Global In Vitro Toxicity Testing Market Research Report - Segmented by Type (Consumables, Services and Assay Kits), By Technology (Cell Culture Technologies, High Throughput technologies, OMICS Technology, Molecular-Imaging, and Others), by Method (Cellular Assays, Bio-Chemical Assays, Ex- Vivo Models, In Silico Models), by End-user Industry (Food Industry, Pharmaceutical Industry, Cosmetics Industry, Household Products, Chemical Industry, Academic Research Laboratories) By Application (Endocrine Disruption, Ocular Toxicity, Dermal Toxicity, Systemic Toxicology, Cytotoxicity, Others); and Region - Size, Share, Growth Analysis | Forecast (2024 – 2030)

Chapter 1. In vitro Toxicity Testing Market - Scope & Methodology
1.1    Market Segmentation
1.2    Assumptions
1.3    Research Methodology
1.4    Primary Sources
1.5    Secondary Sources
Chapter 2. In vitro Toxicity Testing Market - Executive Summary
2.1    Market Size & Forecast – (2023 – 2030) ($M/$Bn)
2.2    Key Trends & Insights
2.3    COVID-19 Impact Analysis
           2.3.1    Impact during 2023 – 2030
           2.3.2    Impact on Supply – Demand
Chapter 3. In vitro Toxicity Testing Market - Competition Scenario
3.1    Market Share Analysis
3.2    Product Benchmarking
3.3    Competitive Strategy & Development Scenario
3.4    Competitive Pricing Analysis
3.5    Supplier - Distributor Analysis
Chapter 4. In vitro Toxicity Testing Market - Entry Scenario
4.1     Case Studies – Start-up/Thriving Companies
4.2     Regulatory Scenario - By Region
4.3    Customer Analysis
4.4     Porter's Five Force Model
           4.4.1     Bargaining Power of Suppliers
           4.4.2     Bargaining Powers of Customers
           4.4.3    Threat of New Entrants
           4.4.4    .Rivalry among Existing Players
           4.4.5    Threat of Substitutes
Chapter 5. In vitro Toxicity Testing Market - Landscape
5.1     Value Chain Analysis – Key Stakeholders Impact Analysis
5.2    Market Drivers
5.3    Market Restraints/Challenges
5.4    Market Opportunities 
Chapter 6. In vitro Toxicity Testing Market - By Type
6.1     Consumables
6.2     Services
6.3     Assays Kits  
           6.3.1    Bacterial Toxicity Assays
           6.3.2    Enzyme Toxicity Assays
           6.3.3    Cell-based Elisa & Western Blots
           6.3.4    Receptor-binding Assays
           6.3.5    Tissue Culture Assays
           6.3.6    Others

Chapter 7. In vitro Toxicity Testing Market - By Technology
7.1    cell Culture Technologies
7.2    High Throughput technologies
7.3    OMICS Technology     
7.4     Molecular Imaging      
7.5    Others
Chapter 8. In vitro Toxicity Testing Market - By Method
8.1     Cellular Assays
8.2     Bio-Chemical Assays
8.3     Ex- Vivo Models.
8.4     In Silico Models
Chapter 9. In vitro Toxicity Testing Market - By End-user industry
9.1    Food Industry
9.2    Pharmaceutical Industry
9.3     Cosmetics Industry
9.4    Household Products
9.5    Chemical Industry
9.6     Academic Research Laboratories
Chapter 10. In vitro Toxicity Testing Market - By Application
10.1    Endocrine Disruption
10.2     Ocular Toxicity
10.3    Dermal Toxicity
10.4    Systemic Toxicology
10.5    Cytotoxicity
10.6    Others
Chapter 11. In vitro Toxicity Testing Market - By Region
11.1    North America
11.2    Europe
11.3    Asia-Pacific
11.4    Latin America
11.5    The Middle East
11.6    Africa
Chapter 12. In vitro Toxicity Testing Market – Key players
12.1    Merck KGaA
12.2    Charles River
12.3    Bio-Rad Laboratories, Inc.
12.4    Thermo Fisher Scientific Inc.
12.5    Catalent, Inc.
12.6    General Electric Company
12.7    Quest Diagnostics Incorporated
12.8    Eurofins Scientific SE
12.9    Laboratory Corporation of America Holdings
12.10    Agilent Technologies, Inc.


 

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