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Photoaged Skin Therapy with Adipose-Derived Stem Cells – MedicalResearch.com

Posted: June 2, 2020 at 9:44 pm

MedicalResearch.com Interview with:

Charles-de-SM.D., Ph.D.Rio de Janeiro, Brazil

MedicalResearch.com: What is the background for this study?

Response: Our clinical trial was based on our clinical skin observations in areas submitted to a lipotransfer previously, an ordinary practice in plastic surgery. These clinical observations lead us to investigate what will be the key element played in these findings. Our scientific support investigation addressed the Dardick1and Zuk, P2 studies, that demonstrated fibroblastic-like cells in adipose tissue with regenerative ability. Our clinical trial proposal is to investigate the adipose-derived stem cell (ADSC) role in the photoaged skin. The direct endpoint of the study was to assess the histological benefits provided by the subdermal ADSC injection. Mesenchymal stem cells were obtained from lipoaspirates, expanded in vitro, and introduced into the facial skin of 20 patients submitted after three to four months to a face-lifting surgery. In the retrieved skin, immunocytochemical and ultrastructural analysis quantified elastic matrix components, cathepsin-K, metalloprotease MMP-12, and the macrophage M2 markers: CD68, CD206 and heme-oxygenase-1.An overview of the trial steps is described in the infographic.

MedicalResearch.com: What are the main findings?

Response:A full de novo formation of oxytalan and elaunin fibers was observed in the subepidermal region, with a reconstitution of the papillary structure of the dermal-epidermal junction. Elastotic deposits in the deep dermis were substituted by a normal elastin fiber network. The coordinated removal of the pathologic deposits of old elastic fibers and their substitution by the normal ones was concomitant with activation of cathepsin-K and MPP12, and with expansion of the M2 macrophage infiltration.

MedicalResearch.com: What should readers take away from your report?

Response: This study has demonstrated ADSC to remodeling the skin extra cellular matrix, mainly in the elastic system.

MedicalResearch.com: What recommendations do you have for future research as a result of this study?

Response: Based on these findings, the future of thisresearch line aims to create new possibilities in regenerative cell therapy not only in skin diseases, but also in other clinical applicability in the case of organs and tissues with reduction and / or alteration in the elastic system (ex: aneurysms, cardiac valve disease and others), with a better understanding of the mechanisms involved and the control of these processes.

MedicalResearch.com: Is there anything else you would like to add? Any disclosures?

Response: It is interesting to be able, in future studies, to evaluate other mechanisms involved and the duration of effects regenerative effects on skin treated with ADSC. Another question could be considered: optimized ADSC (quantity) / area with the tissue effect found. We have not any to disclosure. This study was developed by federal university of Rio de Janeiro-Brasil and Verona University-Italy

Citation:

Charles-de-S, Luiz M.D., Ph.D.; Gontijo-de-Amorim, Natale Ferreira M.D., Ph.D.; Rigotti, Gino M.D., Ph.D.; Sbarbati, Andrea M.D., Ph.D.; Bernardi, Paolo Ph.D.; Benati, Donatella Ph.D.; Bizon Vieira Carias, Rosana Ph.D.; Maeda Takiya, Christina M.D., Ph.D.; Borojevic, Radovan Ph.D. Photoaged Skin Therapy with Adipose-Derived Stem Cells, Plastic and Reconstructive Surgery: June 2020 Volume 145 Issue 6 p 1037e-1049e doi: 10.1097/PRS.0000000000006867

References:

The information on MedicalResearch.com is provided for educational purposes only, and is in no way intended to diagnose, cure, or treat any medical or other condition. Always seek the advice of your physician or other qualified health and ask your doctor any questions you may have regarding a medical condition. In addition to all other limitations and disclaimers in this agreement, service provider and its third party providers disclaim any liability or loss in connection with the content provided on this website.

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Global Stem Cell Antibody Market Insights 2020 Demand Growing Rapidly with Major Player- Thermo Fisher Scientific, Merck Group, Abcam plc – Cole of…

Posted: June 2, 2020 at 9:44 pm

Stem Cell Antibody Market Research Report released by Research N Reports is a tool to inform businesses on histories, current trends and ample research to navigate through its complexities. Effective business strategies of the leading key players and startups have been explained in detail. The Stem Cell Antibody Market is expected to reach at a huge CAGR during the forecast period.

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Key Players:

Thermo Fisher Scientific, Inc. (U.S.), Merck Group (Germany), Abcam plc (U.K.), Becton, Dickinson and Company (U.S.), Bio-Rad Laboratories, Inc. (U.S.), Cell Signaling Technology, Inc. (U.S.), Agilent Technologies, Inc. (U.S.), F. Hoffmann-La Roche Ltd (Switzerland), Danaher Corporation (U.S.), GenScript (U.S.), PerkinElmer, Inc. (U.S.), Lonza (Switzerland), and BioLegend, Inc. (U.S.)

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Global Stem Cell Antibody Market Insights 2020 Demand Growing Rapidly with Major Player- Thermo Fisher Scientific, Merck Group, Abcam plc - Cole of...

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Potential impact of coronavirus outbreak on Stem Cell Antibody Market: Opportunities and Forecast Assessment, 2019-2025 – 3rd Watch News

Posted: June 2, 2020 at 9:44 pm

The research study presented in this report offers complete and intelligent analysis of the competition, segmentation, dynamics, and geographical advancement of the Global Stem Cell Antibody Market. The research study has been prepared with the use of in-depth qualitative and quantitative analyses of the global Stem Cell Antibody market. We have also provided absolute dollar opportunity and other types of market analysis on the global Stem Cell Antibody market.

It takes into account the CAGR, value, volume, revenue, production, consumption, sales, manufacturing cost, prices, and other key factors related to the global Stem Cell Antibody market. All findings and data on the global Stem Cell Antibody market provided in the report are calculated, gathered, and verified using advanced and reliable primary and secondary research sources. The regional analysis offered in the report will help you to identify key opportunities of the global Stem Cell Antibody market available in different regions and countries.

The report on the Stem Cell Antibody market provides a birds eye view of the current proceeding within the Stem Cell Antibody market. Further, the report also takes into account the impact of the novel COVID-19 pandemic on the Stem Cell Antibody market and offers a clear assessment of the projected market fluctuations during the forecast period.

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The authors of the report have segmented the global Stem Cell Antibody market as per product, application, and region. Segments of the global Stem Cell Antibody market are analyzed on the basis of market share, production, consumption, revenue, CAGR, market size, and more factors. The analysts have profiled leading players of the global Stem Cell Antibody market, keeping in view their recent developments, market share, sales, revenue, areas covered, product portfolios, and other aspects.

The following manufacturers are covered:Thermo Fisher Scientific, Inc. (U.S.)Merck Group (Germany), Abcam plc (U.K.)Becton, Dickinson and Company (U.S.)Bio-Rad Laboratories, Inc. (U.S.)Cell Signaling Technology, Inc. (U.S.)Agilent Technologies, Inc. (U.S.)F. Hoffmann-La Roche Ltd (Switzerland)Danaher Corporation (U.S.)GenScript (U.S.), PerkinElmer, Inc. (U.S.)Lonza (Switzerland), and BioLegend, Inc. (U.S.)

Segment by RegionsNorth AmericaEuropeChinaJapanSoutheast AsiaIndia

Segment by TypePrimary AntibodiesSecondary Antibodies

Segment by ApplicationProteomicsDrug DevelopmentGenomics

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Stem Cell Antibody Market Size and Forecast

In terms of region, this research report covers almost all the major regions across the globe such as North America, Europe, South America, the Middle East, and Africa and the Asia Pacific. Europe and North America regions are anticipated to show an upward growth in the years to come. While Stem Cell Antibody Market in Asia Pacific regions is likely to show remarkable growth during the forecasted period. Cutting edge technology and innovations are the most important traits of the North America region and thats the reason most of the time the US dominates the global markets. Stem Cell Antibody Market in South, America region is also expected to grow in near future.

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Potential impact of coronavirus outbreak on Stem Cell Antibody Market: Opportunities and Forecast Assessment, 2019-2025 - 3rd Watch News

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Global Cell Isolation Technology Market 2020 SWOT Analysis & Key Business Strategies by Leading Industry Players and Forecast 2025 – 3rd Watch…

Posted: June 2, 2020 at 9:44 pm

Recently MarketsandResearch.biz has published a new report entitled Global Cell Isolation Technology Market Growth (Status and Outlook) 2020-2025 goes into the past for analyzing the market scenario, at the same time, it provides a complete insight into the market. Starting from the number of sales made, the price structure of each segment, revenue generated and expected to be made, the margin of the profit, past performance, and all other aspects that can influence the market are covered in this report. The report has segmented and sub-segmented with respect to regions, players, dynamics, and strategies to simplify the actual conditions of the industry. It development trends, competitive landscape analysis, and key regions development status on the types, applications, and major players of the global Cell Isolation Technology market are studied in detail.

NOTE: Our analysts monitoring the situation across the globe explains that the market will generate remunerative prospects for producers post COVID-19 crisis. The report aims to provide an additional illustration of the latest scenario, economic slowdown, and COVID-19 impact on the overall industry.

DOWNLOAD FREE SAMPLE REPORT: https://www.marketsandresearch.biz/sample-request/59723

The Advancements Are Investigated Widely To Understand The Probable Impact On The Growth of The Global Market:

The Cell Isolation Technology market has been segmented into key segments such as product types, end-users, leading regions, and noteworthy players. The market report also includes statistics about sales, consumption rate, volume, value, gross margin, and more. The report also inspects the financial standing of the leading companies, which covers gross profit, revenue generation, sales volume, sales revenue, manufacturing cost, individual growth rate, and other financial ratios. The segmentation included in the report is beneficial for companies to reach desired business goals. Business events, including corporate deals, mergers and acquisitions, joint ventures, partnerships, product launches, and brand promotions are some of the business events made by key players.

Leading manufacturers/companies operating at both regional and global levels: Thermo Fisher Scientific, Inc., Merck, Beckman Coulter, Inc., Terumo BCT, BD Biosciences, Bio-Rad Laboratories, Inc., GE Healthcare, Stemcell Technologies,

With the product, the market could be divided into: Centrifugation, Flow Cytometry, Cell Electrophoresis,

With users/application, the market can be split into: Stem cell research, Cancer research, Tissue regeneration, In-vitro diagnostics, Other

By Leading Regions:

Analysts have created this report by gathering information through primary through surveys and interviews and secondary included industry body databases, reputable paid sources, and trade journal methods of data collection. The report includes exhaustive qualitative and quantitative evaluation. Analysts have taken meticulous efforts to take a look at the right and valuable statistics and serve this intelligence document.

This includes key regional areas such as Americas (United States, Canada, Mexico, Brazil), APAC (China, Japan, Korea, Southeast Asia, India, Australia), Europe (Germany, France, UK, Italy, Russia), Middle East & Africa (Egypt, South Africa, Israel, Turkey, GCC Countries)

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Global Cell Isolation Technology Market 2020 SWOT Analysis & Key Business Strategies by Leading Industry Players and Forecast 2025 - 3rd Watch...

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BHU prepares to be amongst top 500 global universities – Hindustan Times

Posted: June 2, 2020 at 9:44 pm

With an aim to be a part of top 500 universities of the world, Banaras Hindu University (BHU) is expanding its international hostel, building smart classrooms, upgrading graduate and postgraduate laboratories, and beautifying its campus under the institute of excellence (IoE) scheme, said BHU public relations officer Dr Rajesh Singh.

Giving details of achievements of BHU in last one year, Dr Singh said that the government had sanctioned Rs 1000 crore under IoE scheme a few months ago to the university for upgrading infrastructure, academic and research facilities, laboratories, central and departmental libraries within five years.

Work has already started for upgrading academic and research facilities. The international hostel of 110 rooms is almost ready. It will help the university attract more foreign students.

He said with the financial support of the ministry of human resource development and union ministry of health and family welfare, a super speciality block worth Rs 200 crore has been built in BHU.

After being inaugurated by Prime Minister Narendra Modi, it is already functional. At present, it is providing medical services to Covid-19 patients. It is equipped with operation theatres, and biochemistry lab and pathology.

Moreover, bone marrow transplant and stem cell research centre have also been set up, construction of regional eye centre with an estimated cost of Rs 38.5 crore is about to be completed.

Singh said that with the financial support of union human resource development ministry, a central discovery centre, equipped with state of the art facilities, for research in basic and practical science is also being set up.

A SATHI centre with an estimated cost of Rs 125 crore is being set up in BHU. Under one roof, there will be facilities for innovation, entrepreneurship and development of startups.

He said that a centre for Vedic science has been set up in the university for research and to establish a link between ancient Indian knowledge and modern science. The centre will also work for reestablishing the excellent sources of knowledge, Vedas and its wide area and will also study their effect in understanding modern science and technology.

BHU has also signed an MoU with solar energy corporation for setting up a solar energy centre and a green energy centre for study in this field.

Dr Singh said that 369 research projects worth over Rs 157 crore are underway in the university.

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Covid-19 Impact on Cell Isolation Technology Market Segmentation Along With Regional Outlook, Competitive Strategies, Factors Contributing To Growth…

Posted: June 2, 2020 at 9:44 pm

The market research report published by QYResearch is a brilliant, complete, and much-needed resource for companies, stakeholders, and investors interested in the global Covid-19 Impact on Cell Isolation Technology market. It informs readers about key trends and opportunities in the global Covid-19 Impact on Cell Isolation Technology market along with critical market dynamics expected to impact the global market growth. It offers a range of market analysis studies, including production and consumption, sales, industry value chain, competitive landscape, regional growth, and price. On the whole, it comes out as an intelligent resource that companies can use to gain a competitive advantage in the global Covid-19 Impact on Cell Isolation Technology market.

Key companies operating in the global Covid-19 Impact on Cell Isolation Technology market include , Thermo Fisher Scientific, Inc., Merck, BD Biosciences, Beckman Coulter, Inc., Terumo BCT, GE Healthcare, Stemcell Technologies, Bio-Rad Laboratories, Inc. Cell Isolation Technology Breakdown Data by Technology, Centrifugation, Flow Cytometry, Cell Electrophoresis Cell Isolation Technology Breakdown Data by Application, Stem cell research, Cancer research, Tissue regeneration, In-vitro diagnostics, Others

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Segmental Analysis

Both developed and emerging regions are deeply studied by the authors of the report. The regional analysis section of the report offers a comprehensive analysis of the global Covid-19 Impact on Cell Isolation Technology market on the basis of region. Each region is exhaustively researched about so that players can use the analysis to tap into unexplored markets and plan powerful strategies to gain a foothold in lucrative markets.

Global Covid-19 Impact on Cell Isolation Technology Market Segment By Type:

Cell separation technology is the basic means of studying such as the nucleus, mitochondria, Golgi, lysosomes and microsomes, as well as various macromolecules. Differential centrifugation is used to separate cells and organelles of different sizes. Flow cytometry is a technique for rapid quantitative analysis and sorting of single cells. Cell electrophoresis refers to the net positive or negative charge on the cell surface under a certain pH value, which can swim under the action of an external electric field. Since the COVID-19 virus outbreak in December 2019, the disease has spread to almost 100 countries around the globe with the World Health Organization declaring it a public health emergency. The global impacts of the coronavirus disease 2019 (COVID-19) are already starting to be felt, and will significantly affect the Cell Isolation Technology market in 2020. COVID-19 can affect the global economy in three main ways: by directly affecting production and demand, by creating supply chain and market disruption, and by its financial impact on firms and financial markets. The outbreak of COVID-19 has brought effects on many aspects, like flight cancellations; travel bans and quarantines; restaurants closed; all indoor events restricted; over forty countries state of emergency declared; massive slowing of the supply chain; stock market volatility; falling business confidence, growing panic among the population, and uncertainty about future. This report also analyses the impact of Coronavirus COVID-19 on the Cell Isolation Technology industry. Based on our recent survey, we have several different scenarios about the Cell Isolation Technology YoY growth rate for 2020. The probable scenario is expected to grow by a xx% in 2020 and the revenue will be xx in 2020 from US$ xx million in 2019. The market size of Cell Isolation Technology will reach xx in 2026, with a CAGR of xx% from 2020 to 2026. With industry-standard accuracy in analysis and high data integrity, the report makes a brilliant attempt to unveil key opportunities available in the global Cell Isolation Technology market to help players in achieving a strong market position. Buyers of the report can access verified and reliable market forecasts, including those for the overall size of the global Cell Isolation Technology market in terms of revenue. Players, stakeholders, and Other

Global Covid-19 Impact on Cell Isolation Technology Market Segment By Application:

, Stem cell research, Cancer research, Tissue regeneration, In-vitro diagnostics, Other

Competitive Landscape

Competitor analysis is one of the best sections of the report that compares the progress of leading players based on crucial parameters, including market share, new developments, global reach, local competition, price, and production. From the nature of competition to future changes in the vendor landscape, the report provides in-depth analysis of the competition in the global Covid-19 Impact on Cell Isolation Technology market.

Key companies operating in the global Covid-19 Impact on Cell Isolation Technology market include , Thermo Fisher Scientific, Inc., Merck, BD Biosciences, Beckman Coulter, Inc., Terumo BCT, GE Healthcare, Stemcell Technologies, Bio-Rad Laboratories, Inc. Cell Isolation Technology Breakdown Data by Technology, Centrifugation, Flow Cytometry, Cell Electrophoresis Cell Isolation Technology Breakdown Data by Application, Stem cell research, Cancer research, Tissue regeneration, In-vitro diagnostics, Others

Key questions answered in the report:

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TOC

1 Report Overview1.1 Study Scope1.2 Key Market Segments1.3 Players Covered: Ranking by Cell Isolation Technology Revenue1.4 Market Analysis by Technology 1.4.1 Global Cell Isolation Technology Market Size Growth Rate by Technology: 2020 VS 2026 1.4.2 Centrifugation 1.4.3 Flow Cytometry 1.4.4 Cell Electrophoresis1.5 Market by Application 1.5.1 Global Cell Isolation Technology Market Share by Application: 2020 VS 2026 1.5.2 Stem cell research 1.5.3 Cancer research 1.5.4 Tissue regeneration 1.5.5 In-vitro diagnostics 1.5.6 Others1.6 Coronavirus Disease 2019 (Covid-19): Cell Isolation Technology Industry Impact 1.6.1 How the Covid-19 is Affecting the Cell Isolation Technology Industry 1.6.1.1 Cell Isolation Technology Business Impact Assessment Covid-19 1.6.1.2 Supply Chain Challenges 1.6.1.3 COVID-19s Impact On Crude Oil and Refined Products 1.6.2 Market Trends and Cell Isolation Technology Potential Opportunities in the COVID-19 Landscape 1.6.3 Measures / Proposal against Covid-19 1.6.3.1 Government Measures to Combat Covid-19 Impact 1.6.3.2 Proposal for Cell Isolation Technology Players to Combat Covid-19 Impact 1.7 Study Objectives 1.8 Years Considered 2 Global Growth Trends by Regions2.1 Cell Isolation Technology Market Perspective (2015-2026)2.2 Cell Isolation Technology Growth Trends by Regions 2.2.1 Cell Isolation Technology Market Size by Regions: 2015 VS 2020 VS 2026 2.2.2 Cell Isolation Technology Historic Market Share by Regions (2015-2020) 2.2.3 Cell Isolation Technology Forecasted Market Size by Regions (2021-2026) 2.3 Industry Trends and Growth Strategy 2.3.1 Market Top Trends 2.3.2 Market Drivers 2.3.3 Market Challenges 2.3.4 Porters Five Forces Analysis 2.3.5 Cell Isolation Technology Market Growth Strategy 2.3.6 Primary Interviews with Key Cell Isolation Technology Players (Opinion Leaders) 3 Competition Landscape by Key Players3.1 Global Top Cell Isolation Technology Players by Market Size 3.1.1 Global Top Cell Isolation Technology Players by Revenue (2015-2020) 3.1.2 Global Cell Isolation Technology Revenue Market Share by Players (2015-2020) 3.1.3 Global Cell Isolation Technology Market Share by Company Type (Tier 1, Tier 2 and Tier 3)3.2 Global Cell Isolation Technology Market Concentration Ratio 3.2.1 Global Cell Isolation Technology Market Concentration Ratio (CR5 and HHI) 3.2.2 Global Top 10 and Top 5 Companies by Cell Isolation Technology Revenue in 20193.3 Cell Isolation Technology Key Players Head office and Area Served3.4 Key Players Cell Isolation Technology Product Solution and Service3.5 Date of Enter into Cell Isolation Technology Market3.6 Mergers & Acquisitions, Expansion Plans 4 Breakdown Data by Technology (2015-2026)4.1 Global Cell Isolation Technology Historic Market Size by Technology (2015-2020)4.2 Global Cell Isolation Technology Forecasted Market Size by Technology (2021-2026) 5 Cell Isolation Technology Breakdown Data by Application (2015-2026)5.1 Global Cell Isolation Technology Market Size by Application (2015-2020)5.2 Global Cell Isolation Technology Forecasted Market Size by Application (2021-2026) 6 North America6.1 North America Cell Isolation Technology Market Size (2015-2020)6.2 Cell Isolation Technology Key Players in North America (2019-2020)6.3 North America Cell Isolation Technology Market Size by Technology (2015-2020)6.4 North America Cell Isolation Technology Market Size by Application (2015-2020) 7 Europe7.1 Europe Cell Isolation Technology Market Size (2015-2020)7.2 Cell Isolation Technology Key Players in Europe (2019-2020)7.3 Europe Cell Isolation Technology Market Size by Technology (2015-2020)7.4 Europe Cell Isolation Technology Market Size by Application (2015-2020) 8 China8.1 China Cell Isolation Technology Market Size (2015-2020)8.2 Cell Isolation Technology Key Players in China (2019-2020)8.3 China Cell Isolation Technology Market Size by Technology (2015-2020)8.4 China Cell Isolation Technology Market Size by Application (2015-2020) 9 Japan9.1 Japan Cell Isolation Technology Market Size (2015-2020)9.2 Cell Isolation Technology Key Players in Japan (2019-2020)9.3 Japan Cell Isolation Technology Market Size by Technology (2015-2020)9.4 Japan Cell Isolation Technology Market Size by Application (2015-2020) 10 Southeast Asia10.1 Southeast Asia Cell Isolation Technology Market Size (2015-2020)10.2 Cell Isolation Technology Key Players in Southeast Asia (2019-2020)10.3 Southeast Asia Cell Isolation Technology Market Size by Type (2015-2020)10.4 Southeast Asia Cell Isolation Technology Market Size by Application (2015-2020) 11 India11.1 India Cell Isolation Technology Market Size (2015-2020)11.2 Cell Isolation Technology Key Players in India (2019-2020)11.3 India Cell Isolation Technology Market Size by Type (2015-2020)11.4 India Cell Isolation Technology Market Size by Application (2015-2020) 12 Central & South America12.1 Central & South America Cell Isolation Technology Market Size (2015-2020)12.2 Cell Isolation Technology Key Players in Central & South America (2019-2020)12.3 Central & South America Cell Isolation Technology Market Size by Type (2015-2020)12.4 Central & South America Cell Isolation Technology Market Size by Application (2015-2020) 13Key Players Profiles13.1 Thermo Fisher Scientific, Inc. 13.1.1 Thermo Fisher Scientific, Inc. Company Details 13.1.2 Thermo Fisher Scientific, Inc. Business Overview and Its Total Revenue 13.1.3 Thermo Fisher Scientific, Inc. Cell Isolation Technology Introduction 13.1.4 Thermo Fisher Scientific, Inc. Revenue in Cell Isolation Technology Business (2015-2020)) 13.1.5 Thermo Fisher Scientific, Inc. Recent Development13.2 Merck 13.2.1 Merck Company Details 13.2.2 Merck Business Overview and Its Total Revenue 13.2.3 Merck Cell Isolation Technology Introduction 13.2.4 Merck Revenue in Cell Isolation Technology Business (2015-2020) 13.2.5 Merck Recent Development13.3 BD Biosciences 13.3.1 BD Biosciences Company Details 13.3.2 BD Biosciences Business Overview and Its Total Revenue 13.3.3 BD Biosciences Cell Isolation Technology Introduction 13.3.4 BD Biosciences Revenue in Cell Isolation Technology Business (2015-2020) 13.3.5 BD Biosciences Recent Development13.4 Beckman Coulter, Inc. 13.4.1 Beckman Coulter, Inc. Company Details 13.4.2 Beckman Coulter, Inc. Business Overview and Its Total Revenue 13.4.3 Beckman Coulter, Inc. Cell Isolation Technology Introduction 13.4.4 Beckman Coulter, Inc. Revenue in Cell Isolation Technology Business (2015-2020) 13.4.5 Beckman Coulter, Inc. Recent Development13.5 Terumo BCT 13.5.1 Terumo BCT Company Details 13.5.2 Terumo BCT Business Overview and Its Total Revenue 13.5.3 Terumo BCT Cell Isolation Technology Introduction 13.5.4 Terumo BCT Revenue in Cell Isolation Technology Business (2015-2020) 13.5.5 Terumo BCT Recent Development13.6 GE Healthcare 13.6.1 GE Healthcare Company Details 13.6.2 GE Healthcare Business Overview and Its Total Revenue 13.6.3 GE Healthcare Cell Isolation Technology Introduction 13.6.4 GE Healthcare Revenue in Cell Isolation Technology Business (2015-2020) 13.6.5 GE Healthcare Recent Development13.7 Stemcell Technologies 13.7.1 Stemcell Technologies Company Details 13.7.2 Stemcell Technologies Business Overview and Its Total Revenue 13.7.3 Stemcell Technologies Cell Isolation Technology Introduction 13.7.4 Stemcell Technologies Revenue in Cell Isolation Technology Business (2015-2020) 13.7.5 Stemcell Technologies Recent Development13.8 Bio-Rad Laboratories, Inc. 13.8.1 Bio-Rad Laboratories, Inc. Company Details 13.8.2 Bio-Rad Laboratories, Inc. Business Overview and Its Total Revenue 13.8.3 Bio-Rad Laboratories, Inc. Cell Isolation Technology Introduction 13.8.4 Bio-Rad Laboratories, Inc. Revenue in Cell Isolation Technology Business (2015-2020) 13.8.5 Bio-Rad Laboratories, Inc. Recent Development 14Analysts Viewpoints/Conclusions 15Appendix15.1 Research Methodology 15.1.1 Methodology/Research Approach 15.1.2 Data Source15.2 Disclaimer15.3 Author Details

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Covid-19 Impact on Cell Isolation Technology Market Segmentation Along With Regional Outlook, Competitive Strategies, Factors Contributing To Growth...

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Professor Wolf Reik appointed acting director of the Babraham Institute – Cambridge Independent

Posted: June 2, 2020 at 9:44 pm

Professor Wolf Reik has been appointed acting director of the Babraham Institute.

It follows the death of Professor Michael Wakelam, who died from suspected a Covid-19 infection on March 31.

Prof Reik has been the institutes associate director since 2004 and has headed up its epigenetics research programme since 2008.

Prof Peter Rigby, chair of the institutes board of trustees, said: Prof Reik is a world-class scientist, internationally renowned for his work in epigenetics, who has been at the Institute for over 30 years.

The Biotechnology and Biological Sciences Research Council (BBSRC), which funds the institute, approved of the move, he said.

The BBSRC fully support the board's appointment, which will ensure the institute continues to be strongly led, building on the excellent work of Prof Michael Wakelam. I know that Wolf will provide much needed leadership and stability during the uncertain times that we all face, said Prof Rigby.

Prof Reik added: I am really honoured by this appointment; I look forward to working with everyone at the Institute, the campus and with BBSRC.

After Michaels sad death, my primary aim is to bring us back to our labs in a safe and considerate fashion, and to jointly tackle the opportunities and challenges for the science of the Institute going forward strongly into the future.

The study of epigenetics explores the set of instructions that alter how our genome behaves - by regulating gene expression - without changing our underlying DNA code.

Prof Reik explores the role of epigenetics in establishing cell fate and identity during mammalian development and also the process of epigenetic reprogramming.

From the earliest steps in human development, to how stem cells maintain their pluripotency - that is, their ability to change into different cells - Prof Reiks lab is interested in some fundamental questions.

It also explores how the identity of cells is established during the process of differentiation, through which they change into all the different types of cells in our bodies.

Recently, the lab has been studying how the epigenome degrades with age - and whether there are ways of reversing this decay.

New technologies for single cell multi-omics sequencing, which allows unprecedented insights into cell fate changes during development or ageing, have been developed by the lab.

Prof Reik has an interest in collaboration both inside and outside the institute and leads a Wellcome-funded consortium studying cell fate decisions during mouse gastrulation and organ development.

He obtained his MD in 1985 from the University of Hamburg, where he undertook thesis work with Rudolf Jaenisch before completing postdoctoral work with Azim Surani at the Institute of Animal Physiology, which is now the Babraham Institute. During this spell, he became a fellow of the Lister Institute of Preventive Medicine which, in 1987, provided funding for him to start his own independent research group.

He is honorary professor of epigenetics and affiliate faculty at the Stem Cell Institute at the University of Cambridge and associate faculty at the Wellcome Sanger Institute. A member of EMBO and the Academia Europaea, a fellow of the Academy of Medical Sciences and the Royal Society, he has also been a member of funding committees such as UKRI-Medical Research Council, Cancer Research UK and Wellcome Trust.

Read more

How Wolf Reik is unravelling life's other set of instructions at the Babraham Institute

How to build a human: Babraham Institute to unlock secrets of early human development

How Babraham Institute's study of nematode worms can help us understand human ageing

Babraham Institute director Professor Michael Wakelam dies after suspected coronavirus infection

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Professor Wolf Reik appointed acting director of the Babraham Institute - Cambridge Independent

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Human Embryonic Stem Cell Assay Market Valuation 2020 | Key Trends, Growth Drivers, In Depth Analysis, Solution and Businesss Opportunities -…

Posted: June 2, 2020 at 9:44 pm

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Human Embryonic Stem Cell Assay Market Valuation 2020 | Key Trends, Growth Drivers, In Depth Analysis, Solution and Businesss Opportunities -...

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Athens hospital using biologic treatment on COVID-19 patients – Online Athens

Posted: June 2, 2020 at 9:43 pm

A local hospital is using a little-known medicine to treat COVID-19 patients after the FDA authorized compassionate use approval to administer the drug.

Landmark Hospital of Athens treated two patients with its first doses of the medicine last week, according to a press release from Landmark Hospitals, which operates six long-term acute-care hospitals in the Southeast, including its Athens hospital on Sunset Drive.

The medicine, called Organicell Flow, is a biologic product derived from amniotic fluid, which contains stem cells. Amniotic fluid is the protective fluid in the sac containing growing fetuses.

Landmark is providing the product to patients with advanced COVID-19 conditions, according to the company.

After receiving Organicell Flow intravenously last week, the two patients were clinically stable as of Wednesday, according to Landmark.

Organicell Regenerative Medicine of Boca Raton, Fla., manufactures the medicine from human amniotic fluid voluntarily donated during Cesarean section surgeries, according to Landmark.

Developed to promote wound healing, Organicell Flow contains more than 300 growth factors, cytokines and chemokines, as well as hyaluronic acid and exosomes, according to the press release.

The medicine can modulate a patients immune response. In some COVID-19 patients, their supercharged immune response can be as harmful as the actual coronavirus that causes COVID-19.

The condition, called cytokine storm syndrome, can damage lungs and other organs and can lead to death, said Landmark Hospitals Chairman Dr. William Kapp.

The data collected from the patients receiving compassionate use treatments will guide us to interventions that modulate COVID-19 immune response in the lungs and reduce systemic organ damage, Kapp said in Landmarks press release.

Organicell Flow is one of a number of medicines health providers around the world are trying out to treat COVID-19, which has claimed more than 100,000 lives in the United States so far and nearly 2,000 in Georgia.

Two other Athens hospitals have also recently received shipments of another drug that may help patients with COVID-19, remdesivir.

Gov. Brian Kemp announced earlier this week that the state was distributing more than 18,000 vials of remdesivir to more than 80 Georgia hospitals, enough to treat nearly 17,000 patients. The hospitals include Athens St. Marys Healthcare System and the Piedmont system that includes Piedmont Athens Regional and several other Georgia hospitals.

Remdesivir is being used to treat patients with serious symptoms such as low oxygen levels or pneumonia, according to the Georgia Department of Public Health.

Developed to treat people with Ebola virus disease, remdesivir has been shown to shorten the time of recovery from COVID-19 illness in hospitalized patients, but in the absence of thorough studies is considered investigational.

Standard treatment for COVID-19 includes oxygen therapy, mechanical ventilation and medicine to maintain blood pressure.

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Study reveals birth defects caused by flame retardant – University of Georgia

Posted: June 2, 2020 at 9:43 pm

Research focuses on mans exposure prior to contraception

A new study from the University of Georgia has shown that exposure to a now-banned flame retardant can alter the genetic code in sperm, leading to major health defects in children of exposed parents.

Published recently in Scientific Reports, the study is the first to investigate how polybrominated biphenyl-153 (PBB153), the primary chemical component of the flame retardant FireMaster, impacts paternal reproduction.

In 1973, an estimated 6.5 million Michigan residents were exposed to PBB153 when FireMaster was accidentally sent to state grain mills where it made its way into the food supply. In the decades since, a range of health problems including skin discoloration, headache, dizziness, joint pain and even some cancers have been linked to the exposure.

More striking, the children of those who were exposed seemed to experience a host of health issues as well, including reports of hernia or buildup in the scrotum for newborn sons and a higher chance of stillbirth or miscarriage among adult daughters.

Yet, little work has been done to understand how the chemical exposure could have impacted genes passed from an exposed father, said study author Katherine Greeson.

It is still a relatively new idea that a mans exposures prior to conception can impact the health of his children, said Greeson, an environmental health science doctoral student in Charles Easleys lab at UGAs College of Public Health and Regenerative Bioscience Center.

Most studies where a toxic effect is observed in children look only to the mothers and the same has been true of studies conducted on PBB153, she said.

Greeson and a team of researchers from UGA and Emory University used a unique combination of observational and laboratory approaches to demonstrate how PBB153 acted on sperm cells.

Typically, scientific studies are either epidemiological in nature and inherently observational or focus on bench science, but in this study, we did both, said Greeson.

This approach allowed the researchers to mimic the known blood exposure levels of PBB153 in a lab environment.

We were uniquely able to recreate this effect using our previously characterized human stem cell model for spermatogenesis, she said, which allowed us to study the mechanism that causes this effect in humans.

The team looked at the expression of different genes in their human spermatogenesis model after dosing with PBB153 and found marked alterations in gene expression between dosed and undosed cells, specifically at genes important to development, such as embryonic organ, limb, muscle, and nervous system development.

PBB153 causes changes to the DNA in sperm in a way that changes how the genes are turned on and off, said Greeson. PBB153 seems to turn on these genes in sperm which should be turned off, said Greeson, which may explain some of the endocrine-related health issues observed in the children of exposed parents.

Though the study used this model to directly replicate exposure to PBB153, Greeson says this approach could be used to better understand the impact of other environmental exposures on reproduction, including large-scale accidental exposures to toxic chemicals or everyday exposures.

Hopefully this work will lead to more studies combining epidemiology and bench science in the future, which will tell us more about why were seeing an effect from an environmental exposure in human populations and encourage experimental studies to more closely mimic human exposures, she said.

The study, Detrimental Effects of Flame Retardant, PBB153, Exposure on Sperm and Future Generations, published May 22. It is available online.

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