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LI20101816 |
Pages: 310 |
Sep 2024 |
The immunoprecipitation market was valued at $901.00 million in 2023 and is estimated to reach $2,035.42 million by 2033, exhibiting a CAGR of 8.5% from 2024 to 2033.
Immunoprecipitation is a technique used in molecular biology to isolate a specific protein or antigen from a mixture of proteins or other molecules. The process involves using an antibody that specifically binds to the target protein or antigen. The antibody is usually connected to a solid support, such as agarose beads or magnetic beads. When the antibody binds to its target protein, the protein-antibody complex can be precipitated out of solution using centrifugation or another separation method. This allows researchers to isolate and study the target protein or antigen, as well as any associated molecules, such as DNA or RNA. Immunoprecipitation is commonly used in various applications, including protein-protein interaction studies, chromatin immunoprecipitation (ChIP) assays, and co-immunoprecipitation experiments.
Immunoprecipitation is crucial in identifying potential drug targets and understanding disease mechanisms, driving its adoption in the pharmaceutical industry. In the production of biopharmaceuticals, such as antibodies and recombinant proteins, immunoprecipitation is integral for quality control and validation. The technique ensures that the biologics produced meet the necessary standards for purity and functionality. Moreover, governments worldwide are increasingly supporting the biotechnology and pharmaceutical industries through funding and policy initiatives. For instance, in 2022, the U.S. government allocated over $40 billion for biomedical research through the National Institutes of Health (NIH). Furthermore, the European Union's Horizon Europe program allocated approximately $102.55billion for research and innovation from 2021 to 2027, with significant funding directed towards health and biotechnology sectors. These factors are predicted to drive the immunoprecipitation market growth during the forecast period.
The immunoprecipitation market growth is projected to be hampered primarily due to the high cost of equipment and reagents. Immunoprecipitation procedures demand specialized equipment, such as centrifuges, incubators, and magnetic separation devices, along with high-quality reagents like antibodies and protein A/G beads. In regions with emerging economies, the financial barrier posed by the high costs of immunoprecipitation equipment and reagents can significantly impede the growth of the market. Limited budgets may force institutions to prioritize other research methods or areas that require less financial investment, further restraining the immunoprecipitation market growth.
Advancements in immunoprecipitation techniques, such as chromatin immunoprecipitation (ChIP) and co-immunoprecipitation (Co-IP), are expanding the capabilities and efficiency of these methods, creating new opportunities for market growth. The National Institutes of Health (NIH) regularly funds research projects aimed at improving immunoprecipitation techniques. According to their data, funding for projects related to immunoprecipitation has increased by 15% over the last five years. This indicates a strong emphasis on technological advancements in the immunoprecipitation field. Moreover, the national science foundation (NSF) provides grants for research in various scientific fields, including biotechnology. Their reports show a significant uptick in grants awarded for projects focusing on improving immunoprecipitation methodologies. These factors are anticipated to create opportunities in the immunoprecipitation market during the forecast years as well.
The global immunoprecipitation market is experiencing significant growth, driven by innovative solutions and an increase in demand for effective therapies. Patent analysis in this market reveals key trends and insights:
In June 2022, in Korea, Institute of Ceramic Engineering and Technology, introduced the immunoprecipitation method using an antibody-binding protein and a calsequestrin fusion protein. The invention specifically pertains to the use of an antibody-binding protein and a calsequestrin fusion protein for immunoprecipitation; an immunoprecipitation kit utilizing the antibody-binding protein and calsequestrin fusion protein; and an immunoprecipitation method employing the antibody-binding protein and calsequestrin fusion protein.
The immunoprecipitation market is segmented into type, end user, and region. On the basis of type, the market is classified into individual protein immunoprecipitation, co-immunoprecipitation (Co-IP), chromatin immunoprecipitation (ChIP), RNA immunoprecipitation (RIP), and others. On the basis of end user, the market is divided into pharmaceutical & biotechnology industries, contract research organizations (CROs), and academic & research institutes. Region wise, the market is analyzed across North America, Europe, Asia-Pacific, and LAMEA.
North America has been experiencing an increasing burden of chronic diseases such as cancer, autoimmune disorders, and neurological diseases. Immunoprecipitation techniques are crucial in research related to understanding the molecular mechanisms underlying these diseases, thus driving demand for related products and services. Moreover, regulations set by government agencies like the Food and Drug Administration (FDA) in the U.S. or Health Canada play a crucial role in shaping the market. Changes in regulations regarding research methodologies, quality standards, or approval processes are expected to impact the demand for immunoprecipitation technologies.
On March 29, 2023, Thermo Fisher Scientific, a global leader in scientific services, and Arsenal Biosciences, Inc. (ArsenalBio), a clinical-stage company specializing in advanced CAR-T cell therapies for solid tumors, announced an update regarding strategic collaboration to advance the development of manufacturing processes for new cancer treatments.
The major players operating in the immunoprecipitation market include Air Liquide, Thermo Fisher Scientific Inc, Abcam Plc, BioLegend, Bio-Rad Laboratories, Biologics International Corp, Creative Proteomics, GenScript Biotech Corporation, Merck KGaA, Novus Biologicals, and others.
Apart from the points mentioned above, the report includes the analysis of the regional as well as global immunoprecipitation market trends, key players, market segments, application areas, and market growth strategies.
Aspect | Particulars |
Historical Market Estimations | 2021-2022 |
Base Year for Market Estimation | 2023 |
Forecast Timeline for Market Projection | 2024-2033 |
Geographical Scope | North America, Europe, Asia-Pacific, and LAMEA |
Segmentation by Origin |
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Segmentation by End User |
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Key Companies Profiled |
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1. Research Methodology
1.1. Desk Research
1.2. Real time insights and validation
1.3. Forecast model
1.4. Assumptions and forecast parameters
1.5. Market size estimation
1.5.1. Top-down approach
1.5.2. Bottom-up approach
2. Report Scope
2.1. Market definition
2.2. Key objectives of the study
2.3. Market segmentation
3. Executive Summary
4. Market Overview
4.1. Introduction
4.2. Growth impact forces
4.2.1. Drivers
4.2.2. Restraints
4.2.3. Opportunities
4.3. Market value chain analysis
4.3.1. List of raw material suppliers
4.3.2. List of manufacturers
4.3.3. List of distributors
4.4. Innovation & sustainability matrices
4.4.1. Technology matrix
4.4.2. Regulatory matrix
4.5. Porter’s five forces analysis
4.5.1. Bargaining power of suppliers
4.5.2. Bargaining power of consumers
4.5.3. Threat of substitutes
4.5.4. Threat of new entrants
4.5.5. Competitive Rivalry Intensity
4.6. PESTLE analysis
4.6.1. Political
4.6.2. Economical
4.6.3. Social
4.6.4. Technological
4.6.5. Legal
4.6.6. Environmental
4.7. Impact of COVID-19 on Animal Genetics Market
4.7.1. Pre-covid market scenario
4.7.2. Post-covid market scenario
5. Animal Genetics Market Analysis, by Product & Service
5.1. Overview
5.2. Animal Type
5.2.1. Definition, key trends, growth factors, and opportunities
5.2.2. Market size analysis, by region, 2022-2032
5.2.3. Market share analysis, by country, 2022-2032
5.2.3.1. Canine
5.2.4. Definition, key trends, growth factors, and opportunities
5.2.5. Market size analysis, by region, 2022-2032
5.2.6. Market share analysis, by country, 2022-2032
5.2.6.1. Poultry
5.2.7. Definition, key trends, growth factors, and opportunities
5.2.8. Market size analysis, by region, 2022-2032
5.2.9. Market share analysis, by country, 2022-2032
5.2.9.1. Porcine
5.2.10. Definition, key trends, growth factors, and opportunities
5.2.11. Market size analysis, by region, 2022-2032
5.2.12. Market share analysis, by country, 2022-2032
5.2.12.1. Bovine
5.2.13. Definition, key trends, growth factors, and opportunities
5.2.14. Market size analysis, by region, 2022-2032
5.2.15. Market share analysis, by country, 2022-2032
5.2.15.1. Others
5.2.16. Definition, key trends, growth factors, and opportunities
5.2.17. Market size analysis, by region, 2022-2032
5.2.18. Market share analysis, by country, 2022-2032
5.3. Genetic Material
5.3.1. Definition, key trends, growth factors, and opportunities
5.3.2. Market size analysis, by region, 2022-2032
5.3.3. Market share analysis, by country, 2022-2032
5.3.3.1. Semen
5.3.4. Definition, key trends, growth factors, and opportunities
5.3.5. Market size analysis, by region, 2022-2032
5.3.6. Market share analysis, by country, 2022-2032
5.3.6.1. Embryo
5.3.7. Definition, key trends, growth factors, and opportunities
5.3.8. Market size analysis, by region, 2022-2032
5.3.9. Market share analysis, by country, 2022-2032
5.4. Service Type
5.4.1. Definition, key trends, growth factors, and opportunities
5.4.2. Market size analysis, by region, 2022-2032
5.4.3. Market share analysis, by country, 2022-2032
5.4.3.1. DNA Typing
5.4.4. Definition, key trends, growth factors, and opportunities
5.4.5. Market size analysis, by region, 2022-2032
5.4.6. Market share analysis, by country, 2022-2032
5.4.6.1. Genetic Trait Testing
5.4.7. Definition, key trends, growth factors, and opportunities
5.4.8. Market size analysis, by region, 2022-2032
5.4.9. Market share analysis, by country, 2022-2032
5.4.9.1. Genetic Disease Tests
5.4.10. Definition, key trends, growth factors, and opportunities
5.4.11. Market size analysis, by region, 2022-2032
5.4.12. Market share analysis, by country, 2022-2032
5.5. Research Dive Exclusive Insights
5.5.1. Market attractiveness
5.5.2. Competition heatmap
6. Animal Genetics Market Analysis, by End User
6.1. Overview
6.2. Veterinary Hospitals & Clinics
6.2.1. Definition, key trends, growth factors, and opportunities
6.2.2. Market size analysis, by region, 2022-2032
6.2.3. Market share analysis, by country, 2022-2032
6.3. Research Centers & Institutes
6.3.1. Definition, key trends, growth factors, and opportunities
6.3.2. Market size analysis, by region, 2022-2032
6.3.3. Market share analysis, by country, 2022-2032
6.4. Others
6.4.1. Definition, key trends, growth factors, and opportunities
6.4.2. Market size analysis, by region, 2022-2032
6.4.3. Market share analysis, by country, 2022-2032
6.5. Research Dive Exclusive Insights
6.5.1. Market attractiveness
6.5.2. Competition heatmap
7. Animal Genetics Market , by Region
7.1. North America
7.1.1. U.S.
7.1.1.1. Market size analysis, by Product & Service, 2022-2032
7.1.1.2. Market size analysis, by End User, 2022-2032
7.1.2. Canada
7.1.2.1. Market size analysis, by Product & Service, 2022-2032
7.1.2.2. Market size analysis, by End User, 2022-2032
7.1.3. Mexico
7.1.3.1. Market size analysis, by Product & Service, 2022-2032
7.1.3.2. Market size analysis, by End User, 2022-2032
7.1.4. Research Dive Exclusive Insights
7.1.4.1. Market attractiveness
7.1.4.2. Competition heatmap
7.2. Europe
7.2.1. Germany
7.2.1.1. Market size analysis, by Product & Service, 2022-2032
7.2.1.2. Market size analysis, by End User, 2022-2032
7.2.2. UK
7.2.2.1. Market size analysis, by Product & Service, 2022-2032
7.2.2.2. Market size analysis, by End User, 2022-2032
7.2.3. France
7.2.3.1. Market size analysis, by Product & Service, 2022-2032
7.2.3.2. Market size analysis, by End User, 2022-2032
7.2.4. Spain
7.2.4.1. Market size analysis, by Product & Service, 2022-2032
7.2.4.2. Market size analysis, by End User, 2022-2032
7.2.5. Italy
7.2.5.1. Market size analysis, by Product & Service, 2022-2032
7.2.5.2. Market size analysis, by End User, 2022-2032
7.2.6. Rest of Europe
7.2.6.1. Market size analysis, by Product & Service, 2022-2032
7.2.6.2. Market size analysis, by End User, 2022-2032
7.2.7. Research Dive Exclusive Insights
7.2.7.1. Market attractiveness
7.2.7.2. Competition heatmap
7.3. Asia-Pacific
7.3.1. China
7.3.1.1. Market size analysis, by Product & Service, 2022-2032
7.3.1.2. Market size analysis, by End User, 2022-2032
7.3.2. Japan
7.3.2.1. Market size analysis, by Product & Service, 2022-2032
7.3.2.2. Market size analysis, by End User, 2022-2032
7.3.3. India
7.3.3.1. Market size analysis, by Product & Service, 2022-2032
7.3.3.2. Market size analysis, by End User, 2022-2032
7.3.4. Australia
7.3.4.1. Market size analysis, by Product & Service, 2022-2032
7.3.4.2. Market size analysis, by End User, 2022-2032
7.3.5. South Korea
7.3.5.1. Market size analysis, by Product & Service, 2022-2032
7.3.5.2. Market size analysis, by End User, 2022-2032
7.3.6. Rest of Asia-Pacific
7.3.6.1. Market size analysis, by Product & Service, 2022-2032
7.3.6.2. Market size analysis, by End User, 2022-2032
7.3.7. Research Dive Exclusive Insights
7.3.7.1. Market attractiveness
7.3.7.2. Competition heatmap
7.4. LAMEA
7.4.1. Brazil
7.4.1.1. Market size analysis, by Product & Service, 2022-2032
7.4.1.2. Market size analysis, by End User, 2022-2032
7.4.2. UAE
7.4.2.1. Market size analysis, by Product & Service, 2022-2032
7.4.2.2. Market size analysis, by End User, 2022-2032
7.4.3. Saudi Arabia
7.4.3.1. Market size analysis, by Product & Service, 2022-2032
7.4.3.2. Market size analysis, by End User, 2022-2032
7.4.4. South Africa
7.4.4.1. Market size analysis, by Product & Service, 2022-2032
7.4.4.2. Market size analysis, by End User, 2022-2032
7.4.5. Rest of LAMEA
7.4.5.1. Market size analysis, by Product & Service, 2022-2032
7.4.5.2. Market size analysis, by End User, 2022-2032
7.4.6. Research Dive Exclusive Insights
7.4.6.1. Market attractiveness
7.4.6.2. Competition heatmap
8. Competitive Landscape
8.1. Top winning strategies, 2022
8.1.1. By strategy
8.1.2. By year
8.2. Strategic overview
8.3. Market share analysis, 2022
9. Company Profiles
9.1. Neogen Corporation
9.1.1. Overview
9.1.2. Business segments
9.1.3. Product portfolio
9.1.4. Financial performance
9.1.5. Recent developments
9.1.6. SWOT analysis
9.2. Genetics Australia
9.2.1. Overview
9.2.2. Business segments
9.2.3. Product portfolio
9.2.4. Financial performance
9.2.5. Recent developments
9.2.6. SWOT analysis
9.3. Hendrix Genetics BV
9.3.1. Overview
9.3.2. Business segments
9.3.3. Product portfolio
9.3.4. Financial performance
9.3.5. Recent developments
9.3.6. SWOT analysis
9.4. URUS Group LP
9.4.1. Overview
9.4.2. Business segments
9.4.3. Product portfolio
9.4.4. Financial performance
9.4.5. Recent developments
9.4.6. SWOT analysis
9.5. CRV
9.5.1. Overview
9.5.2. Business segments
9.5.3. Product portfolio
9.5.4. Financial performance
9.5.5. Recent developments
9.5.6. SWOT analysis
9.6. Semex
9.6.1. Overview
9.6.2. Business segments
9.6.3. Product portfolio
9.6.4. Financial performance
9.6.5. Recent developments
9.6.6. SWOT analysis
9.7. Swine Genetics International
9.7.1. Overview
9.7.2. Business segments
9.7.3. Product portfolio
9.7.4. Financial performance
9.7.5. Recent developments
9.7.6. SWOT analysis
9.8. STgenetics
9.8.1. Overview
9.8.2. Business segments
9.8.3. Product portfolio
9.8.4. Financial performance
9.8.5. Recent developments
9.8.6. SWOT analysis
9.9. Animal Genetics Inc.
9.9.1. Overview
9.9.2. Business segments
9.9.3. Product portfolio
9.9.4. Financial performance
9.9.5. Recent developments
9.9.6. SWOT analysis
9.10. Generatio GmbH
9.10.1. Overview
9.10.2. Business segments
9.10.3. Product portfolio
9.10.4. Financial performance
9.10.5. Recent developments
9.10.6. SWOT analysis
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