Reven Announces the Appointment of Eminent Physician-Scientist Fatih M. Uckun, M.D., Ph.D., Internationally Recognized for His Seminal Contributions…

GOLDEN, Colo.--(BUSINESS WIRE)--Reven Holdings, Inc. (Reven), a privately held clinical stage biotechnology and pharmaceutical company dedicated to the discovery and development of novel treatment platforms for cancer, viral illnessesincluding COVID-19and inflammatory disorders, today announced the appointment of Dr. Fatih M. Uckun as its Chief Medical Officer and Chief Scientific Officer.

In his new position at Reven, Dr. Uckun will provide executive oversight for Revens global Research & Development and clinical programs. In addition, Dr. Uckun will contribute medical-scientific leadership and direction for Revens basic and translational research activities, R&D and clinical development programs in cancer, transplantation immunology, sepsis, metabolic disorders, inflammatory disorders, and the acute respiratory distress syndrome (ARDS) in patients with sepsis, including COVID-19 patients with viral sepsis.

Dr. Uckun stated, It is an exceptionally exciting time to join Reven to support a global registration strategy for its unique RJX platform. The components of RJX exhibited very promising activity in clinical studies involving ARDS patients and non-clinical studies in animal models of ARDS. The published data from these clinical, and recent non-clinical, studies confirming its unique mechanism of action, provide the medical-scientific rationale for Revens clinical development strategy for RJX. The clinical study in COVID-19 patients is a logical next step. I very much look forward to working with the talented and experienced leadership team of Reven and our collaborators. The goal is to diligently advance the RJX clinical trial program with the vision of developing RJX-based new treatments for COVID-19 patients, as well as patients with difficult-to-treat forms of cancer and inflammatory disorders who are in urgent need for therapeutic innovations.

As we move forward with our planned clinical trial of Rejuveinix (RJX) for treatment of COVID-19, Dr. Uckuns decades of drug development experience will be critical in successful execution and the establishment of effective collaborations with other stakeholders, said Peter Lange, Chief Executive Officer of Reven. Dr. Uckun embodies Revens core values: dedication to patients, passion for science, and excellence in execution. I am delighted to have the opportunity to welcome Dr. Uckun as part of Revens leadership team.

About Dr. Uckun

Dr. Uckun is an elected Member of the American Society for Clinical Investigation (ASCI), an honor society for physician-scientists, and an active member of several professional organizations. He received numerous awards for his work on monoclonal antibodies, recombinant cytokines and fusion proteins, radiation sensitizers, kinase inhibitors and targeted therapeutics for difficult-to-treat cancers, including the Stohlman Memorial Award of the Leukemia Society of America, the highest honor given to a Leukemia Society Scholar. He has served as a member of several editorial boards and National Institutes of Health grant review/special emphasis panels.

Dr. Uckun earned his doctoral degrees at the University of Heidelberg, Germany, where he also served as an active member of the autologous bone marrow transplant and peripheral stem cell transplant clinical research teams of the Tumor Center. Dr. Uckun completed his residency training in pediatrics, clinical fellowship training in Hematology/Oncology/Blood and Bone Marrow Stem Cell Transplantation, as well as postdoctoral research training in immunology and microbiology at the University of Minnesota. Dr. Uckun has more than thirty years of professional experience in developmental therapeutics with a special emphasis on targeted therapeutics/precision medicines and biopharmaceuticals. He has published more than 500 peer-reviewed papers, authored numerous review articles and book chapters, and is an inventor on numerous patents.

For eleven years, Dr. Uckun worked as a Professor of Bone Marrow Transplantation, Therapeutic Radiology-Radiation Oncology, Pharmacology, and Pediatrics as well as Director of the Biotherapy Institute at the University of Minnesota, where he became the first recipient of the Endowed Hughes Chair in Biotherapy. At the Keck School of Medicine of the University of Southern California, he was a Professor and Head of Translational Research in Leukemia and Lymphoma of the CCBD and a Principal Investigator of the Stem Cell-Regenerative Medicine Initiative for six years. From 2012 to 2015, Dr. Uckun served as chair of the Biotargeting Working Group and a Member of the Coordination and Governance Committee of the National Cancer Institute Alliance for Nanotechnology in Cancer.

Dr. Uckun has held executive positions in multiple biotechnology companies and has extensive regulatory experience. Prior to joining Reven, Dr. Uckun served as Vice President of Scientific Solutions at Worldwide Clinical Trials, Chief Medical Officer of Oncotelic and Mateon Therapeutics, Head of Immuno-Oncology at Ares Pharmaceuticals, and as Executive Medical Director and Strategy Lead in Global Oncology and Hematology at Syneos Health. Previously, he was Vice President of Research and Clinical Development at Nantkwest, and Chief Scientific Officer of both Jupiter Research Institute and Paradigm Pharmaceuticals. Dr. Uckun is a former Vice Chair of the New Agents Committee as well as a Member of the Leukemia Steering Committee of the Childrens Cancer Study Group, an NCI-funded cooperative clinical trials consortium that coordinated pediatric and adolescent/young adult leukemia trials at 120 institutions in the U.S., Canada, Australia and Europe.

Dr. Uckun has deep knowledge and experience in the treatment of infectious diseases and their complications. In particular, he has extensive experience in viral, fungal, and bacterial infections of immunocompromised hosts, septic shock, ARDS, systemic capillary leak syndrome and cytokine release syndrome (CRS). He served as the Principal Investigator of a virus neutralizer project funded by the Defense Advanced Research Projects Agency (DARPA) as part of its unconventional countermeasures program. Dr. Uckun directed several federally funded virology/innate immunity projects and published numerous peer-reviewed papers on RNA viruses and anti-viral agents.

About Rejuveinix (RJX)

RJX is an intravenous (IV) formulation of known physiologically compatible compounds that is being developed for more effective supportive therapy of patients with sepsis, including COVID-19 patients with viral sepsis and acute respiratory distress syndrome (ARDS). The RJX formulation is a solution of buffered acid products, electrolyte components, and vitamins, including ascorbic acid, cyanocobalamin, thiamine hydrochloride, riboflavin 5 phosphate, niacinamide, pyridoxine hydrochloride, and calcium d-pantothenate, and magnesium sulfate heptahydrate, a mineral with a negative oxidation-reduction potential. The components of RJX exhibited promising activity in clinical studies involving ARDS patients and/or non-clinical studies in animal models of ARDS. The published data from these clinical and non-clinical studies provided the medical-scientific rationale for Revens clinical development strategy for RJX and a clinical study in COVID-19 patients. The clinical tolerability of RJX was confirmed in a recently completed double blind, placebo-controlled Phase 1 dose-escalation study in healthy volunteers (ClinicalTrials.gov Identifier: NCT03680105).

About Reven Holdings, Inc.

Reven Holdings, Inc., a Delaware corporation, through its Golden, Colorado-based operating company Reven, LLC, is a biopharmaceutical company. Revens vision is to make a difference in the world by making its products accessible to everyone suffering the effects of vascular and metabolic related diseases. Reven is committed to being the premier, research-intensive biopharmaceutical company that advances the health and well-being of people around the world. Its primary product, Rejuveinix (RJX), targets patients suffering from COVID-19, sepsis, vascular and metabolic related diseases as well as specific patient populations suffering PAD and other cardiovascular related medical conditions.

Revens Cautionary Note on Forward-Looking Statements

This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. All statements, other than statements of historical facts, included in this communication regarding strategy, future operations, future financial position, prospects, plans and objectives of management are forward-looking statements. Words such as may, on-track, expect, anticipate hope, vision, optimism, design, exciting, promising, will, conviction, estimate, intend, believe and similar expressions are intended to identify forward-looking statements. Forward-looking statements contained in this press release include, but are not limited to, statements about future plans, the progress, timing, clinical development, scope and success of future clinical trials, the reporting of clinical data for the companys product candidates and the potential use of the companys product candidates to treat various disease indications. Each of these forward-looking statements involves risks and uncertainties, and actual results may differ materially from these forward-looking statements. Many factors may cause differences between current expectations and actual results, including unexpected safety or efficacy data observed during preclinical or clinical studies, clinical trial site activation or enrollment rates that are lower than expected, changes in expected or existing market competition, changes in the regulatory environment, failure of collaborators to support or advance collaborations or product candidates, and unexpected litigation or other disputes. These risks are not exhaustive; the company faces known and unknown risks, including the risk factors described in the companys periodic SEC filings. Forward-looking statements are based on expectations and assumptions as of the date of this press release. Except as required by law, the company does not assume any obligation to update forward-looking statements contained herein to reflect any change in expectations, whether as a result of new information regarding future events, or otherwise.

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Reven Announces the Appointment of Eminent Physician-Scientist Fatih M. Uckun, M.D., Ph.D., Internationally Recognized for His Seminal Contributions...

Regenerative Medicine Products Market, Share, Growth, Trends And Forecast To 2025 UpMarketResearch – 3rd Watch News

Regenerative Medicine Products Market Forecast 2020-2026

The Global Regenerative Medicine Products Market research report provides and in-depth analysis on industry- and economy-wide database for business management that could potentially offer development and profitability for players in this market. This is a latest report, covering the current COVID-19 impact on the market. The pandemic of Coronavirus (COVID-19) has affected every aspect of life globally. This has brought along several changes in market conditions. The rapidly changing market scenario and initial and future assessment of the impact is covered in the report. It offers critical information pertaining to the current and future growth of the market. It focuses on technologies, volume, and materials in, and in-depth analysis of the market. The study has a section dedicated for profiling key companies in the market along with the market shares they hold.

The report consists of trends that are anticipated to impact the growth of the Regenerative Medicine Products Market during the forecast period between 2020 and 2026. Evaluation of these trends is included in the report, along with their product innovations.

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The Report Covers the Following Companies: Acelity DePuy Synthes Medtronic ZimmerBiomet Stryker MiMedx Group Organogenesis UniQure Cellular Dynamics International Osiris Therapeutics Vcanbio Gamida Cell Golden Meditech Cytori Therapeutics Celgene Vericel Corporation Guanhao Biotech Mesoblast Stemcell Technologes Bellicum Pharmaceuticals

By Types: Cell Therapy Tissue Engineering Biomaterial Others

By Applications: Dermatology Cardiovascular CNS Orthopedic Others

Furthermore, the report includes growth rate of the global market, consumption tables, facts, figures, and statistics of key segments.

By Regions:

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Years Considered to Estimate the Market Size: History Year: 2015-2019 Base Year: 2019 Estimated Year: 2020 Forecast Year: 2020-2026

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Global and Country Specific CRISPR And CRISPR Associated Genes Market Report 2020 Forecast, Opportunities and Strategies To 2027: COVID 19 Impact and…

CRISPR And CRISPR Associated Genes Market report involves all together a different chapter on COVID 19 Impact. The Covid-19 (coronavirus) pandemic is impacting society and the overall economy across the world. The impact of this pandemic is growing day by day as well as affecting the supply chain. The COVID-19 crisis is creating uncertainty in the stock market, massive slowing of supply chain, falling business confidence, and increasing panic among the customer segments. The overall effect of the pandemic is impacting the production process of several industries including Life Science, and many more. Trade barriers are further restraining the demand- supply outlook. nicolas.shaw@cognitivemarketresearch.com or call us on +1-312-376-8303. Download The report Copy form the webstie: https://cognitivemarketresearch.com/pharma-%26-healthcare/crispr-and-crispr-associated-genes-market-report

The major players profiled in this report include: Thermo Fisher Scientific, Editas Medicine, Caribou Biosciences, CRISPR therapeutics, Intellia therapeutics Inc., Cellectis, Horizon Discovery Plc, Sigma Aldrich, Precision Biosciences, Genscript, Sangamo Biosciences Inc., Lonza Group Limited, Integrated DNA Technologies, New England Biolabs, Origene Technologies

Market segment by type can be split into: Thermo Fisher Scientific, Editas Medicine, Caribou Biosciences, CRISPR therapeutics, Intellia therapeutics Inc., Cellectis, Horizon Discovery Plc, Sigma Aldrich, Precision Biosciences, Genscript, Sangamo Biosciences Inc., Lonza Group Limited, Integrated DNA Technologies, New England Biolabs, Origene Technologies, Market segment by Regions/Countries this report covers, North America, Europe, China, Rest of Asia Pacific, Central & South America, Middle East & Africa, Market segment by Type the product can be split into, Genome Editing, Genetic engineering, GRNA Database/Gene Librar, CRISPR Plasmid, Human Stem Cells, Genetically Modified Organisms/Crops, Cell Line Engineering

Market segment by the application can be split into: Biotechnology Companies, Pharmaceutical Companies, Academic Institutes, Research and Development Institutes

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As government of different regions have already announced total lockdown and temporarily shutdown of industries, the overall production process being adversely affected; thus, hinder the overall CRISPR And CRISPR Associated Genes globally. This report on CRISPR And CRISPR Associated Genes provides the analysis on impact on Covid-19 on various business segments and country markets. The report also showcases market trends and forecast to 2027, factoring the impact of COVID-19 situation.

CRISPR And CRISPR Associated Genes Market report provide an in-depth understanding of the cutting-edge competitive analysis of the emerging market trends along with the drivers, restraints, and opportunities in the market to offer worthwhile insights and current scenario for making right decision. The report covers the prominent players in the market with detailed SWOT analysis, financial overview, and key developments of last three years. Moreover, the report also offers a 360 outlook of the market through the competitive landscape of the global industry player and helps the companies to garner CRISPR And CRISPR Associated Genes Market revenue by understanding the strategic growth approaches.

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Report provides industry analysis, important insights, and a competitive and useful advantage to the pursuers. The report analyzes different segments and offers the current and future prospects of each segment. Furthermore, this research report contains an in depth analysis of the top players with data such as product specification, company profiles and product picture, sales area, and base of manufacturing in the global CRISPR And CRISPR Associated Genes market. The impact on the supply and demand of the raw materials, due to the COVID-19 is also analyzed in the global CRISPR And CRISPR Associated Genes market.

Additionally, report consists of product life cycle, which discus about the current stage of product. Further, it adds manufacturing cost analysis as well as complete manufacturing process involved. Report also adds supply chain analysis to ensure complete data of market.

Objectives of CRISPR And CRISPR Associated Genes Market Report: To justifiably share in-depth info regarding the decisive elements impacting the increase of industry (growth capacity, chances, drivers and industry specific challenge and risks) To know the CRISPR And CRISPR Associated Genes Market by pinpointing its many sub segments To profile the important players and analyze their growth plans To endeavor the amount and value of the CRISPR And CRISPR Associated Genes Market sub-markets, depending on key regions (various vital states) To analyze the Global CRISPR And CRISPR Associated Genes Market concerning growth trends, prospects and also their participation in the entire sector To inspect and study the Global CRISPR And CRISPR Associated Genes Market size form the company, essential regions/countries, products and applications, background information and also predictions to 2027 Primary worldwide CRISPR And CRISPR Associated Genes Market manufacturing companies, to specify, clarify and analyze the product sales amount, value and market share, market rivalry landscape, SWOT analysis and development plans for the next coming years To examine competitive progress such as expansions, arrangements, new product launches and acquisitions on the market

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Follow is the chapters covered in CRISPR And CRISPR Associated Genes Market: Chapter 1 CRISPR And CRISPR Associated Genes Market Overview Chapter 2 COVID 19 Impact Chapter 3 CRISPR And CRISPR Associated Genes Segment by Types (Product World) Chapter 4 Global CRISPR And CRISPR Associated Genes Segment by Application Chapter 5 Global CRISPR And CRISPR Associated Genes Market by Regions (2015-2027) Chapter 6 Global CRISPR And CRISPR Associated Genes Market Competition by Manufacturers Chapter 7 Company (Top Players) Profiles and Key Data Chapter 8 Global CRISPR And CRISPR Associated Genes Revenue by Regions (2015-2020) Chapter 9 Global CRISPR And CRISPR Associated Genes Revenue by Types Chapter 10 Global CRISPR And CRISPR Associated Genes Market Analysis by Application Chapter 11 North America CRISPR And CRISPR Associated Genes Market Development Status and Outlook Chapter 12 Europe CRISPR And CRISPR Associated Genes Market Development Status and Outlook Chapter 13 Asia Pacific CRISPR And CRISPR Associated Genes Market Development Status and Outlook Chapter 14 South America CRISPR And CRISPR Associated Genes Market Development Status and Outlook Chapter 15 Middle East & Africa CRISPR And CRISPR Associated Genes Market Development Status and Outlook Chapter 16 CRISPR And CRISPR Associated Genes Manufacturing Cost Analysis Chapter 17 Marketing Strategy Analysis, Distributors/ Traders Chapter 18 Global CRISPR And CRISPR Associated Genes Market Forecast (2020-2027) Chapter 19 Research Findings and Conclusion Get detailed TOC for CRISPR And CRISPR Associated Genes Market Report @ https://cognitivemarketresearch.com/pharma-%26-healthcare/crispr-and-crispr-associated-genes-market-report#table_of_contents.

Customization of the Report: This report can be customized to meet the clients requirements. Please connect with our sales team, who will ensure that you get a report that suits your needs. You can also get in touch with our executives on to share your research requirements.nicolas.shaw@cognitivemarketresearch.com or call us on +1-312-376-8303.

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Global and Country Specific CRISPR And CRISPR Associated Genes Market Report 2020 Forecast, Opportunities and Strategies To 2027: COVID 19 Impact and...

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

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

Global Tooth Regeneration Market, By Regions

Market Dynamics

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

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

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

Global Tooth Regeneration Market Segment analysis

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

Global Tooth Regeneration Market Regional analysis

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

Key Developments

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

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

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

Global Tooth Regeneration Market, By Type

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

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

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

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

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

Major Table of Contents Report

Chapter One: Tooth Regeneration Market Overview

Chapter Two: Manufacturers Profiles

Chapter Three: Global Tooth Regeneration Market Competition, by Players

Chapter Four: Global Tooth Regeneration Market Size by Regions

Chapter Five: North America Tooth Regeneration Revenue by Countries

Chapter Six: Europe Tooth Regeneration Revenue by Countries

Chapter Seven: Asia-Pacific Tooth Regeneration Revenue by Countries

Chapter Eight: South America Tooth Regeneration Revenue by Countries

Chapter Nine: Middle East and Africa Revenue Tooth Regeneration by Countries

Chapter Ten: Global Tooth Regeneration Market Segment by Type

Chapter Eleven: Global Tooth Regeneration Market Segment by Application

Chapter Twelve: Global Tooth Regeneration Market Size Forecast (2019-2026)

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

Clinical Laboratory Services Market Data Highlighting Major Vendors, Promising Regions, Anticipated Growth Forecast To 2026 – 3rd Watch News

Data Bridge Market Research has recently added a concise research on the Clinical Laboratory Services Market to depict valuable insights related to significant market trends driving the industry. The report features analysis based on key opportunities and challenges confronted by market leaders while highlighting their competitive setting and corporate strategies for the estimated timeline. The development plans, market risks, opportunities and development threats are explained in detail. The CAGR value, technological development, new product launches and Industry competitive structure is elaborated.

Clinical laboratory services marketis expected to gain market growth in the forecast period of 2020 to 2027. Data Bridge Market Research analyses that the market is growing with a CAGR of 6.2% in the forecast period of 2020 to 2027 and expected to reach USD 217,941.33 million by 2027 from USD 134,692.52 million in 2019. Rising demand for early and accurate disease diagnosis is the factors for the market growth.

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Clinical laboratory services is playing significant role to enable doctors to make appropriate clinical and diagnostic decisions across various levels of health care services. Increasing demand for diagnostic tests is augmenting the market growth as they are used for clinical diagnoses tests.

The major players covered in the report are:-

Mayo Foundation for Medical Education and Research (MFMER), Laboratory Corporation of America Holding, Quest Diagnostics Incorporated, Spectra Laboratories (A Subsidiary of Fresenius Medical Care AG & Co. KGaA), DaVita Inc., Eurofins Scientific, UNILABS, SYNLAB International GmbH, MIRACA HOLDINGS Inc., Sonic Healthcare, ACM Global Laboratories, amedes Group, LifeLabs, Alere (A Subsidiary of Abbott), Charles River, Siemens Healthineers AG, BioReference Laboratories, Inc., NeoGenomics Laboratories, Inc., KingMed Diagnostics, Genomic Health, among other players domestic and global. Clinical laboratory services market share data is available for Global, North America, Europe, Asia-Pacific, Middle East and Africa and South America separately. DBMR analysts understand competitive strengths and provide competitive analysis for each competitor separately.

Many business expansion and developments are also initiated by the companies worldwide which are also accelerating the growth of global clinical laboratory services market.

For instance,

Partnership, joint ventures and other strategies enhances the company market share with increased coverage and presence. It also provides the benefit for organisation to improve their offering for Clinical Laboratory Services through expanded model range.

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Global Clinical Laboratory Services Market By Specialty (Clinical Chemistry Testing, Hematology Testing, Microbiology Testing, Immunology Testing, Drugs of Abuse Testing, Cytology Testing, Genetic Testing), Provider (Hospital-Based Laboratories, Independent & Reference Laboratories, Nursing and Physician Office-Based Laboratories), Application (Bioanalytical & Lab Chemistry Services, Drug Development Related Services, Drug Discovery Related Services, Toxicology Testing Services, Cell & Gene Therapy Related Services, Preclinical & Clinical Trial Related Services, Other Clinical Laboratory Services), Geography (North America, Europe, Asia-Pacific, South America, Middle East and Africa) Market Trends and Forecast to 2027

Rising demand of clinical laboratory services across the world is one of the prominent factors for increasing demand of clinical chemistry testing. For instance, yearly in the U.K., the usually citizen has 14 tests completed by a laboratory specialist. However in the U.S., laboratory testing is the only highest-volume medical activity and approximately 13,000 million tests are performed per year. Hence, this factor has led the patients to shift towards clinical chemistry testing because it offers a wide range of tests which are performed in the clinical laboratory testing. In the current scenario the technological advancements boost the patients reach to laboratory testing, which is becoming gradually more precise and affordable. For instance, point-of-care testing (POCT) is regularly applied in hospitals and other healthcare practices, so the patients not need to travel to the clinical laboratories for testing. The increasing use of point-of-care testing has reduced demand tests which are conventionally executed at industry laboratories.

Rising demand of early and accurate disease diagnosis across the globe is one of the prominent factors for an upsurge demand of clinical laboratory services. For instance, in 2018, World Health Organization projected that projected that an estimated 1.8 million new cases and almost 861,000 deaths occur due to colorectal cancer (CRC). This factor has increased the number of clinical laboratories around the globe as Delays in accessing cancer care are very common in the late-stage presentation, especially in lower vulnerable populations and resource settings.

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Table of Contents-Snapshot Executive Summary Chapter 1 Industry Overview Chapter 2 Industry Competition by Manufacturers Chapter 3 Industry Production Market Share by Regions Chapter 4 Industry Consumption by Regions Chapter 5 Industry Production, Revenue, Price Trend by Type Chapter 6 Industry Analysis by Applications Chapter 7 Company Profiles and Key Figures in Industry Business Chapter 8 Industry Manufacturing Cost Analysis Chapter 9 Marketing Channel, Distributors and Customers Chapter 10 Market Dynamics Chapter 11 Industry Forecast Chapter 12 Research Findings and Conclusion Chapter 13 Methodology and Data Source

Country Level Analysis, By Provider

North America dominates the clinical laboratory services market as the U.S. is leader in clinical laboratory services. In North America due to better advancement in products and services, this region is dominating the clinical laboratory services. North America accounts higher healthcare expenditure, especially in U.S. Asia-Pacific is growing with the highest CAGR due to increase in medical tourism as well as increase in population. Numbers of companies in emerging countries are increasing due to increase in demand for disease diagnosis in clinics, hospitals and other areas. Additionally, the increasing number of healthcare expenditure and increasing number of hospitals and clinical diagnostic laboratories in China and India upsurge demand of clinical laboratory services. The Asia-Pacific region is expected to grow with the highest growth rate in the forecast period of 2020 to 2027 because of increasing infectious diseases.

The country section of the report also provides individual market impacting factors and changes in regulation in the market domestically that impacts the current and future trends of the market. Data points such as new sales, replacement sales, country demographics, regulatory acts and import-export tariffs are some of the major pointers used to forecast the market scenario for individual countries. Also, presence and availability of global brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of sales channels are considered while providing forecast analysis of the country data.

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Huge Investment by laboratory for Clinical Laboratory Services and New Technology Penetration

Global clinical laboratory services market also provides you with detailed market analysis for every country growth in life science industry with clinical laboratory services demand impact of technological development in laboratory services and changes in regulatory scenarios with their support for the clinical laboratory services market. The data is available for historic period 2010 to 2018.

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Clinical Laboratory Services Market Data Highlighting Major Vendors, Promising Regions, Anticipated Growth Forecast To 2026 - 3rd Watch News

Stem Cell and Cancer Research Institute terminated by McMaster University – TheSpec.com

McMaster University is terminating a high-profile research institute that investigates novel stem cell and cancer therapies.

The loss of the multimillion dollar Stem Cell and Cancer Research Institute (SCC-RI) may extend to its prominent leader as questions remain about whether Mick Bhatia will stay in Hamilton. Two other researchers Kristin Hope and Karun Singh are already leaving for Toronto.

McMaster and Bhatia tell very different stories about how a university board of governors meeting on June 4 came to include the recommendation to end the nationally known institute.

My vision was to have an international presence and supremacy in stem cells, said Bhatia. McMaster, in the end, in my interpretation, really just didnt have the appetite to go in that direction.

The university claims SCC-RI has run its course because its researchers werent collaborating, which is the entire purpose of an institute.

They werent working together, said Jonathan Bramson vice-dean of research for the faculty of health sciences. We put people together because we think they will work together and achieve a situation where the sum is greater than the parts and that wasnt the case here.

Bhatia says he cant possibly compute that explanation, pointing out he has published at least one paper with every researcher at SCC-RI and the other researchers have done the same.

It doesnt make sense, he said. Its like saying the Raptors arent good at basketball.

In fact, it was collaboration that lured Bhatia to McMaster from California in 2006 in the first place. He was working toward leading a stem cell institute there when Dr. John Kelton, who was dean of the faculty of health sciences at the time, made Bhatia believe it would work better back home in Ontario.

I was completely enchanted of the idea that in Canada you could achieve that level of excellence and there was support to build something, he said. It was a great opportunity that I thought couldnt happen here in Canada and yet here it was in front of me.

The institute was set up with $10 million from Michael G. DeGroote and, over time, got another $15 million from David Braley and $24 million from the Boris family.

We were really starting from scratch, said Bhatia. There were no people working deeply in stem cell biology you had to recruit from outside because there is no pre-existing expertise, equipment or infrastructure.

At its height, SCC-RI had 13,000 square feet of state-of-the art facilities, 130 staff and millions in grants including $13 million from the Ontario Research Fund, roughly $10 million from the Canadian Foundation of Innovation and in the last fiscal year alone its scientists were awarded $3.28 million in research grants.

It had findings that were paradigm shifting for stem cell research, collaborated with biochemists which was a first for the field and took potential new cancer drugs into clinical trials.

John Kelton . was pretty visionary, said Bhatia. He was looking for areas to be truly excellent and his definition of excellence was very akin to mine ... It excited me that you could do this level of science and there was like-minded people thinking about that direction.

But at the 10-year-mark in 2016, Bhatia describes the beginning of a rift between his future vision of SCC-RI and that of McMaster. It was at the same time Kelton retired and was replaced by Dr. Paul OByrne.

We got to a point where I saw this as a Stage 1 achievement, whereas I think they were feeling this is where we needed to be and they were quite happy with it, said Bhatia. I thought we could do more.

About two years ago, funding ran out for two researchers Bhatia had recruited and trained over 10 years, and they ended up leaving McMaster. He also saw no way to recruit the senior scientists he felt he could now attract at the established institute.

By December 2019, Bhatia said he saw the writing on the wall and resigned as director of SCC-RI.

To some degree its understandable, said Bhatia. This type of science and at this level is very, very expensive. It requires an immense commitment There is a certain risk measure that comes with that.

In the wake of Bhatias resignation, McMaster spent about $8,000 on an external review which Bramson said concluded there was no collaboration.

Its a series of individuals who are operating independently, he said. Some of those individuals are quite successful which is great and they continue to operate independently but there was no value gained by having them work together.

Bramson said he doesnt know why they werent collaborating and the review didnt shed any light on that either.

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I cant tell you why people can or cannot work together, he said. Its their choice, they dont have to, youre not obliged to collaborate.

In fact, he says its not in a researchers nature to work together.

Scientists are mavericks, said Bramson. They are stallions, they are not trained to work together, theyre trained to work independently.

He also said this happens all the time about research institutes being terminated.

It didnt work out, I dont really see that as being a surprise, he said. Science is an experiment ... When you create an institute, you dont know how its going to shake out.

At some point between December and the board of governors meeting in June, two other principle investigators announced they were leaving.

People leave for their own reasons, said Bramson. Clearly, if they felt that they were gaining something from being part of the institute, they would have stayed.

Other principle investigators including Dr. Sheila Singh and Dr. Tobias Berg appear to be staying at McMaster and continuing their research independently.

The group was not the reason they were successful, said Bramson. Disbanding the group is not going to diminish that success. Theyre going to continue doing what theyre doing.

No principle investigators responded to The Spectators request for comment. Although Bhatia says the university made it clear to all that it was speaking on the institutes behalf. He was originally unable to speak himself but eventually got permission from McMaster.

For now, Bhatia is continuing on with his research here.

I love Canada, he said. I love McMaster.

But he added his priority is moving stem cell and cancer therapy science forward.

Well have to see how that unfolds, he said.

As for OByrnes decision to recommend terminating the institute, Bhatia says, It was the obvious decision.

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Stem Cell and Cancer Research Institute terminated by McMaster University - TheSpec.com

Autologous Stem Cell and Non-Stem Cell Based Therapies Market Detailed Analysis of Current Industry Figures with Forecasts Growth – 3rd Watch News

Data Bridge Market Research has recently published the Global research Report TitledAutologous Stem Cell and Non-Stem Cell Based Therapies Market. The study provides an overview of current statistics and future predictions of the Global Autologous Stem Cell and Non-Stem Cell Based Therapies Market.The study highlights a detailed assessment of the Market and displays market sizing trends by revenue & volume (if applicable), current growth factors, expert opinions, facts, and industry validated market development data.

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Takeda Pharmaceutical Company Limited, Cytori Therapeutics Inc., General Electric Spiegelberg GmbH & Co. KG ., Medtronic, Natus Medical Incorporated., Integra LifeSciences Corporation, RAUMEDIC AG, Abbott., Endotronix, Inc. among others.

Major Regions as Follows:

North America (USA, Canada and Mexico)

Europe (Germany, France, the United Kingdom, Netherlands, Russia , Italy and Rest of Europe)

Asia-Pacific (China, Japan, Australia, New Zealand, South Korea, India and Southeast Asia)

South America (Brazil, Argentina, Colombia, rest of countries etc.)

Middle East and Africa (Saudi Arabia, United Arab Emirates, Israel, Egypt, Nigeria and South Africa)

A complete value chain of the global Autologous Stem Cell and Non-Stem Cell Based Therapies market is presented in the research report. It is associated with the review of the downstream and upstream components of the Autologous Stem Cell and Non-Stem Cell Based Therapies Market. The market is bifurcated on the basis of the categories of products and customer application segments. The market analysis demonstrates the expansion of each segment of the global Autologous Stem Cell and Non-Stem Cell Based Therapies market. The research report assists the user in taking a decisive step that will be a milestone in developing and expanding their businesses in the global Autologous Stem Cell and Non-Stem Cell Based Therapies market.

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Part 01: Executive Summary

Part 02: Scope of the Report

Part 03: Research Methodology

Part 04: Market Landscape

Part 05: Pipeline Analysis

Pipeline Analysis

Part 06: Market Sizing

Market Definition

Market Sizing

Market Size And Forecast

Part 07: Five Forces Analysis

Bargaining Power Of Buyers

Bargaining Power Of Suppliers

Threat Of New Entrants

Threat Of Substitutes

Threat Of Rivalry

Market Condition

Part 08: Market Segmentation

Segmentation

Comparison

Market Opportunity

Part 09: Customer Landscape

Part 10: Regional Landscape

Part 11: Decision Framework

Part 12: Drivers and Challenges

Market Drivers

Market Challenges

Part 13: Market Trends

Part 14: Vendor Landscape

Part 15: Vendor Analysis

Vendors Covered

Vendor Classification

Market Positioning Of Vendors

Part 16: Appendix

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Autologous Stem Cell and Non-Stem Cell Based Therapies Market Detailed Analysis of Current Industry Figures with Forecasts Growth - 3rd Watch News

3D Cell Culture Market Size, Global Analytical Overview, Growth Factors, Technologies, Trends and Forecast To 2025 – 3rd Watch News

3D cell culture is a highly regulated environment, where cells are provided with the optimum conditions to replicate and migrate within different habitats outside living organisms. 3D cell culture harbors tissue organization and cell differentiation that may not be viable in 2D culture systems. 3D cell culture offers a greater degree of cell cohesion and tissue divergence, explaining their rising popularity in early drug discovery and other kinds of R&D activity. Researchers deploy this technique to fabricate physiologically similar cell cultures that assist new drug development. In addition, the pervasive need to raise efficiency in pharmaceutical R&D encourages the growth of the 3D cell culture market.

3D cell culture is witnessing a golden era in the healthcare segment on account of its versatility in cancer research, regenerative medicine, and in-vitro environments. The ability of 3D cell culture to strengthen tissue organization and maturation, cell differentiation, and organogenesis has made it particularly useful. 3D cell culture has begun to substitute animal prototypes in clinical testing environments, as they are relatively similar to in-vivo cells. There has been a marked adoption of 3D cell culture in hospitals, biotech companies, tissue regeneration, regenerative medicine, and diagnostic centers. There is constant R&D to deliver better options for 3D cell cultures in order to conduct additional research or gain previously unknown knowledge.

The 3D cell culture market can be classified on the basis of region, product type, application, and end user. By product type, the 3D cell culture market is further divided into scaffold free 3D cell culture, scaffold-based 3D cell culture, 3D bioreactors, 3D petri dishes, 3D bioprinting, and magnetic levitation. When it comes to application, the 3D cell culture market is subdivided into cancer and stem cell research, drug discovery and toxicology, and tissue engineering & regenerative medicine. There are two main end users in the 3D cell culture market research labs & institutes and pharmaceutical & biotech companies.

Traditionally, drug discovery was carried out via animal models. However, the exponential growth of drugs synthesized or discovered in the last twenty years has resulted in high-throughput screening. Drug discovery is quite a time-intensive process, and there are ethical concerns to deal with when it comes to animal testing. Thus, there has been a push towards alternative models for drug delivery and drug testing. A key application of 3D cell culture when it comes to drug discovery is organ-on-chips. This new technology is being exploited by cancer drug manufacturers to improve the risk-benefit balance by targeting a specific receptor, defined biomechanics, or a cell type. The recent trend in therapeutic cancer research should fuel the demand for 3D cell cultures. A number of novel cancer therapies are likely to gain market approval, which should fuel the 3D cell culture market.

North America is the largest regional contributor in the 3D cell culture market with the US accounting for a major portion. The US has a well-developed research infrastructure, leading to a number of technological advancements in the nation. American corporations have filed a number of patents in the 3D cell culture market, both in their home market and in APAC. There have been large-scale international collaborations between the US, UK, and the Netherlands, with the objective of growing 1000 new cell lines for scientists to carefully assess. Such collaborations should use state-of-the-art technologies such as organoids, along with 3D culture cells that have been programmed to grow infinitely.

TableofContentChapter 1IndustrialChainOverview Chapter 2GlobalProduction&ConsumptionbyGeography Chapter 3MajorManufacturersIntroduction Chapter 4MarketCompetitionPattern Chapter 5ProductTypeSegment Chapter 6End-UseSegment Chapter 7MarketForecast&Trend Chapter 8Price&Channel Chapter 9MarketDrivers&InvestmentEnvironment Chapter 10ResearchConclusion

KEY QUESTIONS ANSWERED IN THE REPORT

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3D Cell Culture Market Size, Global Analytical Overview, Growth Factors, Technologies, Trends and Forecast To 2025 - 3rd Watch News

Impacts of the COVID-19-Mesenchymal Stem Cells Market Size Current and Future Industry Trends, 2020-2028 – 3rd Watch News

A recent report published by QMI on mesenchymal stem cells market is a detailed assessment of the most important market dynamics. After carrying out a thorough research of mesenchymal stem cells market historical as well as current growth parameters, business expectations for growth are obtained with utmost precision. The study identifies specific and important factors affecting the market for mesenchymal stem cells during the forecast period. It can enable manufacturers of mesenchymal stem cells to change their production and marketing strategies in order to envisage maximum growth.

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According to the report, the mesenchymal stem cells market has been segmented by source (bone marrow, umbilical cord blood, peripheral blood, lung tissue, synovial tissues, amniotic fluids, adipose tissues), by application (injuries, drug discovery, cardiovascular infraction, others). Insights about the regional distribution of market: The market has been segmented in major regions to understand the global development and demand patterns of this market.

For the mesenchymal stem cells market, the segments by region are North America, Asia Pacific, Western Europe, Eastern Europe, Middle East, and Rest of the World. During the forecast period, North America, Asia Pacific and Western Europe are expected to be major regions on the mesenchymal stem cells market.

North America and Western Europe have been one of the key regions as they have an established healthcare infrastructure for product innovations and early adaptations. This is estimated to drive demand for the mesenchymal stem cells market in these regions. In addition to this, some of the major companies operating in this market are headquartered in these regions.

Asia Pacific is estimated to register a high CAGR mesenchymal stem cells market. The APAC region has witnessed strategic investments by global companies to cater to the growing demand for healthcare solutions in recent years. The Middle East and Rest of the World are estimated to be emerging regions for the mesenchymal stem cells market.

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Market Players Cell Applications, Inc., Cyagen Biosciences Inc. Axol Bioscience Ltd., Cytori Therapeutics Inc., Stem Cell Technologies Inc., Celprogen, Inc.

Reasons to Buy This Report: o It provides niche insights for a decision about every possible segment helping in the strategic decision-making process. o Market size estimation of the mesenchymal stem cells market on a regional and global basis.

o A unique research design for market size estimation and forecast. o Identification of major companies operating in the market with related developments o Exhaustive scope to cover all the possible segments helping every stakeholder in the mesenchymal stem cells market.

Market Segmentation: By Source: o Bone Marrow o Umbilical Cord Blood o Peripheral Blood o Lung Tissue o Synovial Tissues o Amniotic Fluids o Adipose Tissues

By Application: o Injuries o Drug Discovery o Cardiovascular Infraction o Others

By Region: o North America o North America, by Country ? US ? Canada ? Mexico o North America, by Source o North America, by Application

o Western Europe o Western Europe, by Country ? Germany ? UK ? France ? Italy ? Spain ? The Netherlands ? Rest of Western Europe o Western Europe, by Source o Western Europe, by Application

o Asia Pacific o Asia Pacific, by Country ? China ? India ? Japan ? South Korea ? Australia ? Indonesia ? Rest of Asia Pacific o Asia Pacific, by Source o Asia Pacific, by Application

o Eastern Europe o Eastern Europe, by Country ? Russia ? Turkey ? Rest of Eastern Europe o Eastern Europe, by Source o Eastern Europe, by Application

o Middle East o Middle East, by Country ? UAE ? Saudi Arabia ? Qatar ? Iran ? Rest of Middle East o Middle East, by Source o Middle East, by Application o Rest of the World o Rest of the World, by Country ? South America ? Africa o Rest of the World, by Source o Rest of the World, by Application

Years Covered in the Study: Historic Year: 2016-2017 Base Year: 2018 Estimated Year: 2019 Forecast Year: 2028

Objectives of this report: o To estimate the market size for mesenchymal stem cells market on a regional and global basis. o To identify major segments in mesenchymal stem cells market and evaluate their market shares and demand.

o To provide a competitive scenario for the mesenchymal stem cells market with major developments observed by key companies in the historic years. o To evaluate key factors governing the dynamics of mesenchymal stem cells market with their potential gravity during the forecast period. Customization: This study is customized to meet your specific requirements:

o By Segment o By Sub-segment o By Region/Country o Product Specific Competitive Analysis

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Impacts of the COVID-19-Mesenchymal Stem Cells Market Size Current and Future Industry Trends, 2020-2028 - 3rd Watch News

Stem Cell Banking Market Size, Analysis, Trends and Segmented Data by Top Companies and Opportunities 2020-2027 – Apsters News

China Cord Blood Corporation

The research report is broken down into chapters, which are introduced by the executive summary. Its the introductory part of the chapter, which includes details about global market figures, both historical and estimates. The executive summary also provides a brief about the segments and the reasons for the progress or decline during the forecast period. The insightful research report on the global Stem Cell Banking market includes Porters five forces analysis and SWOT analysis to understand the factors impacting consumer and supplier behavior.

The scope of the Report:

The report segments the global Stem Cell Banking market on the basis of application, type, service, technology, and region. Each chapter under this segmentation allows readers to grasp the nitty-gritty of the market. A magnified look at the segment-based analysis is aimed at giving the readers a closer look at the opportunities and threats in the market. It also addresses political scenarios that are expected to impact the market in both small and big ways. The report on the global Stem Cell Banking market examines changing regulatory scenarios to make accurate projections about potential investments. It also evaluates the risk for new entrants and the intensity of the competitive rivalry.

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