such asincreasing awareness related to the stem cells therapy in effective disease management and growing demand for regenerative medicines. However, high cost related with stem cell therapy is likely to obstruct the growth of the stem cell therapymarket during the forecast period. The growing research and development activities in Asia Pacific region is expected to offer huge growth opportunity for stem cell therapy market.

Company Profiles

Whats included

Research report has been compiled by studying the market in-depth along with drivers, opportunities, restraints & other strategies as well as new-developments that can help a reader to understand the exact situation of the market along with the factors that can limit or hamper the market growth and the report also has been updated with Impacts & effects of Coronavirus pandemic and how it has influenced consumer behavior & the growth of the market as well as industries.

Global Stem Cell Therapy market Witness Most Promising Rise in Demand

The Stem Cell Therapy market is anticipated to grow with a significant rate in the coming 2027s, owing to factors such as, rising incidence and prevalence of chronic diseases, increasing healthcare expenses toward growth of eHealth, telemedicine, telehealth. Rapid growth in delivery of services to patients, several technological enlargements in the healthcare industry in Asia Pacific and Europe are expected to offer growth opportunities for the players operating in the market.

The global Stem Cell Therapy market is segmented on the basis of component, application, end user and geography. The component segment includes, system and software, services and medical device. Based on application, the Stem Cell Therapy market is segmented as, eHealth and others. Based on end user, the market is segmented as, hospitals and clinics, clinical research organization, research and diagnostic laboratories and others.

The COVID-19 outbreak is currently going the world over, the Stem Cell Therapy Market report covers the impact of the corona-virus on top companys growth. This research report categorizes as the key players in the Stem Cell Therapy market and also gives a comprehensive study of Covid-19 impact analysis of the market by regions like (Americas, Europe APAC, and EMEA).

The report offers key drivers that propel the growth in the global Stem Cell Therapy market. These insights help market players in devising strategies to gain market presence. The research also outlined the restraints of the market. Insights on opportunities are mentioned to assist market players in taking further steps by determining the potential in untapped regions.

This report focuses on the global Stem Cell Therapy market with the future forecast, growth opportunity, key market, and key players. The study objectives are to present the Stem Cell Therapy market development in North America, Europe, China, Japan, Southeast Asia, India, and Central & South America.

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Stem Cell Therapy Market 2020: Demand Analysis, Key Players, Trends, Sales, Supply, Deployment Model, Segments, Organization Size, Production, Revenue...