Dublin, Oct. 08, 2020 (GLOBE NEWSWIRE) -- The "Global Protein Assays Market: Impact of COVID-19" report has been added to ResearchAndMarkets.com's offering.
This report provides a detailed survey of the protein assays market. This report also highlights the current and future market potential of protein assays and features a detailed analysis of the competitive environment, including the relevant regulatory scenarios and technological advancements, as well as the drivers, restraints, opportunities, and trends affecting the market growth.
For the purposes of analysis, the market has been segmented into by type and by end-user. Also, the market has been further segmented by geography into North America, Europe, Asia-Pacific, and the Rest of the World. For market estimates, data has been provided for the year 2018, 2019 is the base year, and the forecast is provided until 2024.
The Report Includes:
An overview of the global market for protein assays within the industry
Analyses of the global market trends, with data corresponding to market size for 2018 and 2019, and projections of compound annual growth rates (CAGRs) through 2024
Information pertaining to the market potential for protein assays, market drivers and opportunities, current trends and future prospects, regulatory updates, and other macroeconomic factors shaping the future marketplace
Discussion on the impact of the COVID-19 pandemic on the global economy as well as protein assays marketplace
Competitive landscape of the major market participants, their market positioning and research priorities, revenue details, and market share analysis
Profile description of the leading biotechnology and pharmaceutical companies, including Bio-Rad Laboratories Inc., General Electric Co., Merck & Co., Inc., and PerkinElmer
An essay is an investigative analytical measurement procedure that has a set of reagents that produce a detectable signal for quantifying and measuring biological processes. Protein assays are the techniques used to study proteins such as for detecting proteins, for isolating and purifying proteins, and for characterizing the structure and function of proteins, often requiring that the protein first be purified. The quantitation of protein concentration is an essential part of any laboratory workflow including protein extraction, purification, labeling, or analysis. Knowing the concentration of proteins helps researchers compare results from one protein to another and across various experiments. Moreover, it is helpful in verifying the success of the lysis step, determining a protein yield, measuring enzyme kinetics, and normalizing multiple samples for storage or comparison.
A wide variety of different methods have been developed to quantify complex mixtures of proteins and a single type of protein. There are various protein quantification methods available. UV absorbance at 280 nm, Bicinchoninic acid (BCA) assays, and Bradford assays are the traditional methods used for protein quantification, as well as alternative methods such as the Lowry or novel assays developed by commercial suppliers, which often provide a well-designed, appropriate kit for each type of the assay. Moreover, individual protein quantitation methods include the enzyme-linked immunosorbent assay (ELISA), western blot analysis, and, more recently, mass spectrometry, among others.
The measurement of protein concentration is very important in various applications such as drug discovery and development as well as a disease diagnosis. Protein concentration methods are recommended for various industries. For example, the International Serum Industry Association (a trade group for serum providers) recommends the Biuret method for the determination of protein contents in serum products. Increasing pharmaceutical and biotech R&D expenditures and favorable government funding scenarios for proteomics research are driving the market demand for protein assays across the globe.
Key Topics Covered:
Chapter 1 Introduction
Study Goals and Objectives
Reasons for Doing This Study
Scope of Report
Chapter 2 Summary and Highlights
Highlights of the Market for Protein Assays
Chapter 3 Drug Development and Approval Process
Process of Drug Discovery
Drug Development Regulations
Classification of Techniques Used in Drug Discovery
Bioanalytical Instruments for Drug Discovery
Cell-Based Assays and Reagents for Drug Discovery
Proteomics Drug Discovery Tools
Genomics Drug Discovery Tools
Bioinformatics as Platform for Drug Discovery
Others: Metabolomics, Combinatorial Chemistry, Systems Biology, Nanotechnology
Chapter 4 Protein Assays: Market Dynamics
Chapter 5 Impact of COVID-19 Pandemic
Symptoms of COVID-19
Progression of COVID-19
Global Confirmed COVID-19 Cases and Deaths
Collaboration between Organizations and Governments
Spread of Disease
Current Status and Impact on Medtech
Elective and Noncritical Procedures
Shift in Manufacturing
Regulatory Delays, Clinical Trials and Product Launches
Supply Chain Disruptions
Impact of COVID-19 on Life-Sciences Companies
Impact of COVID-19 on Pharma Supply Chains
Disruption of Clinical Trials
Impact on Insurance Providers
Impact on Health Technology Assessment
Threat to Healthcare Acquisitions
Chapter 6 Protein Assays by Type and End User
Protein Assays: Types
Ultraviolet (UV) Absorbance
Lowry Protein Assay
Bicinchoninic Acid (BCA) or Copper-Based Assay
Bradford or Coomassie Brilliant Blue Protein Assay
Protein Assays: End Users
Pharmaceutical and Biotechnology Companies
Academic Research Institutions
Contract Research Organizations
Chapter 7 Market Breakdown by Region
Global Market for Protein Assays by Region
Rest of Europe
Rest of Asia-Pacific
Rest of the World
Chapter 8 Competitive Landscape
Thermo Fisher Scientific Acquired Affymetrix
Chapter 9 Company Profiles
Bio-Rad Laboratories Inc.
General Electric Co.
Merck & Co., Inc.
Thermo Fisher Scientific Inc.
Chapter 10 Appendix: List of Acronyms
For more information about this report visit https://www.researchandmarkets.com/r/qozovf
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