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Category Archives: Biotechnology
Does ZIOPHARM Oncology Inc. (ZIOP) Stock Beat its Rivals in Biotechnology? – InvestorsObserver
Posted: July 4, 2020 at 5:41 am
ZIOPHARM Oncology Inc. (ZIOP) is around the middle of the Biotechnology industry according to InvestorsObserver. ZIOP received an overall rating of 53, which means that it scores higher than 53 percent of all stocks. ZIOPHARM Oncology Inc. also achieved a score of 42 in the Biotechnology industry, putting it above 42 percent of Biotechnology stocks. Biotechnology is ranked 11 out of the 148 industries.
Analyzing stocks can be hard. There are tons of numbers and ratios, and it can be hard to remember what they all mean and what counts as good for a given value. InvestorsObserver ranks stocks on eight different metrics. We percentile rank most of our scores to make it easy for investors to understand. A score of 53 means the stock is more attractive than 53 percent of stocks.
These rankings allows you to easily compare stocks and view what the strengths and weaknesses are of a given company. This lets you find the stocks with the best short and long term growth prospects in a matter of seconds. The combined score incorporates technical and fundamental analysis in order to give a comprehensive overview of a stocks performance. Investors who then want to focus on analysts rankings or valuations are able to see the separate scores for each section.
ZIOPHARM Oncology Inc. (ZIOP) stock has fallen -0.93% while the S&P 500 is up 0.1% as of 10:32 AM on Tuesday, Jun 30. ZIOP is down -$0.03 from the previous closing price of $3.21 on volume of 262,479 shares. Over the past year the S&P 500 is up 3.11% while ZIOP is down -42.29%. ZIOP lost -$0.70 per share the over the last 12 months.
To screen for more stocks like ZIOP click here.
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African farmers yearn for biotechnology in the face of climate change – Alliance for Science
Posted: June 20, 2020 at 6:46 pm
Southern Africa is on the receiving end of the devastating impact of climate change, driving millions into hunger.
A record 45 million people mostly women and children in the 16-nation Southern African Development Community are gravely food insecure following repeated drought, widespread flooding and economic disarray, according to the WFP.
Countries like Zambia have been the hardest hit, with 2.3 million people affected as a result of the drought experienced during the 2018/19 growing season. Recently, some parts of the country experienced extensive flooding, which submerged agricultural land.
The magnitude of the problem in this part of the world has reached unprecedented levels, creating a threat to peace, security and stability. At the centre of this catastrophe are the small-scale farmers.
Small-scale farmers in this part of the world are critical because they grow food for household consumption, as well generate income for their local communities.
It is against this backdrop that agricultural biotechnology is gaining support from researchers and small-scale farmers who are struggling to recover from floods and droughts. The most significant advantages of genetically modified (GM) crops to small-scale farmers include environmental protection,boosting food production andsustaining rural livelihoods.
In a telephone interview, Sunday Chileya, a smal-lscale farmer based in the northern part of Zambia, expressed worry over food security as a result of the floods that have wiped out his entire field.
I dont know how I am going to feed my family because everything that I planted has gone, Chileya said.
Chileya, who has some basic knowledge of agricultural biotechnology, said the adoption of the technology was the only solution, owing to recurring floods and droughts that have led to crop failure.
I have an idea of what agricultural biotechnology is and the benefits, so why not promote it to help farmers like me? he asked.
Chileya pointed out that there is need to promote the adoption of the technology if small-scale farmers like him are to continue surviving
The climate keeps changing and so should our ways of farming so that we can survive the effects of climate change, Chileya said.
Experts such as Dr. Kalaluka Munyinda, a University of Zambia (UNZA) lecturer and researcher, say agricultural biotechnology is a significant technology that will help small-scale farmers who have been adversely affected by climate change.
Agricultural biotechnology is safe, he said. We are now experiencing extreme events when it comes to the weather and we can use this technology to develop crop varieties that will withstand any weather pattern.
In order to adapt to and mitigate the devastating impact of climate change, there is a need to encourage the use of agricultural biotechnology, Munyinda said.
We are now experiencing situations where pests and diseases are appearing whether its warm or cold and they are spreading rapidly, Munyinda said.
He emphasized that agricultural biotechnology has significant advantages, contrary to the fears that have been created around the technology.
You see as result of using this technology the use of pesticides harmful to our environment is reduced, Munyinda said, noting that other biotech crops will reduce the use of nitrogen fertilizers that contribute to a rise in greenhouse gases.
He reiterated that small-scale farmers are on the receiving hand of climate change.
Small-scale farmers feed us, he said, adding that 90 percent of the maize we consume is grown by small-scale farmers. So if they get affected we wont eat.
He said the Department of Crop Science at the University of Zambia has been working on maize, finger millet, cowpea and beans using biotechnology and he is hopeful that these will benefit small-scale farmers.
Benedict Tembo, an environmental reporter and editor at the Zambia Daily Mail, said agricultural biotechnology has benefits, contrary to the conspiracies peddled by certain groups with unknown agendas.
Fears that agricultural biotechnology is harmful are totally unfounded, he said. Right now, our region is facing the brunt of climate change and there is need to utilize technology that will help our farmers.
Tembo pointed out that Zambia and some other African countries are missing out on an opportunity to introduce pest-resistant Bt cotton, for example, to fight the pests and diseases that are prevalent in Zambia and other countries across the continent.
Agricultural biotechnology increases productivity, which means small-scale farmers will be able to take care of their families and strengthen their financial capacity, he said.
Tembocalled on journalists, who are on the frontlines in disseminating information to people, to report accurately on the benefits of agricultural biotechnology.
An enlightened journalist is an asset to society, which looks up to him/her for the provision of quality, accurate and timely information on the demystification of myths around biotechnology, he said.
Image: Shutterstock
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Nanoparticles in Biotechnology and Pharmaceuticals Market 2020 Key Players, Share, Trend, Segmentation and Forecast to 2026 – Cole of Duty
Posted: June 20, 2020 at 6:46 pm
New Jersey, United States,- The report is a must-have for business strategists, participants, consultants, researchers, investors, entrepreneurs, and other interested parties associated with the Nanoparticles in Biotechnology and Pharmaceuticals Market. It is also a highly useful resource for those looking to foray into the Nanoparticles in Biotechnology and Pharmaceuticals market. Besides Porters Five Forces and SWOT analysis, it offers detailed value chain assessment, comprehensive study on market dynamics including drivers, restraints, and opportunities, recent trends, and industry performance analysis. Furthermore, it digs deep into critical aspects of key subjects such as market competition, regional growth, and market segmentation so that readers could gain sound understanding of the Nanoparticles in Biotechnology and Pharmaceuticals market.
The research study is a brilliant account of macroeconomic and microeconomic factors influencing the growth of the Nanoparticles in Biotechnology and Pharmaceuticals market. This will help market players to make appropriate changes in their approach toward attaining growth and sustaining their position in the industry. The Nanoparticles in Biotechnology and Pharmaceuticals market is segmented as per type of product, application, and geography. Each segment is evaluated in great detail so that players can focus on high-growth areas of the Nanoparticles in Biotechnology and Pharmaceuticals market and increase their sales growth. Even the competitive landscape is shed light upon for players to build powerful strategies and give a tough competition to other participants in the Nanoparticles in Biotechnology and Pharmaceuticals market.
The competitive analysis included in the report helps readers to become aware of unique characteristics of the vendor landscape and crucial factors impacting the market competition. It is a very important tool that players need to have in their arsenal for cementing a position of strength in the Nanoparticles in Biotechnology and Pharmaceuticals market. Using this report, players can use effective business tactics to attract customers and improve their growth in the Nanoparticles in Biotechnology and Pharmaceuticals market. The study provides significant details about the competitive landscape and allows players to prepare for future challenges beforehand.
Nanoparticles in Biotechnology and Pharmaceuticals Market Segmentation
This market has been divided into types, applications and regions. The growth of each segment provides a precise calculation and forecast of sales by type and application, in terms of volume and value for the period between 2020 and 2026. This analysis can help you develop your business by targeting qualified niche markets. . Market share data are available at global and regional levels. The regions covered by the report are North America, Europe, Asia-Pacific, the Middle East and Africa and Latin America. Research analysts understand competitive forces and provide competitive analysis for each competitor separately.
Nanoparticles in Biotechnology and Pharmaceuticals Market by Type:
YYYY
Nanoparticles in Biotechnology and Pharmaceuticals Market by Application:
ZZZZ
Nanoparticles in Biotechnology and Pharmaceuticals Market by Region:
North America (The USA, Canada, and Mexico)Europe (Germany, France, the UK, and Rest of Europe)Asia Pacific (China, Japan, India, and Rest of Asia Pacific)Latin America (Brazil and Rest of Latin America.)Middle East &Africa (Saudi Arabia, the UAE, South Africa, and Rest of Middle East & Africa)
The report answers important questions that companies may have when operating in the Nanoparticles in Biotechnology and Pharmaceuticals market. Some of the questions are given below:
What will be the size of the Nanoparticles in Biotechnology and Pharmaceuticals market in 2026?
What is the current CAGR of the Nanoparticles in Biotechnology and Pharmaceuticals market?
What products have the highest growth rates?
Which application is projected to gain a lions share of the Nanoparticles in Biotechnology and Pharmaceuticals market?
Which region is foretold to create the most number of opportunities in the Nanoparticles in Biotechnology and Pharmaceuticals market?
Which are the top players currently operating in the Nanoparticles in Biotechnology and Pharmaceuticals market?
How will the market situation change over the next few years?
What are the common business tactics adopted by players?
What is the growth outlook of the Nanoparticles in Biotechnology and Pharmaceuticals market?
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Apart from hottest technological advances in the Nanoparticles in Biotechnology and Pharmaceuticals market, it brings to light the future plans of dominant players in the industry
Table of Contents
Market Overview: This section comes under executive summary and is divided into four sub-sections. It basically introduces the Nanoparticles in Biotechnology and Pharmaceuticals market while focusing on market size by revenue and production, market segments by type, application, and region, and product scope.
Competition by Manufacturers: It includes five sub-sections, viz. market competitive situation and trends, manufacturers products, areas served, and production sites, average price by manufacturers, revenue share by manufacturers, and production share by manufacturers.
Market Share by Region: It provides regional market shares by production and revenue besides giving details about gross margin, price, and other factors related to the growth of regional markets studied in the report. The review period considered here is 2015-2019.
Company Profiles: Each player is assessed for its market growth in terms of different factors such as markets served, gross margin, price, revenue, production, product specification, and areas served.
Manufacturing Cost Analysis: It is sub-divided into four chapters, viz. industrial chain analysis, manufacturing process analysis, manufacturing cost structure, and key raw materials analysis.
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Agricultural Biotechnology Market Analysis and In-depth Research on Forecast 2018-2025 – 3rd Watch News
Posted: June 20, 2020 at 6:46 pm
Global Agricultural Biotechnology Market Research Report 20182025 is a historical overview and in-depth study on the current & future market of the Agricultural Biotechnology industry. The report represents a basic overview of the market status, competitor segment with a basic introduction of key vendors, top regions, product types and end industries. This report gives a historical overview of the market trends, growth, revenue, capacity, cost structure, and key drivers analysis.
The report is an exhaustive analysis of this market across the world. It offers an overview of the market including its definition, applications, key drivers, key market players, key segments, and manufacturing technology. In addition, the study presents statistical data on the status of the market and hence is a valuable source of guidance for companies and individuals interested in the industry. Additionally, detailed insights on the company profile, product specifications, capacity, production value, and market shares for key vendors are presented in the report.
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The total market is further segmented based on company, country, and application/type for competitive landscape analysis. On the contrary, information on industry chain structure, emerging applications, and technological developments in the market makes the report a must-read document.
The report reveals detailed information about the global key players as well as some small players of the Agricultural Biotechnology sector.
Target Audience of the Global Agricultural Biotechnology Market in Market Study:Key Consulting Companies & AdvisorsLarge, medium-sized, and small enterprisesVenture capitalistsValue-Added Resellers (VARs)Third-party knowledge providersInvestment bankersInvestors
These insights help determine the strength of competition and take the necessary steps to obtain a leading position in the Agricultural Biotechnology industry.
Additionally, the research provides a detailed analysis of the key segments of the market with the help of charts and tables. An overview of each market segment such as type, application, and region are also provided in the report. These insights help in understanding the global trends in the Agricultural Biotechnology industry and form strategies to be implemented in the future.
The regional analysis of global Agricultural Biotechnology market is considered for the key regions such as Asia Pacific, North America, Europe, Latin America and Rest of the World. North America is the leading/significant region across the world in terms of market share owing to the high disposable income coupled with rising trend of interior designing in the region. Whereas, Asia-Pacific is also anticipated to exhibit highest growth rate / CAGR over the forecast period 20182025
Our analysis involves the study of the market taking into consideration the impact of the COVID-19 pandemic. Please get in touch with us to get your hands on exhaustive coverage of the impact of the current situation on the market. Our expert team of analysts will provide as per report customized to your requirement. For more connect with us at [emailprotected] or call toll free: +1-800-910-6452
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Key Market Segments
The key players profiled in this report includeBayer AG, Dowdupont Inc., Syngenta AG, BASF SE, Adama Agricultural Solutions Ltd., Certis USA LLC, Evogene Ltd., KWS SAAT SE, Monsanto Company, Vilmorin & CIE, and so on.
The objective of the study is to define market sizes of different segments & countries in recent years and to forecast the values to the coming eight years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within each of the regions and countries involved in the study.
Furthermore, the report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, the report shall also incorporate available opportunities in micro markets for stakeholders to invest along with the detailed analysis of competitive landscape and product offerings of key players.
The study clearly reveals that the Agricultural Biotechnology industry has attained remarkable growth since 20182025. This research report is prepared based on an in-depth analysis of the market by experts. As a final point, stakeholders, investors, product managers, marketing executives, and other professionals seeking unbiased data on supply, demand, and future forecasts would find the report valuable.
Table of Contents
Chapter 1. Global Agricultural Biotechnology Market Definition and ScopeChapter 2. Research MethodologyChapter 3. Executive SummaryChapter 4. Global Agricultural Biotechnology Market DynamicsChapter 5. Agricultural Biotechnology Market, by ComponentChapter 6. Global Agricultural Biotechnology Market, by ServicesChapter 7. Global Agricultural Biotechnology Market, by Organization SizeChapter 8. Agricultural Biotechnology Market, by VerticalChapter 9. Agricultural Biotechnology Market, by Regional AnalysisChapter 10. Competitive Intelligence
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Food Biotechnology Market to Witness Growth Acceleration During 2020-2026 – Cole of Duty
Posted: June 20, 2020 at 6:46 pm
Global Food Delivery Logistic Market Report provides complete industry analysis, market outlook, size, growth, opportunities and forecast 2026. This report will assist in analyzing the current and future business trends, sales and revenue forecast. It provides top manufacturers information along with Manufacturing Cost Analysis, Industrial Chain, Sourcing Strategy and growth.
The new Food Delivery Logistic market research report provides an in-depth analysis of this business space, thereby summarizing all the segments of the industry. The report offers crucial insights regarding the total earnings of major players operating in the industry. Furthermore, vital information pertaining to the regional terrain and competitive landscape are presented in the report.
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Emphasizing on the major aspects of the Food Delivery Logistic market report:
Comprehensive assessment of the geographical scenario of Food Delivery Logistic market:
Highlighting the competitive terrain of Food Delivery Logistic market:
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Other takeaways from the Food Delivery Logistic market research report:
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Some of the Major Highlights of TOC covers:
Chapter 1: Methodology & Scope
Definition and forecast parameters
Methodology and forecast parameters
Data Sources
Chapter 2: Executive Summary
Business trends
Regional trends
Product trends
End-use trends
Chapter 3: Food Delivery Logistic Industry Insights
Industry segmentation
Industry landscape
Vendor matrix
Technological and innovation landscape
Chapter 4: Food Delivery Logistic Market, By Region
Chapter 5: Company Profile
Business Overview
Financial Data
Product Landscape
Strategic Outlook
SWOT Analysis
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Assistant Professor in Biotechnology job with DUBLIN CITY UNIVERSITY | 210110 – Times Higher Education (THE)
Posted: June 20, 2020 at 6:46 pm
School of Biotechnology
Dublin City University
Dublin City University http://www.dcu.ie is a research-intensive, globally-engaged, dynamic institution that is distinguished both by the quality and impact of its graduates and by its focus on the translation of knowledge into societal and economic benefit. Through its mission to transform lives and societies through education, research and innovation, DCU acts as an agent of social, cultural and economic progress. DCU is Irelands fastest growing university, and now hosts more than 17,000 students across its three academic campuses: DCU Glasnevin Campus, DCU St Patricks Campus and DCU All Hallows campus.
School of Biotechnology
The School of Biotechnology is the academic unit leading life science and biotechnology education and research within the Faculty of Science & Health at Dublin City University (DCU). The school delivers both undergraduate B.Sc and taught M.Sc. postgraduate degree programmes in addition to the education and training of research M.Sc. and Ph.D students under its structured Ph.D programme BioTranslate. It is an active centre of basic, applied and multi-disciplinary research, supporting a defined cluster of intersecting research themes which link closely with the Schools teaching programmes. The School and associated research centres (including the National Institute for Cellular Biotechnology (NICB nicb.ie) and the Water Institute (dcuwater.ie)) offer core facilities and technical support in the areas of Molecular Biology, Bioinformatics, Cell Characterisation, Proteomics, Bioprocessing, Sensor, Analytical Separations and membrane technology. Research projects fall into the general categories of Life Science or Industry-associated with activity in the domains of Health/Ageing/Disease, Biodesign, Environmental Science and Precision Health. They bring together a critical mass of multidisciplinary researchers that are strategically positioned to pursue national and international opportunities for research and innovation. The excellence of the schools research is reflected by funding success from many national and international sources (including direct funds from industry) and the quality of its published and other outputs.
Role Profile
The School is seeking to recruit an Assistant Professor in Biotechnology. The post holder will be expected to contribute to teaching, curriculum development, research, and administrative activities in the School, across all levels. The post holder will also be expected to contribute directly to degree programmes through research-led teaching, student mentoring and supervision of student projects.
Duties and Responsibilities
The duties and responsibilities of this post falls within DCUs Academic Development and Promotions Framework and the principles of the Schools Academic Workload Model with activity across the domains of teaching and learning, research and scholarship, and service and contribution. They are in line with DCUs strategic plan Talent, Discovery and Transformation: 2017-2022.
Teaching and Learning
This post will support the delivery of the Education mission of the University; specifically the delivery of the Schools two core undergraduate programmes, namely the B.Sc in Biotechnology and B.Sc in Genetics & Cell Biology and its substantial contribution to the B.Sc in Analytical Science and B.Sc. in Environmental Science & Technology, in addition to its two taught Masters programmes: M.Sc in Bioprocess Engineering and M.Sc in Diagnostics & Precision Medicine plus our service teaching to support other degree programmes. The School is committed to a flexible mode of module delivery across all of its programmes and the successful candidate(s) will be expected to develop on-line components to their assigned teaching modules. Teaching duties also include the design, supervision and delivery of undergraduate/postgraduate student projects.
Research and Scholarship
In addition to a demonstrable teaching ability, the post holder will be expected to have an independent research profile and the ability to secure grant awards from national/international agencies and/or industry to fund their research activities which would include the recruitment of both postgraduate students and postdoctoral research fellows; contribute to existing School/Centre and DCU-wide research initiatives and expand their network within DCU, nationally and internationally.
Service and Contribution to University
The post holder will be required to undertake administrative roles related to the activities of the School of Biotechnology and the Faculty of Science & Health as assigned by the Head of School. These roles may include but are not limited to the following: Programme Chair; School Executive member; Convenor roles (teaching, research or international), Faculty Management board, Marketing, Safety Committee, Open Days, Conference organisation, Work Placement Tutoring. Participation in courses provided by the University designed to develop skills in such areas as teaching, management and safety will also be expected.
Candidate Requirements
Mandatory Training
The post holder will be required to undertake the following mandatory compliance training: GDPR, Orientation, and Compliance.
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Assistant Professor in Biotechnology job with DUBLIN CITY UNIVERSITY | 210110 - Times Higher Education (THE)
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Media, Sera And Reagents In Biotechnology Market Insights on Trends, Application, Types and Users Analysis COVID-19 2023 – 3rd Watch News
Posted: June 20, 2020 at 6:46 pm
The global market formedia, sera and reagents in biotechnologyshould reach $5.5 billion by 2023 from $4.1 billion in 2018 at a compound annual growth rate (CAGR) of 6.0% for the period 2018-2023.
Report Scope:
Cell culture products are used from the point of drug discovery through the process of drug development. Cell culture products are used mainly for research purposes, for production of biopharmaceuticals, and for educational purposes. This report focuses on the global market for media, sera and reagent products used in the cell culture industry and discusses the applications in various arenas of biomedical and life science research. The report addresses the whole market for cell culture including the research segment, production segment, contract segment, and others segment, which includes the in vitro diagnostics and educational sector.
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The scope of the study is worldwide. Current market dynamics, market drivers, restraints, trends, regulatory issues, and strategic developments are discussed in the report. In the regional analysis, the report identifies and analyzes market size and forecasts for the U.S., Europe and emerging markets. The emerging markets for media, sera and reagents in biotechnology include India, China, Japan, Korea, Taiwan, Canada, Africa, Australia, New Zealand, and other countries.
Also included in the report are relevant patent analyses and comprehensive profiles of companies that lead the market for media, sera and reagents in the cell culture industry. A few prominent players in this industry are Thermo Fisher Scientific, Merck KGaA, GE Healthcare Life Sciences, BD Biosciences, and Corning Inc.
Report Includes:
An overview of the global markets and technologies for media, sera and reagents used in biotechnology. Analyses of global market trends, with data from 2015 and 2016, and projections of compound annual growth rates (CAGRs) through 2021. Information on different types of cell cultures and products from cell culture technology as well as the advantages and disadvantages for the use of various types of media. Detailed analysis of the cell culture industrys structure. Discussion covering the applications of cell culture technology with an emphasis on usage in the research, production, and contract segments. Profiles of major players in the media, sera, and reagents industry.
Report Summary
In the past decade, there has been a significant shift in the nature of the products being manufactured and sold by biotechnology companies. Innovative products are coming to market that help to increase the growth and differentiation of cells in in vitro conditions. Launch of innovative cell culture products and growing demand for biopharmaceuticals reflect increased use of cell culture products.
The global biopharmaceutical portfolio of today is a sign of increased therapeutic competition and expansion in a number of targeted therapies. These trends have given rise to highly specific manufacturing requirements, including cell culture media, sera and reagents. The fundamental shift in the pharmaceutical industry from small-molecule or chemical-based drugs towards biotherapeutics and a focus on consistently improving the efficiency and effectiveness of production are spurring an evolution in cell culture technology that is needed to support advanced biopharmaceutical manufacturing. Development of cell culture products, especially serum-free and animal-component-free media, has improved manufacturing processes by conferring many advantages.
The global market for cell culture products is driven by increased demand for biologics including biosimilars; by use of cell-based methods for vaccine production; and by use of cell lines for new drug developments. Ever-increasing demand for biopharmaceuticals has forced manufacturers to move toward contract manufacturing and research organizations, which will help the cell culture market to grow further during the forecast period of 2016 to 2021.
This report analyzes the market under three main segments: sera, media and reagents. All three categories are witnessing growth because of increased demand for biopharmaceuticals and research activities in the field of regenerative medicine. Use of mammalian cells to increase capacity, scalability and flexibility in vaccine production is an additional factor for the growth of the cell culture product market. Major companies operating in the cell culture market include BD Biosciences, Lonza Group, Sigma-Aldrich Corp. (a part of Merck KGaA), and Thermo Fisher Scientific Inc.
Innovation in biotechnology is interrelated with research and development (R&D) discoveries. As the biopharmaceutical portfolio continues to evolve, the manufacturing technologies and superior cell culture products offered by companies such as Sartorius Stedim Biotech SA, EMD Millipore (a part of Merck KGaA), and others will continue to advance in the coming years.
In 2015, the U.S. was the largest market for cell culture products, accounting for about 42.1% of the global market. The U.S. has one of the most supportive environments for the development and commercialization of new drugs, as it is the worlds largest free-pricing market for pharmaceuticals and has high per capita incomes. A large elderly population and high rates of chronic diseases and affordability are other factors that make the U.S. suitable for the development and consumption of drugs. Support from the government for medical research, an unparalleled scientific and research base, and an innovative biotechnology sector are the major factors that make the U.S. market the preferred home for growth in the healthcare industry, which also includes biotechnology.
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How Gene Therapy Market: Impact Of COVID-19 On Biotechnology Industry Sangamo Therapeutics, Vineti, Solid Biosciences – Medic Insider
Posted: June 20, 2020 at 6:46 pm
Latest market study on Global Gene Therapy Market Forecast to 2027 Covid-19 Impact and Global Analysis By Cell Type (Somatic Gene Therapy, Germline Gene Therapy); By Application (Genetic Disorder, Cancer, Neurological Disorder, and Others).The research report provides deep insights into the global market revenue, parent market trends, macro-economic indicators, and governing factors, along with market attractiveness per market segment. The report provides an overview of the growth rate of the Gene Therapy market during the forecast period, i.e., 20202027. Most importantly, the report further identifies the qualitative impact of various market factors on market segments and geographies. The research segments the market on the basis of product type, application, technology, and region. To offer more clarity regarding the industry, the report takes a closer look at the current status of various factors including but not limited to supply chain management, niche markets, distribution channel, trade, supply, and demand and production capability across different countries.
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Gene therapy is the introduction of DNA into a patient to treat a genetic disease or a disorder. The newly inserted DNA contains a correcting gene to correct the effects of a disease, causing mutations. Gene therapy is a promising treatment for genetic diseases and also includes cystic fibrosis and muscular dystrophy. Gene therapy is a suitable treatment for infectious diseases, inherited disease and cancer.
The growth of the gene therapy market is regulated due to various reason which includes the rapid involvement of synthetically modified gene to treat various diseases, it helps in designing the personalized medicine, rise in the research and development of the gene therapy among the others. The gene therapy requires less doses of medicines and is one time treatment, this factor is likely to show growth opportunity for gene therapy market in coming near future.
Some of the key players profiled in the study areSangamo Therapeutics, Inc., bluebird bio, Inc., uniQure N.V., AveXis, Inc., Vineti, Solid Biosciences., Spark Therapeutics, Inc., CHIMERON BIO, RENOVA THERAPEUTICS, HORAMA S.A., etc.
The research provides answers to the following key questions:
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 Medical Device, Pharmaceutical, Healthcare and many more. Trade barriers are further restraining the demand- supply outlook. 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 Gene Therapy Market globally. This report on Gene Therapy Market provides the analysis on impact on Covid-19 on various business segments and country markets. The report also showcase market trends and forecast to 2027, factoring the impact of Covid -19 Situation.
The report profiles the key players in the industry, along with a detailed analysis of their individual positions against the global landscape. The study conducts SWOT analysis to evaluate strengths and weaknesses of the key players in the Gene Therapy market. The researcher provides an extensive analysis of the Gene Therapy market size, share, trends, overall earnings, gross revenue, and profit margin to accurately draw a forecast and provide expert insights to investors to keep them updated with the trends in the market.
Competitive scenario:
The study assesses factors such as segmentation, description, and applications of Gene Therapy industries. It derives accurate insights to give a holistic view of the dynamic features of the business, including shares, profit generation, thereby directing focus on the critical aspects of the business.
Scope of the Report
The research on the Gene Therapy market focuses on mining out valuable data on investment pockets, growth opportunities, and major market vendors to help clients understand their competitors methodologies. The research also segments the Gene Therapy market on the basis of end user, product type, application, and demography for the forecast period 20212027. Comprehensive analysis of critical aspects such as impacting factors and competitive landscape are showcased with the help of vital resources, such as charts, tables, and infographics.
Gene Therapy Market Segmented by Region/Country: North America, Europe, Asia Pacific, Middle East & Africa, and Central & South America
Major highlights of the report:
All-inclusive evaluation of the parent market
Evolution of significant market aspects
Industry-wide investigation of market segments
Assessment of market value and volume in past, present, and forecast years
Evaluation of market share
Study of niche industrial sectors
Tactical approaches of market leaders
Lucrative strategies to help companies strengthen their position in the market
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How Gene Therapy Market: Impact Of COVID-19 On Biotechnology Industry Sangamo Therapeutics, Vineti, Solid Biosciences - Medic Insider
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GLOBAL BIOTECHNOLOGY ALGAE CULTIVATION PROCESS (MICRO ALGAE) MARKET REPORT 2020: SIZE 2019: BENEFITS, DEMAND GROWTH, KEY SEGMENTS, TOP BRANDS AND…
Posted: June 11, 2020 at 4:47 am
The Global Biotechnology Algae Cultivation Process (Micro Algae) Market report offers users the detailed study of the market and its main aspects. There are different marketing strategies that every marketer looks up to in order to ace the competition in the Global market. Some of the primary marketing strategies that is needed for every business to be successful are Passion, Focus, Watching the Data, Communicating the value To Your Customers, Your Understanding of Your Target Market. There is a target set in market that every marketing strategy has to reach. A significant development has been recorded by the market of Biotechnology Algae Cultivation Process (Micro Algae), in past few years. It is also for it to grow further. Various important factors such as market trends, revenue growth patterns market shares and demand and supply are included in almost all the market research report for every industry. A systematized methodology is used to make a Report on the Global Biotechnology Algae Cultivation Process (Micro Algae) market. For the analysis of market on the terms of research strategies, these techniques are helpful. All the information about the Products, manufacturers, vendors, customers and much more is covered in research reports.
The Global Biotechnology Algae Cultivation Process (Micro Algae) market is a highly competitive market with a huge number of vendors. Out of this number, there are some players that has been in this game for quite a time now and made it big for themselves. Whereas, there are many new startups as well who are coming up well. The market analysis is done by the methods such as SWOT analysis and PESTEL analysis. It is very important for any business to keep coming up with new ideas in order to stand out in the industry. To identify what makes the business stand out and to take the chance to gain advantage from these findings, SWOT analysis is used by marketers. Whereas PESTEL analysis is the study concerning Economic, Technological, legal, political, social, environmental matters. External factors affecting the market are determined by PESTEL analysis. PESTEL analysis making strategies and planning for all the types of business that may be opening a new company in a new location or an expansion of a product line. For the analysis of market on the terms of research strategies, these techniques are helpful.
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Biotechnology algae cultivation process like algaculture is a form of aquaculture involving the farming of species of algae.
The majority of algae that are intentionally cultivated fall into the category of microalgae (also referred to as phytoplankton, microphytes, or planktonic algae).
According to this study, over the next five years the Biotechnology Algae Cultivation Process (Micro Algae) market will register a xx% CAGR in terms of revenue, the global market size will reach US$ xx million by 2023, from US$ xx million in 2017. In particular, this report presents the global revenue market share of key companies in Biotechnology Algae Cultivation Process (Micro Algae) business, shared in Chapter 3.
This report presents a comprehensive overview, market shares and growth opportunities of Biotechnology Algae Cultivation Process (Micro Algae) market by product type, application, key companies and key regions.
This study considers the Biotechnology Algae Cultivation Process (Micro Algae) value generated from the sales of the following segments:
Segmentation by product type: breakdown data from 2013 to 2018, in Section 2.3; and forecast to 2023 in section 10.7.
Euglenophyta (Euglenoids)
Chrysophyta (Golden-Brown Algae and Diatoms)
Chlorophyta (Green Algae)
Rhodophyta (Red Algae)
Paeophyta (Brown Algae)
Xanthophyta (Yellow-Green Algae)
Others
Segmentation by application: breakdown data from 2013 to 2018, in Section 2.4; and forecast to 2023 in section 10.8.
Food
Fertilizer and Agar
Pollution Control
Energy Production
This report also splits the market by region: Breakdown data in Chapter 4, 5, 6, 7 and 8.
Americas
United States
Canada
Mexico
Brazil
APAC
China
Japan
Korea
Southeast Asia
India
Australia
Europe
Germany
France
UK
Italy
Russia
Spain
Middle East & Africa
Egypt
South Africa
Israel
Turkey
GCC Countries
The report also presents the market competition landscape and a corresponding detailed analysis of the major vendor/manufacturers in the market. The key manufacturers covered in this report: Breakdown data in in Chapter 3.
Cellana
Ecoduna
Algenol Biofuels
Solix Biofuels
Sapphire Energy
Solazyme
Seambiotic
LGem
Cyanotech
DENSO
Mialgae
Neoalgae
In addition, this report discusses the key drivers influencing market growth, opportunities, the challenges and the risks faced by key players and the market as a whole. It also analyzes key emerging trends and their impact on present and future development.
Research objectives
To study and analyze the global Biotechnology Algae Cultivation Process (Micro Algae) market size by key regions/countries, product type and application, history data from 2013 to 2017, and forecast to 2023.
To understand the structure of Biotechnology Algae Cultivation Process (Micro Algae) market by identifying its various subsegments.
Focuses on the key global Biotechnology Algae Cultivation Process (Micro Algae) players, to define, describe and analyze the value, market share, market competition landscape, SWOT analysis and development plans in next few years.
To analyze the Biotechnology Algae Cultivation Process (Micro Algae) with respect to individual growth trends, future prospects, and their contribution to the total market.
To share detailed information about the key factors influencing the growth of the market (growth potential, opportunities, drivers, industry-specific challenges and risks).
To project the size of Biotechnology Algae Cultivation Process (Micro Algae) submarkets, with respect to key regions (along with their respective key countries).
To analyze competitive developments such as expansions, agreements, new product launches and acquisitions in the market.
To strategically profile the key players and comprehensively analyze their growth strategies.
Browse the full report @https://www.orbisresearch.com/reports/index/global-biotechnology-algae-cultivation-process-micro-algae-market-growth-status-and-outlook-2018-2023
Table of Contents
2018-2023 Global Biotechnology Algae Cultivation Process (Micro Algae) Market Report (Status and Outlook)
1 Scope of the Report
1.1 Market Introduction
1.2 Research Objectives
1.3 Years Considered
1.4 Market Research Methodology
1.5 Economic Indicators
1.6 Currency Considered
2 Executive Summary
2.1 World Market Overview
2.1.1 Global Biotechnology Algae Cultivation Process (Micro Algae) Market Size 2013-2023
2.1.2 Biotechnology Algae Cultivation Process (Micro Algae) Market Size CAGR by Region
2.2 Biotechnology Algae Cultivation Process (Micro Algae) Segment by Type
2.2.1 Euglenophyta (Euglenoids)
2.2.2 Chrysophyta (Golden-Brown Algae and Diatoms)
2.2.3 Pyrrophyta (Fire Algae)
2.2.4 Chlorophyta (Green Algae)
2.2.5 Rhodophyta (Red Algae)
2.2.6 Paeophyta (Brown Algae)
2.2.7 Xanthophyta (Yellow-Green Algae)
2.2.8 Others
2.3 Biotechnology Algae Cultivation Process (Micro Algae) Market Size by Type
2.3.1 Global Biotechnology Algae Cultivation Process (Micro Algae) Market Size Market Share by Type (2013-2018)
2.3.2 Global Biotechnology Algae Cultivation Process (Micro Algae) Market Size Growth Rate by Type (2013-2018)
2.4 Biotechnology Algae Cultivation Process (Micro Algae) Segment by Application
2.4.1 Food
2.4.2 Fertilizer and Agar
2.4.3 Pollution Control
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GLOBAL BIOTECHNOLOGY ALGAE CULTIVATION PROCESS (MICRO ALGAE) MARKET REPORT 2020: SIZE 2019: BENEFITS, DEMAND GROWTH, KEY SEGMENTS, TOP BRANDS AND...
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4 Biotechnology Stocks I’m Buying on Weakness – RealMoney – TheStreet
Posted: June 11, 2020 at 4:47 am
The S&P 500 is hitting its low point of the day as the FAANG names have reversed lower and breadth runs negative. There isn't any major rush for the exits but the momentum is more concentrated on some of the "economic reopening" plays such as the airlines and Boeing (BA) . Small-cap speculation has slowed and the Russell 2000 ETF (IWM) is struggling.
It isn't just the bears that would welcome a pullback in this market, many bulls would like some better entry points and weakness to buy. Chasing stocks higher day after day grows tiresome when you still have idle cash to put to work. Trying to stay in tune with a market that seems to be acting without regard to the news flow so often is quite exhausting.
While I'm not anticipating any major market pullback, I am looking for some signs that we may have some brief corrective action. At the top of my list is an intraday reversal and a poor close. We have the intraday reversal Thursday but it is fairly mild and we have to wait to see if there is any acceleration of selling into the close.
Even with that sort of action, it is going to be tough for the bears to gain downside traction, especially since bad news doesn't seem to produce any negative response. We have a long list of negative developments to explain some downside action but we just haven't had any come to fruition.
One the strategies I'm developing right now is to slowly start to build some longer term positions in a few biotechnology names as the pullback developes. This remains one of my favorite groups as it is relatively insulated from the ongoing coronavirus sector.
Four biotechnology names I'm looking to buy on weakness are Personalis (PSNL) , Ocular Therapeutix (OCUL) , Aurinia Pharmaceuticals (AUPH) (one of my stock picks for 2020) and Baduax Bio (BXRX) .
I don't see any rush to load up on these names but I'll be watching to make some smaller buys as the market action develops.
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4 Biotechnology Stocks I'm Buying on Weakness - RealMoney - TheStreet
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