Category Archives: Biochemistry

Automated Biochemistry Analyzers Market Trends, Key Players, Overview, Competitive Breakdown and Regional Forecast by 2025 – The Daily Chronicle

The Global Automated Biochemistry Analyzers Market analysis report published on Upmarketresearch.com is a detailed study of market size, share and dynamics covered in XX pages and is an illustrative sample demonstrating market trends. 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 covers the entire market with an in-depth study on revenue growth and profitability. The report also delivers on key players along with strategic standpoint pertaining to price and promotion.

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The Global Automated Biochemistry Analyzers Market report entails a comprehensive database on future market estimation based on historical data analysis. It enables the clients with quantified data for current market perusal. It is a professional and a detailed report focusing on primary and secondary drivers, market share, leading segments and regional analysis. Listed out are key players, major collaborations, merger & acquisitions along with upcoming and trending innovation. Business policies are reviewed from the techno-commercial perspective demonstrating better results. The report contains granular information & analysis pertaining to the Global Automated Biochemistry Analyzers Market size, share, growth, trends, segment and forecasts from 2020-2026.

With an all-round approach for data accumulation, the market scenarios comprise major players, cost and pricing operating in the specific geography/ies. Statistical surveying used are SWOT analysis, PESTLE analysis, predictive analysis, and real-time analytics. Graphs are clearly used to support the data format for clear understanding of facts and figures.

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The report segments the Global Automated Biochemistry Analyzers Market as:Global Automated Biochemistry Analyzers Market Size & Share, by Regions

Global Automated Biochemistry Analyzers Market Size & Share, by ProductsStationary Biochemistry AnalyzersPortable Biochemistry Analyzers

Global Automated Biochemistry Analyzers Market Size & Share, ApplicationsHospital and Diagnostic LaboratoriesHome Care and AcademicResearch Institutes

Key PlayersAbbottDanaherHitachiRocheSiemensThermo Fisher Scientific

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About UpMarketResearch:UpMarketResearch (https://www.upmarketresearch.com) is a leading distributor of market research report with more than 800+ global clients. As a market research company, we take pride in equipping our clients with insights and data that holds the power to truly make a difference to their business. Our mission is singular and well-defined we want to help our clients envisage their business environment so that they are able to make informed, strategic and therefore successful decisions for themselves.Contact Info UpMarketResearchName Alex MathewsEmail [emailprotected]Website https://www.upmarketresearch.comAddress 500 East E Street, Ontario, CA 91764, United States.

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Automated Biochemistry Analyzers Market Trends, Key Players, Overview, Competitive Breakdown and Regional Forecast by 2025 - The Daily Chronicle

Innovative Supplement Brand Seeks Applicants For Nutritional Research Including Blood Biochemistry Assessment – Plant Based News

Heights' Smart Supplement was designed as a premium-quality replacement for most common supplements and multivitamins(Photo: Emma Inwood)

An innovative plant-based supplements brand is looking for five people to take part in nutritional research which aims to demonstrate that its supplement can improve biochemical markers of nutrition over three months.

Heights counts Stephen Fry, the founders of the biggest European plant-based companies like Allplants and THIS, Dr. Rangan Chatterjee, influencer Zanna Van Dijk, plant-based brand Vevolution, and Rene Elliott, founder of Planet Organic, among its customers and vocal fans.

The companys flagship Smart Supplement - which was designed as a premium-quality replacement for most common supplements and multivitamins - combines 19 essential healthy fats, antioxidants, vitamins, and minerals in the quantities shown to have the highest impact on the health of your brain and body, in a formulation you can actually absorb.

Its nutrient highlights include antioxidants, which are great for counterbalancing the effects of environmental pollutants and other lifestyle factors that put stress on our bodies. Heights contains five powerful antioxidants; vitamin E, anthocyanins, zinc, selenium and Vitamin C.

The supplement also features Omega 3 oil (DHA and EPA from algae oil). For those that don't already know, Omega 3 Oil optimises the structure of your brain and can help with mood and mood disorders. DHA can also improve memory and focus, and EPA helps to fight cellular inflammation.

B vitamins - which provide your cells with energy and support the efficient transport of information through your brain - are included, alongside Vitamin D, which has been government-recommended during lockdown, and is extra-important as we slide into the autumn and winter months. Deficiency is common and is associated with poor immune function and many other health problems including depression.

Unlike pretty much any multivitamin in the market, Heights uses a patented 'clever capsule', which not only slow releases the nutrients into your gut but enables them to encapsulate Omega 3 oil too.

Heights uses a patented 'clever capsule' (Photo: Emma Inwood)

Heights is carrying out its trial to demonstrate that Heights is improving biochemical markers of nutrition over three months. It will recruit six volunteers who are readers of Plant Based News, who follow a plant-based diet, and ideally havent taken any vitamins for three months

Discussing what kind of results it is hoping to see in vegan participants, the company said: While we know that a vegan diet can be nutritionally complete, we also know that nutritional deficiencies are more common in the vegan community. Most guidelines recommend vegans to supplement with B vitamins and vitamin D but supplementation with algae oil is still not commonplace.

Wed love to see improvements to biomarkers of vitamin status and omega 3 profile and were also hopeful of being able to measure improvements in mental wellbeing and performance in both the vegan and omnivore groups.

It added that while a plant-based diet can reduce exposure to some of the risk factors for poor brain health, a lower intake of B vitamins and inadequate conversion of plant-based omega 3 into DHA can mean that brain health in vegans is reduced.

Complaints such as brain fog, challenges with mental focus, mood, sleep and memory are commonly cited reasons for vegans returning to an omnivorous diet, said Heights. By promoting the importance of brain health and appropriate supplementation within the vegan community, we can support more people to thrive on a vegan diet and maintain their principals as well as their health."

To take part in the trial, applicants must be plant-based, and not take supplements*, and be able to attend appointments on Londons Harley Street. Compliance with supplementation is important and Heights would like participants to achieve 80-90 percent compliance with their supplement. The company will be in touch through the trial to support participants with this, and will offer tips on how to maximise compliance.

The successful applicants will be invited to collaborate with leading Harley Street scientists and dietitians, to see first hand the impact of optimum nutrition on your brain health and mental well-being.

They will be offered:

The competition closes on Monday, September 7. Participants must be aged 18 or older and be able to attend appointments on Harley Street, London. Full T&Cs are available at yourheights.com.

*Those taking regular medication are advised to speak to their doctor before taking new supplements.

**This is a paid-for advertorial.

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Innovative Supplement Brand Seeks Applicants For Nutritional Research Including Blood Biochemistry Assessment - Plant Based News

Students Awarded ‘Women in Science and Technology Scholarships’ to Support Educational Goals – PR Web

Watermark Insights LLC

NEW YORK (PRWEB) September 02, 2020

Watermark, a pioneer in educational intelligence, is pleased to announce the following recipients of its annual Watermark Scholars Program Kristen Palmer a student majoring in Electrical Engineering and Computer Science at Massachusetts Institute of Technology and Elise Ogden a student majoring in Biochemistry/Molecular Biology and Chemistry at Bethel University. Both students submitted a scholarship application, answering the prompt: who or what has inspired you to pursue a career in STEM and what do you want to achieve upon graduation?, and were selected from an applicant pool of nearly 350 submissions.

It was a TedTalk by Joy Buolamwini, a black woman and AI programmer, that opened my eyes to the power of an Ethical AI Programmer. It made me realize that in order for technologies to work for everyone, I need to actively participate in tech spaces and address the problems that impact my community. Im excited to work with Artificial Intelligence and Machine Learning so that I can learn to combat the implicit biases that plague these fields. I hope that by pursuing this goal, I can make technology more equitable. I want to live in a world where technology can work as well for me as it does for anyone else, and Im grateful to Watermark for the support in pursuing this goal, said Palmer.

For me, it was upon learning that I did not inherit Huntingtons disease, I felt called to serve people with neurodegenerative disorders in honor of my family members. I chose to study Biochemistry/Molecular Biology as a foundation for my interest in researching proteopathies, and had the opportunity to study neurological topics in biochemistry, genetics, and bioethics abroad at the University of Oxford. I am currently applying to return to Oxford for an MSc in Clinical and Therapeutic Neuroscience as a stepping stone to becoming a translational neurologist. Im incredibly thankful for Watermarks support, commented Ogden.

Watermark Scholars is an annual program intended to provide financial opportunities to female college students pursuing STEM or other technology-related studies and careers. Both recipients received monetary support to help continue their education. This Watermark Scholars opportunity is an extension of the companys broader womens leadership initiative, Women at Watermark designed to weave womens empowerment into the very fabric of the organization and encourage the growth of womens leadership through lifelong learning and professional development.

Were privileged to help support these women in furthering their education. We know that students are struggling to navigate the disruptions caused by COVID-19, including the shift to remote learning and financial strains. Amidst the current landscape, supporting students pursuing degrees and careers in Science, Technology, Engineering, and Mathematics (STEM) has tremendous future impact especially in industries in which women are traditionally underrepresented. We look forward to launching our 2021 scholarships at the end of this year, said Lisa Wright, VP of Market Intelligence & Strategic Partnerships and Women at Watermark Steering Committee Chair.

Watermark works to foster a culture of equal opportunity and that includes the growth of womens leadership opportunities, especially in STEM. To learn more, visit http://www.watermarkinsights.com.

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Students Awarded 'Women in Science and Technology Scholarships' to Support Educational Goals - PR Web

Research To Advance Crop Resilience – Texas A&M Today – Texas A&M University Today

Junqi Song, Texas A&M AgriLife Research assistant professor.

Texas A&M AgriLife

A multi-institution, international study led byTexas A&M AgriLife Researchwill investigate how a process that triggers DNA repair in plants also plays a role in strengthening their disease immunity.

Understanding key functions of the process, which is well-studied in humans, will help scientists design better disease-control strategies for highly resilient food crops, said Junqi Song, AgriLife Research assistant professor of plant pathology in Dallas. Song leads the $1.1 millionNational Science Foundationgrant project alongsidePing He, Texas A&M University Presidential Impact Fellow and professor of biochemistry and biophysics, Bryan-College Station.

When invading pathogens infect plants, the enzyme poly(ADP-ribose) polymerase attaches the molecule poly(ADP-ribose), or PAR, to certain proteins. This process is PARylation, and it activates a number of responses to pathogens, including DNA repair, immune responses and cell death, among others.

Ping He, Texas A&M Presidential Impact Fellow and professor of biochemistry and biophysics.

Texas A&M AgriLife

We are most interested in the link between DNA repair and immune responses, He said. We know a lot about how they function individually. But new evidence suggests that PARylation could be a mechanical link between them.

This is the crux of their research, and it is most likely applicable to all crop plants. Among crops, Song said, PARylation and plant immune response are genetically well conserved, or largely universal.

PARylation has been studied extensively in humans, due to its profound medical impact on many inflammatory and malignant disorders, namely cancer and related chemotherapy, he said.

But the function of PARylation in plants is poorly understood, Song said.

Over the next two years, Song and He along with collaborators at academic and research institutions across the globe aim to identify how PARylation targets immunity genes and proteins. By determining the intricately connected functions of DNA repair and immune responses, they will gain insight into how PARylation protects DNA from pathogen damage throughout an entire plant.

The work of this multilateral project will provide insights that can signal a big next step in resilient crop production that is sustainable into the future, Song said.

The work dovetails with AgriLife Researchs overarching push to meet demands of a changing climate, and to be able to grow crops sustainably in increasingly harsher conditions, especially in urban and suburban settings.

The push includes a new urban research center in Dallas. The center houses Songs lab and focuses on growing food in cities, preserving important water and land resources, as well as enhancing human health. Thegenomics program at the Dallas Center, led by Qingyi Yu, professor of plant genomics, is also collaborating on the PARylation research project.

Other collaborators are the University of Texas Southwestern Medical School, The University of Wisconsin-Madison and researchers from a number of national and international academic and scientific research institutions.

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Research To Advance Crop Resilience - Texas A&M Today - Texas A&M University Today

Laboratory Developed Tests (LDT) Market to Witness Astonishing Growth by 2028 | Quest Diagnostics , Thermo Fisher, Waters Corporation – The Daily…

XGlobalLaboratory Developed Tests (LDT)Market Report is an objective and in-depth study of the current state aimed at the major drivers, market strategies, and key players growth. The study also involves the important Achievements of the market, Research & Development, new product launch, product responses and regional growth of the leading competitors operating in the market on a universal and local scale. The structured analysis contains graphical as well as a diagrammatic representation of worldwideLaboratory Developed Tests (LDT)Market with its specific geographical regions.

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Global Laboratory Developed Tests (LDT)(Thousands Units) and Revenue (Million USD) Market Split by Product Type such as Clinical Biochemistry, Hematology, Immunology, Molecular Diagnostics and Other

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Geographically,this report is segmented into several key Regions, with production, consumption, revenue (million USD), and market share and growth rate ofLaboratory Developed Tests (LDT)in these regions, from 2013to 2029(forecast), covering

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Chapter 3, to display the Technical Data and Manufacturing Plants Analysis ofLaboratory Developed Tests (LDT), Capacity and Commercial Production Date, Manufacturing Plants Distribution, R&D Status and Technology Source, Raw Materials Sources Analysis;

Chapter 4, to show the Overall Market Analysis, Capacity Analysis (Company Segment), Sales Analysis (Company Segment), Sales Price Analysis (Company Segment);

Chapter 5 and 6, to show the Regional Market Analysis that includes North America, Europe, Asia-Pacific etc.,Laboratory Developed Tests (LDT)Segment Market Analysis by Clinical Biochemistry, Hematology, Immunology, Molecular Diagnostics and Other ;

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Chapter 9, Market Trend Analysis, Regional Market Trend, Market Trend by Product Type Clinical Biochemistry, Hematology, Immunology, Molecular Diagnostics and Other , Market Trend by Application Hospitals Laboratory, Clinical Research Organizations, Academic Institutes, Specialty Diagnostic Centers and Other , ;

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Laboratory Developed Tests (LDT) Market to Witness Astonishing Growth by 2028 | Quest Diagnostics , Thermo Fisher, Waters Corporation - The Daily...

Dibutyl Itaconate (CAS 2155-60-4) Market 2020- Analysis And In-Depth Research On Market Size, Trends, Emerging Growth Factors And Forecast To 2026 |…

Dibutyl Itaconate (CAS 2155-60-4) Market Research Report

LOS ANGELES, United States: The report is an all-inclusive research study of the global Dibutyl Itaconate (CAS 2155-60-4) market taking into account the growth factors, recent trends, developments, opportunities, and competitive landscape. The market analysts and researchers have done extensive analysis of the global Dibutyl Itaconate (CAS 2155-60-4) market with the help of research methodologies such as PESTLE and Porters Five Forces analysis. They have provided accurate and reliable market data and useful recommendations with an aim to help the players gain an insight into the overall present and future market scenario. The Dibutyl Itaconate (CAS 2155-60-4) report comprises in-depth study of the potential segments including product type, application, and end user and their contribution to the overall market size.

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In addition, market revenues based on region and country are provided in the Dibutyl Itaconate (CAS 2155-60-4) report. The authors of the report have also shed light on the common business tactics adopted by players. The leading players of the global Dibutyl Itaconate (CAS 2155-60-4) market and their complete profiles are included in the report. Besides that, investment opportunities, recommendations, and trends that are trending at present in the global Dibutyl Itaconate (CAS 2155-60-4) market are mapped by the report. With the help of this report, the key players of the global Dibutyl Itaconate (CAS 2155-60-4) market will be able to make sound decisions and plan their strategies accordingly to stay ahead of the curve.

Competitive landscape is a critical aspect every key player needs to be familiar with. The report throws light on the competitive scenario of the global Dibutyl Itaconate (CAS 2155-60-4) market to know the competition at both the domestic and global levels. Market experts have also offered the outline of every leading player of the global Dibutyl Itaconate (CAS 2155-60-4) market, considering the key aspects such as areas of operation, production, and product portfolio. Additionally, companies in the report are studied based on the key factors such as company size, market share, market growth, revenue, production volume, and profits.

Key Players Mentioned in the Global Dibutyl Itaconate (CAS 2155-60-4) Market Research Report: Zhejiang Guoguang Biochemistry Co.,Ltd, Hangzhou Hairui Chemical Co., Ltd., Hanke Chemical, Qingdao Kehai Bio

Global Dibutyl Itaconate (CAS 2155-60-4) Market Segmentation by Product: 96% Ester Content>96% Ester Content

Global Dibutyl Itaconate (CAS 2155-60-4) Market Segmentation by Application: Organic SynthesisPlasticizerOther

The Dibutyl Itaconate (CAS 2155-60-4) Market report has been segregated based on distinct categories, such as product type, application, end user, and region. Each and every segment is evaluated on the basis of CAGR, share, and growth potential. In the regional analysis, the report highlights the prospective region, which is estimated to generate opportunities in the global Dibutyl Itaconate (CAS 2155-60-4) market in the forthcoming years. This segmental analysis will surely turn out to be a useful tool for the readers, stakeholders, and market participants to get a complete picture of the global Dibutyl Itaconate (CAS 2155-60-4) market and its potential to grow in the years to come.

Key questions answered in the report:

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Table of Contents:

1 Study Coverage1.1 Dibutyl Itaconate (CAS 2155-60-4) Product Introduction1.2 Market Segments1.3 Key Dibutyl Itaconate (CAS 2155-60-4) Manufacturers Covered: Ranking by Revenue1.4 Market by Type1.4.1 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size Growth Rate by Type1.4.2 96% Ester Content1.4.3 >96% Ester Content1.5 Market by Application1.5.1 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size Growth Rate by Application1.5.2 Organic Synthesis1.5.3 Plasticizer1.5.4 Other1.6 Study Objectives1.7 Years Considered

2 Executive Summary2.1 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size, Estimates and Forecasts2.1.1 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue 2015-20262.1.2 Global Dibutyl Itaconate (CAS 2155-60-4) Sales 2015-20262.2 Global Dibutyl Itaconate (CAS 2155-60-4), Market Size by Producing Regions: 2015 VS 2020 VS 20262.2.1 Global Dibutyl Itaconate (CAS 2155-60-4) Retrospective Market Scenario in Sales by Region: 2015-20202.2.2 Global Dibutyl Itaconate (CAS 2155-60-4) Retrospective Market Scenario in Revenue by Region: 2015-2020

3 Global Dibutyl Itaconate (CAS 2155-60-4) Competitor Landscape by Players3.1 Dibutyl Itaconate (CAS 2155-60-4) Sales by Manufacturers3.1.1 Dibutyl Itaconate (CAS 2155-60-4) Sales by Manufacturers (2015-2020)3.1.2 Dibutyl Itaconate (CAS 2155-60-4) Sales Market Share by Manufacturers (2015-2020)3.2 Dibutyl Itaconate (CAS 2155-60-4) Revenue by Manufacturers3.2.1 Dibutyl Itaconate (CAS 2155-60-4) Revenue by Manufacturers (2015-2020)3.2.2 Dibutyl Itaconate (CAS 2155-60-4) Revenue Share by Manufacturers (2015-2020)3.2.3 Global Dibutyl Itaconate (CAS 2155-60-4) Market Concentration Ratio (CR5 and HHI) (2015-2020)3.2.4 Global Top 10 and Top 5 Companies by Dibutyl Itaconate (CAS 2155-60-4) Revenue in 20193.2.5 Global Dibutyl Itaconate (CAS 2155-60-4) Market Share by Company Type (Tier 1, Tier 2 and Tier 3)3.3 Dibutyl Itaconate (CAS 2155-60-4) Price by Manufacturers3.4 Dibutyl Itaconate (CAS 2155-60-4) Manufacturing Base Distribution, Product Types3.4.1 Dibutyl Itaconate (CAS 2155-60-4) Manufacturers Manufacturing Base Distribution, Headquarters3.4.2 Manufacturers Dibutyl Itaconate (CAS 2155-60-4) Product Type3.4.3 Date of International Manufacturers Enter into Dibutyl Itaconate (CAS 2155-60-4) Market3.5 Manufacturers Mergers & Acquisitions, Expansion Plans

4 Market Size by Type (2015-2026)4.1 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size by Type (2015-2020)4.1.1 Global Dibutyl Itaconate (CAS 2155-60-4) Sales by Type (2015-2020)4.1.2 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue by Type (2015-2020)4.1.3 Dibutyl Itaconate (CAS 2155-60-4) Average Selling Price (ASP) by Type (2015-2026)4.2 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Type (2021-2026)4.2.1 Global Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast by Type (2021-2026)4.2.2 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast by Type (2021-2026)4.2.3 Dibutyl Itaconate (CAS 2155-60-4) Average Selling Price (ASP) Forecast by Type (2021-2026)4.3 Global Dibutyl Itaconate (CAS 2155-60-4) Market Share by Price Tier (2015-2020): Low-End, Mid-Range and High-End

5 Market Size by Application (2015-2026)5.1 Global Dibutyl Itaconate (CAS 2155-60-4) Market Size by Application (2015-2020)5.1.1 Global Dibutyl Itaconate (CAS 2155-60-4) Sales by Application (2015-2020)5.1.2 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue by Application (2015-2020)5.1.3 Dibutyl Itaconate (CAS 2155-60-4) Price by Application (2015-2020)5.2 Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Application (2021-2026)5.2.1 Global Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast by Application (2021-2026)5.2.2 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast by Application (2021-2026)5.2.3 Global Dibutyl Itaconate (CAS 2155-60-4) Price Forecast by Application (2021-2026)

6 North America6.1 North America Dibutyl Itaconate (CAS 2155-60-4) by Country6.1.1 North America Dibutyl Itaconate (CAS 2155-60-4) Sales by Country6.1.2 North America Dibutyl Itaconate (CAS 2155-60-4) Revenue by Country6.1.3 U.S.6.1.4 Canada6.2 North America Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Type6.3 North America Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Application

7 Europe7.1 Europe Dibutyl Itaconate (CAS 2155-60-4) by Country7.1.1 Europe Dibutyl Itaconate (CAS 2155-60-4) Sales by Country7.1.2 Europe Dibutyl Itaconate (CAS 2155-60-4) Revenue by Country7.1.3 Germany7.1.4 France7.1.5 U.K.7.1.6 Italy7.1.7 Russia7.2 Europe Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Type7.3 Europe Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Application

8 Asia Pacific8.1 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) by Region8.1.1 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) Sales by Region8.1.2 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) Revenue by Region8.1.3 China8.1.4 Japan8.1.5 South Korea8.1.6 India8.1.7 Australia8.1.8 Taiwan8.1.9 Indonesia8.1.10 Thailand8.1.11 Malaysia8.1.12 Philippines8.1.13 Vietnam8.2 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Type8.3 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Application

9 Latin America9.1 Latin America Dibutyl Itaconate (CAS 2155-60-4) by Country9.1.1 Latin America Dibutyl Itaconate (CAS 2155-60-4) Sales by Country9.1.2 Latin America Dibutyl Itaconate (CAS 2155-60-4) Revenue by Country9.1.3 Mexico9.1.4 Brazil9.1.5 Argentina9.2 Central & South America Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Type9.3 Central & South America Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Application

10 Middle East and Africa10.1 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) by Country10.1.1 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) Sales by Country10.1.2 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) Revenue by Country10.1.3 Turkey10.1.4 Saudi Arabia10.1.5 U.A.E10.2 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Type10.3 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) Market Facts & Figures by Application

11 Company Profiles11.1 Zhejiang Guoguang Biochemistry Co.,Ltd11.1.1 Zhejiang Guoguang Biochemistry Co.,Ltd Corporation Information11.1.2 Zhejiang Guoguang Biochemistry Co.,Ltd Description and Business Overview11.1.3 Zhejiang Guoguang Biochemistry Co.,Ltd Sales, Revenue and Gross Margin (2015-2020)11.1.4 Zhejiang Guoguang Biochemistry Co.,Ltd Dibutyl Itaconate (CAS 2155-60-4) Products Offered11.1.5 Zhejiang Guoguang Biochemistry Co.,Ltd Related Developments11.2 Hangzhou Hairui Chemical Co., Ltd.11.2.1 Hangzhou Hairui Chemical Co., Ltd. Corporation Information11.2.2 Hangzhou Hairui Chemical Co., Ltd. Description and Business Overview11.2.3 Hangzhou Hairui Chemical Co., Ltd. Sales, Revenue and Gross Margin (2015-2020)11.2.4 Hangzhou Hairui Chemical Co., Ltd. Dibutyl Itaconate (CAS 2155-60-4) Products Offered11.2.5 Hangzhou Hairui Chemical Co., Ltd. Related Developments11.3 Hanke Chemical11.3.1 Hanke Chemical Corporation Information11.3.2 Hanke Chemical Description and Business Overview11.3.3 Hanke Chemical Sales, Revenue and Gross Margin (2015-2020)11.3.4 Hanke Chemical Dibutyl Itaconate (CAS 2155-60-4) Products Offered11.3.5 Hanke Chemical Related Developments11.4 Qingdao Kehai Bio11.4.1 Qingdao Kehai Bio Corporation Information11.4.2 Qingdao Kehai Bio Description and Business Overview11.4.3 Qingdao Kehai Bio Sales, Revenue and Gross Margin (2015-2020)11.4.4 Qingdao Kehai Bio Dibutyl Itaconate (CAS 2155-60-4) Products Offered11.4.5 Qingdao Kehai Bio Related Developments11.1 Zhejiang Guoguang Biochemistry Co.,Ltd11.1.1 Zhejiang Guoguang Biochemistry Co.,Ltd Corporation Information11.1.2 Zhejiang Guoguang Biochemistry Co.,Ltd Description and Business Overview11.1.3 Zhejiang Guoguang Biochemistry Co.,Ltd Sales, Revenue and Gross Margin (2015-2020)11.1.4 Zhejiang Guoguang Biochemistry Co.,Ltd Dibutyl Itaconate (CAS 2155-60-4) Products Offered11.1.5 Zhejiang Guoguang Biochemistry Co.,Ltd Related Developments

12 Future Forecast by Regions (Countries) (2021-2026)12.1 Dibutyl Itaconate (CAS 2155-60-4) Market Estimates and Projections by Region12.1.1 Global Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast by Regions 2021-202612.1.2 Global Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast by Regions 2021-202612.2 North America Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast (2021-2026)12.2.1 North America: Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast (2021-2026)12.2.2 North America: Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast (2021-2026)12.2.3 North America: Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Country (2021-2026)12.3 Europe Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast (2021-2026)12.3.1 Europe: Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast (2021-2026)12.3.2 Europe: Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast (2021-2026)12.3.3 Europe: Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Country (2021-2026)12.4 Asia Pacific Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast (2021-2026)12.4.1 Asia Pacific: Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast (2021-2026)12.4.2 Asia Pacific: Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast (2021-2026)12.4.3 Asia Pacific: Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Region (2021-2026)12.5 Latin America Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast (2021-2026)12.5.1 Latin America: Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast (2021-2026)12.5.2 Latin America: Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast (2021-2026)12.5.3 Latin America: Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Country (2021-2026)12.6 Middle East and Africa Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast (2021-2026)12.6.1 Middle East and Africa: Dibutyl Itaconate (CAS 2155-60-4) Sales Forecast (2021-2026)12.6.2 Middle East and Africa: Dibutyl Itaconate (CAS 2155-60-4) Revenue Forecast (2021-2026)12.6.3 Middle East and Africa: Dibutyl Itaconate (CAS 2155-60-4) Market Size Forecast by Country (2021-2026)

13 Market Opportunities, Challenges, Risks and Influences Factors Analysis13.1 Market Opportunities and Drivers13.2 Market Challenges13.3 Market Risks/Restraints13.4 Porters Five Forces Analysis13.5 Primary Interviews with Key Dibutyl Itaconate (CAS 2155-60-4) Players (Opinion Leaders)

14 Value Chain and Sales Channels Analysis14.1 Value Chain Analysis14.2 Dibutyl Itaconate (CAS 2155-60-4) Customers14.3 Sales Channels Analysis14.3.1 Sales Channels14.3.2 Distributors

15 Research Findings and Conclusion

16 Appendix16.1 Research Methodology16.1.1 Methodology/Research Approach16.1.2 Data Source16.2 Author Details16.3 Disclaimer

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The closure of the largest biological and chemical weapons base in the United States: U.S. experts expect the government a thorough investigation into…

It is clear that in the West there is a widespread concern about the way that the COVID-19 pandemic began. Various theories have been put forward. These range from the way that a strain of corona jumped species and was transferred from animal to man, to the possibility which many find fearful that this is a man-made disease originating in a laboratory. This latter theory in turn has spawned two offshoots. If it is manmade, was it an accident? Did some germ get out of its strict laboratory confines through misadventure or is it something more sinister?

The purpose of the investigation in this paper is to ask some searching questions as to the true origin of COVID-19 and, in particular, the site of its genesis.

To begin with, it would seem unlikely even to those fond of imagining the worst case scenario that the disease was deliberately unleashed by the Chinese Authorities in such a way that the prime initial victims would all be Chinese Nationals. The illogic of this proposition has not dented the suspicions of the conspiracy theorists. If there is to be the cloud of deliberate germ warfare hanging over this question, it is the object of this paper to look where it is most likely to have happened. The Chinese Government will not have done this to its own citizens. However, let us consider what those in power in America could have done.

The situation of COVID-19 in America is growing more serious as the danger recedes in China. On 30 August 2020, the total number of diagnosed COVID-19 cases in the United States reached 6,139,467, including 186,857 deaths. It need hardly be said that there are few suspicions in the USA that its own American nationals could have been responsible for the outbreak.

The investigations that underpin this paper point the finger of suspicion clearly in one direction, one location, and one source.

With the deterioration of this epidemic situation in the United States, details of the largest biochemical base in the United States have been gradually emerging.

The Darkest Experiment Center of the U.S. Government: FORT DETRICK

The center, known by foreign media as the Darkest experiment center of the U.S. government, was closed down due to an accident last July. That at least is what we have been led to believe by American sources.

This is strange. The largest experimental station in America suddenly closed down due to an accident? Biochemistry, experiments, accidents, leaks What is the secret here?

The fact is that Fort Detrick, Maryland is the largest chemical and biological weapons base in the United States.

The origins of this base can be traced back to World War II.

During the Second World War, German and Japanese fascists were determined at all costs to win the war. No considerations of humanity stirred them. Their ends justified any means, in their minds, to beat the enemy. And so they studied and they used chemical and biological weapons, including the infamous Unit 731 of Japan.

In 1943, in order to deal with the biochemical threat from Germany and Japan, the United States established its own biological and chemical weapons laboratory.

Fort Detrick was originally a small civil airport in the United States, and later became a training base for American pilots. Finally, it was transformed into the largest biochemical weapons base in the United States.

The most infamous biological and chemical weapon developed by Fort Detrik was Agent Orange, which was used in the Vietnam War. With the mark stripe of its orange container, AO could be called as a kind of high-efficiency tree killing agent.

During the Vietnam War, American troops sprayed AO into the dense jungle, which made plants leaves fall and so made deprived Vietnamese guerrillas of cover, which meant that they had nowhere to hide.

AO can not only kill trees, it can also hurt people. The toxic impurity tetrachlorodibenzo-dioxin that was produced caused casualties among Vietnamese, and even the US military was notspared. President Nixons presidency ended the Vietnam War and ordered the biochemical experiment in Fort Detrick to close, according to the Geneva Protocol.

Story continues

Since then, the strategic direction of Fort Detrick has changed from biochemical weapons research and development to biological defense, mainly engaged in biomedical research and development, medical material management, global medical communication and research on foreign plant pathogens.

However, it is speculated that the research and development of chemical and biological weapons still continues at Fort Detrick. One of the most obvious reasons is that the base is controlled and dominated by the US military, which must serve the ends of war.

Fort Detrick VS COVID-19?

Even in the United States, there is an air of mystery about Fort Detrick.

In July 2019, Fort Detrik was suddenly mysteriously closed on the grounds that there was a problem with the drainage system.

At that time, although this attracted attention and it did not end speculation in certain informed quarters. As the epidemic situation in the United States is getting out of control, old cases in the United States have been raised again. Some people began to wonder if the Sars-Cov-2 had leaked from Fort Detrik?

This speculation is by no means groundless.

First, there is a precedent for a virus leakage at Fort Detrick base.

According to American media statistics, from 1992 to 2011, there were 2,247 cancer cases in Fort Detrick. The abnormally high incidence of cancer is thought to be related to the leakage at Fort Detrick base. In addition, deadly strains and strains such as anthrax have escaped from the base. A German biologist named Siegel thought that AIDS was manufactured at Fort Detrick from where it leaked out.

The American drama Hot Zone is based on a virus leakage case in 1989, when researchers at Fort Detrick discovered a new Ebola virus in Philippine monkeys. Because of negligence, the virus leaked and spread locally. Fortunately, its eradication was quick and the situation was quickly controlled.

Secondly, the mysterious closure of the Fort Detrick base is odd.

After the mysterious closure of the Fort Detrick base, the U.S. government gave no explanation on the grounds that it concerns national security.

It was not until three days after the closure that the US government said that it was because the center did not have a perfect system to purify the waste-water from its highest safety laboratory.

The delay of three days was very strange.

If there is a problem with the waste-water purification system, will the waste-water with virus flow out without purification? Has the virus leaked as a result?

The New York Times reported as the title Deadly Germ Research Is Shut Down at Army Lab Over Safety Concerns last year, which is the only few reports could be found in the internet.

Thirdly, the time lines of multiple events are surprisingly consistent.

We should remember that American soldiers participated in the 7th CISM Military World Games at Wuhan, China, around October last year. Then Wuhan happened; the COVID-19 Outbreak in January 2020.

On March 10, American citizens with the signature of B.Z. launched a petition post on the White House petition website We The People, asking the United States to disclose the information about Fort Dietrich, and listed a series of events

In July 2019, Fort Detrik base was closed in an emergency;

In August 2019, a large-scale flu caused more than 10,000 deaths in the United States;

In October 2019, the CIA of the United States led the implementation of the global epidemic exercise;

In November 2019, unexplained pneumonia was found in China;

In February 2020, COVID-19 broke out in the world;

In March 2020, most of English news reports on the closure of Fort Detrik were deleted.

Shortly after the base was closed, unknown pneumonia appeared in Maryland which was not far away. Also, the unknown pneumonia was broke out in the old peoples community around the Fort Detrick in June and July 2019.

And then there was an outbreak of influenza in the United States. Is this just a coincidence?

What is the cover up of the US governments deletion of a large number of Ford Detrick closures?

It is based on the above several reasons that the US citizens suspect that the Ford Detrick has developed a new coronavirus (COVID-19 Sars-Cov-2) and leaked it out.

COVID-19 in the USA

The outbreak occurred earlier in the United States. On March 11th, at a hearing held in the US House of Representatives, Robert Redfield, director of the US Center for Disease Control and Prevention, admitted for the first time that the American flu dead may have been COVID-19 pneumonia patients last year.

On April 30th, Michael Melham, mayor of Belleville, New Jersey, said that he had been infected with COVID-19 in November last year. Dr. Trepka, a professor of epidemiology at Florida International University, believes that COVID-19 may have appeared in Florida in January and February 2020.

Actually, the possibility of virus leakage at Fort Detrick base is greater. On July 12th last year, ABC reported that a fatal disease broke out in a community in Virginia. The symptoms were cough and then pneumonia, including 2 deaths, which were similar to pneumonia in COVID-19. Evidence shows that the epidemic started very early in the United States, even before China.

According to the report in 2009, there were 400 accidents at near 1,500 P3 laboratories in the United States, and almost all laboratories had accidents or virus leaks, which showed the safety supervision was full of loopholes.

From what has been discussed above, it is more likely that the Fort Detrick base leaked the virus. Many experts expect the American government to investigate the issue and permanently closing down Fort Detrick and announce this publically.

Why does American government refuse to sign the Convention on the Prohibition of Biological Weapons? Why does American government refuse to check the origin COVID-19 case in the US?

With more and more information being disclosed, the truth seems to be coming out.

(G. Justin)

(Syndicated content is neither written, verified or endorsed by ED Times)

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Chitosan Market : Global Industry Analysis By Size, Growth Rate, Share, Covid-19 Impact And Trends With Forecast To 2020 2026 | Leading Players-…

Data Bridge Market Research has recently published the Global research Report Titled: Chitosan Market

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Data models employed for the research methodology are vendor positioning grid, market time line analysis, market overview and guide, company positioning grid, company market share analysis, standards of measurement, top to bottom analysis and vendor share analysis. Not to mention, the data is collected only from the dependable sources such as journals, newspapers, company websites and annual reports of the companies on which Chitosan industry can rely confidently. Businesses are highly relying on the different segments covered in the market research report which gives better insights to drive the business into right direction. The market studies, insights and analysis carried out in this credible Chitosan Market research report keeps marketplace clearly into the focus which helps achieve business goal.

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The Leading Market Players Covered in this Report are :

Panvo Organics Pvt Ltd, Qingdao Yunzhou Biochemistry co., ltd., , Advanced Biopolymers AS, meron, Heppe Medical Chitosan GmbH, Kitozyme, LLC, Kraeber & Co. GmbH, Foodchem International Corporation, FMC Corporation, Golden-Shell Pharmaceutical, Primex EHF, Nano3Bio, KOYO CHEMICAL CO.,LTD., Dainichiseika Color & Chemicals Mfg. Co., Ltd., Biothera Pharmaceuticals among others.

Market Definition: Global Chitosan Market

Chitosan is a kind of carbohydrate that is bonded with number of sugar molecules. It contains chitin and chitosan, which are two naturally abundant and renewable polymers that shows varied properties like non-toxicity, adsorption, nature-friendly and biodegradability. The compound is used for various applications particularly in the industries like agrochemicals, water treatment and cosmetics.

Market Drivers:

Market Restraints:

Regional Analysis Includes:

The Report published on Data Bridge Market Research about Chitosan Market is spread across several pages and provides newest industry data, market future trends, allowing you to identify the products and end users driving revenue growth and profitability. The industry report lists and studies the leading competitors, also provides the insights with strategic industry analysis of the key factors influencing the market dynamics.

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Impossible Foods CEO on finding meat’s magical ingredient, pitching VCs and convincing meat-loving chefs to serve a vegan burger – CNBC

In 2011, at the age of 57, Stanford biochemistry professor Pat Brown took a leap faith and quit his job to launch plant-based "meat" company Impossible Foods. He did it because wanted to help solve one of the world's biggest problems before he retired.

"The use of animals as a technology in food production is, by a huge margin, the most destructive technology on earth in the history of our species," Brown tells CNBC Make It.

Today, Impossible Foods, best known for its juicy, meat-tasting vegan burger, is valued at more than $4 billion. Its burgers are served in more than 17,000 restaurants worldwide, including via partnership deals withBurger King, White Castle and Starbucks. It's also sold in8,000 grocery stores,

Here, Brown talks withCNBC Make It about his life before Impossible Foods, his first investor pitch meeting and where he sees the brand going. The interview has been edited together for length and clarity.

CNBC Make It: Today, you are the founder of Impossible Foods. But talk to me about life before Impossible Foods.

Pat Brown: I grew up assuming that I ever did about 50% of my childhood was in the Washington, D.C. suburbs and the other 50% was split in Paris [France] and in Taipei [Taiwan]. And I wasn't a very good student. I was capable, but I had very little interest in school. Fortunately, when it was time for me to go to college [in the 1980s], it was a time when the fraction of people who tried to go to college was a lot lower. So I was able to get into the University of Chicago, which is where I went for undergrad and then I stayed there for my M.D. and Ph.D. [in biochemistry].

I wanted to have more of tangible impact on the world ... so I decided to go into biomedical research. And then I did a pediatrics residency, so I spent three years as a pediatrician in Chicago, at Children's Memorial Hospital. I'd have a 36-hour non-stop day. But I loved it because you felt every moment like you were helping people.

Let's move forward to 2009. You were 57 and a professor at Stanford Medicine, Stanford University's medical school, and you took a sabbatical. How did that lead to the creation of Impossible Foods?

I used the [sabbatical] to try to figure out, what's the most important problem in the world is that I might be able to contribute to solving? The use of animals as a technology in food production is, by a huge margin, the most destructive technology on Earth in the history of our species. And once I realized that, it was a no-brainer.

Relatively quickly it became clear that you are not going to solve the [meat consumption] problem by regulation, education or trying to persuade people. Even most environmentalists that go to climate and environmental conferences are eating steak for dinner. They're not going to stop eating foods that are a big source of pleasure in their daily lives.

So that meant that the only way to solve the problem is to understand what consumers love about these foods and do a better job of delivering it than the current industry does. That means competing in the marketplace and pulling the economic rug out from under that industry. I had to start a company to make those changes and that's why I founded Impossible Foods.

What was your first pitch to get funding for Impossible Foods like?

You can't walk a block in Palo Alto [California, where Stanford is located] without tripping over a venture capitalist. I went to talk to three of the big VC firms but I was naive about what drives venture investors. It's not the same thing that drives me, it turns out.

The message that really snapped them to attention is that the there was, at that time, a $1.5 trillion global market being served by a technology [meat production] that has fundamentally not been improved since prehistoric times. And it's just waiting to be taken down by better technology.

But that was kind of like my last [pitch deck] slide. Now, I am much more upfront about this, saying that is a humongous prize for whoever can develop the technology to replace animals in the food system.

How did you create the Impossible Burger?

The premise was this is a scientific problem. We needed to understand in molecular detail how meat works.

From a nutritional standpoint, the problem was already solved [by plant-based] protein. Just to put it in perspective, the global soybean crop occupies .8% of Earth's land area and produces 150% as much protein as in all the meat consumed globally. And it uses way less fertilizer, pesticides and water than the animal agriculture industry. And it's cheaper by far.

The unsolved problem is deliciousness. So we had to study: What makes meat delicious?

We hired molecular biologists, biochemist, biophysicist and basic scientists because the the problem was not making food. It was understanding how this particular food works to create those emergent properties that people crave. So, they got started working on understanding what makes meat delicious.

And how did you find the magic ingredient, heme?

When you cook meat some kind of magical happens there's an explosion of aroma and it's flavor profile becomes completely different. When you have an explosion of chemical activity like that, to me that suggests that there was a catalyst in there.

What I knew was that heme besides being the molecule that carries oxygen in your blood making it red is one of the best catalysts in nature. And it's staring right at you, because it's responsible for the red or pink color of meat. So, it's just screamingly obvious.

You can basically take vegetable broth but if you throw in heme, it tastes like meat.

When you first introduced Impossible Burger, why did you market it to restaurants as opposed to consumers?

We debuted it with a handful of world renowned, uncompromising chefs, the first of which was Dave Chang, who once made a big splash by banning on principle every vegetarian item from his menu. So this guy is a meat guy to the bone, and the perfect person for us to launch with. Someone like Dave Chang, Traci Des Jardins, Brad Farmer and Chris Cosentino, these very meat-focused chefs, wanted it on their menus. So you would be insane not to take advantage of that.

Where do you see Impossible Foods going?

I think last year we increased our sales by about threefold. This year, it's very likely to be more than twofold. In order to achieve our mission[to eliminate the need to make food from animals], we have to grow on average about twofold every year for the next 15 years.

More than 90% of the people who ever want impossible burger are current meat eaters. We need to convince them to try [Impossible Burger]. Once we do that, I think we're in.

Check out:Americans spend over $5,000 a year on groceriessave hundreds at supermarkets with these cards

Don'tmiss:

Beyond Meat CEO on early naysayers: A new idea is crazy until its not

Whole Foods CEO on plant-based meat boom: Good for the environment but not for your health

Impossible CEO on critics who say plant-based meat is unhealthy: 'It's bull----'

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Impossible Foods CEO on finding meat's magical ingredient, pitching VCs and convincing meat-loving chefs to serve a vegan burger - CNBC

Two UGA professors named to National Academy of Inventors – WGAU

The National Academy of Inventors has named two University of Georgia faculty members to the 2020 class of NAI Senior Members.

Richard Meagher, Distinguished Research Professor of Genetics, and Ronald Orlando, professor of biochemistry and molecular biology, and chemistry, are the first UGA researchers to receive the senior membership distinction. They join a new class of 38 prolific inventors representing 24 research universities along with government and nonprofit research institutes worldwide.

Meagher has dedicated nearly five decades to performing pioneering research across several diverse biotechnology disciplines, including plant molecular genetics, monoclonal antibody development and epigenetics. His research contributions at UGA have led to 58 invention disclosures, eight issued U.S. patents and one pending U.S. application. Hes also co-founded four biotechnology companies based on these technologies. One company, Abeome, is developing therapeutic antibodies against inflammatory and other diseases. Meagher received the UGA Inventors Award in 2004 and the UGA Entrepreneurs Award in 2017.

Consistent encouragement by my colleagues and the creative environment at UGA have been essential to this recognition by NAI and much of my success as an inventor and entrepreneur, said Meagher.

Orlando joined the Complex Carbohydrate Research Center in 1993 and leads a prominent research group dedicated to glycobiology and biochemistry. He holds two U.S. patents and four pending patent applications and has appeared as an inventor on 17 invention disclosures ranging from software to novel compounds and methods of analysis. Orlando has launched three startup companies based on UGA-licensed technology that have raised more than $7.8 million in funding and launched 57 new products. He serves as CEO of GlycoScientific, an Innovation Gateway resident company developing research tools and potential therapeutic antibodies for cancer, and was the inaugural recipient of the UGA Entrepreneurs Award in 2010.

I am deeply honored to have been elected as a senior member of the National Academy of Inventors, but I am not the only person deserving recognition for this honor, Orlando said. Innovation Gateway provided the guidance and infrastructure I needed to move my research into the marketplace.

Innovation Gateway is a key component of the universitys Innovation District initiative to cultivate a comprehensive innovation ecosystem that supports research commercialization, entrepreneurship, industry engagement and experiential learning.

The NAI Senior Member program recognizes national and international academic inventors who have demonstrated success in developing new technologies that benefit society. Senior members are elected biennially and undergo a rigorous selection process by the NAI Advisory Committee, which is composed of elected NAI members and other professionals considered pioneers in their respective fields.

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Two UGA professors named to National Academy of Inventors - WGAU