Global in vitro toxicity testing market report provides geographic analysis covering regions such as North America, Europe, Asia Pacific, and Rest of World. The in vitro toxicity testing market for each region is further segmented for major countries including U.S., Canada, Germany, UK, France, Italy, China, India, Japan, Brazil, South Africa and others.
Global in vitro toxicity testing market report scope includes detailed study covering underlying factors influencing the industry trends.
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Global in vitro toxicity testing market is segregated on the basis of technology as, Cell-Culture, High Throughput, Molecular Imaging, and OMICS Technology. The industry is divided by method which includes Cellular Assays, Biochemical Assays, In-silico, and Ex-vivo. Based on application, the global in vitro toxicity testing market is segmented as Systemic Toxicology, Dermal Toxicity, Endocrine Disruption, and Occular Toxicity. The report also bifurcates global in vitro toxicity testing market based on end-use as Pharmaceutical & Biopharmaceutical, Cosmetics & Household Products, Food, and Chemical.
The report covers analysis on regional and country level market dynamics. The scope also covers competitive overview providing company market shares along with company profiles for major revenue contributing companies.
Rising research expenditure to detect the toxicity at the earliest possible stage is accelerating the in vitro toxicity testing market size over the forecast time span. Additionally, technological innovations in computational biology accompanied with advanced algorithms aid in conducting efficient stimulation of in-silico animal models, resulting in alternatives to animal testing. This will certainly gain momentum for clinical studies and support in industry growth over the coming years.
The report scope includes detailed competitive outlook covering market shares and profiles key participants in the global in vitro toxicity testing market share. Major industry players with significant revenue share inlcude SGS, Covance, Bio-Rad Laboratories, Qiagen, GE Healthcare, Eurofins Scientific, Merck Group, Thermo Fisher Scientific, Charles River Laboratories International, and Catalent.
Globally, shifting trend of non-animal tests together with implementation of government rules and regulations for alternate test assays aimed at preliminary clinical studies and toxicology testing is predicted to offer growth opportunities for the in vitro toxicity testing business size over the estimated period.
SGS, Covance, Bio-Rad Laboratories, Qiagen, GE Healthcare, Eurofins Scientific, Merck Group, Thermo Fisher Scientific, Charles River Laboratories International, and Catalent are among the major players in the global in vitro toxicity testing market share. The companies are involved in several growth and expansion strategies to gain a competitive advantage. Industry participants also follow value chain integration with business operations in multiple stages of the value chain.
The In Vitro Toxicity Testing Market has been segmented as below:
The In Vitro Toxicity Testing Market is segmented on the lines of In Vitro Toxicity Testing Market, By Technology, In Vitro Toxicity Testing Market, By Method, In Vitro Toxicity Testing Market, By Application, In Vitro Toxicity Testing Market, By End-Use and In Vitro Toxicity Testing Market, By Region.
In Vitro Toxicity Testing Market, By Technology this market is segmented on the basis of Cell Culture Tech, High Throughput Tech, Molecular Imaging and OMICS Tech. In Vitro Toxicity Testing Market, By Method this market is segmented on the basis of Cellular Assay, Biochemical Assay, In Silica and Ex-vivo. In Vitro Toxicity Testing Market, By Application this market is segmented on the basis of Systemic Toxicology, Dermal Toxicity, Endorine Disruption and Occular Toxicity. In Vitro Toxicity Testing Market, By End-Use this market is segmented on the basis of Pharmaceutical and Biopharmaceutical, Cosmetics and Household Products, Food and Chemical. In Vitro Toxicity Testing Market, By Region this market is segmented on the basis of North America, Europe, Asia Pacific and Rest of World.
The report covers:
- Global in vitro toxicity testing market sizes from 2015 to 2024, along with CAGR for 2018-2024.
- Market size comparison for 2017 vs 2024, with actual data for 2017, estimates for 2018 and forecast from 2019 to 2024
- Global in vitro toxicity testing market trends, covering comprehensive range of consumer trends & manufacturer trends
- Value chain analysis covering participants from raw material suppliers to the downstream buyer in the in vitro toxicity testing market
- Major market opportunities and challenges in forecast timeframe to be focused
- Competitive landscape with analysis on competition pattern, portfolio comparisons, development trends and strategic management
- Comprehensive company profiles of the key industry players
Reasons to Buy this Report:
- Gain detailed insights on the in vitro toxicity testing industry trends
- Find complete analysis on the market status
- Identify the in vitro toxicity testing market opportunities and growth segments
- Analyse competitive dynamics by evaluating business segments & product portfolios
- Facilitate strategy planning and industry dynamics to enhance decision making
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Table of Contents:
- Research Methodology
- Executive Summary
- Market Overview
4.2.1. Technological advancements for in vitro
4.2.2. Increasing R&D expenditures
4.2.3. Opposition for animal testing
4.3.1. Failure to establish intricacies of in vivo conditions through in vitro
4.3.2. Lack of in vitro models to study complex endpoints
4.4.1. Increasing drug discovery
4.4.2. Increasing toxicology databases will facilitate the use of in vitro test methods
4.5.1. Dearth of skilled professionals
- In Vitro Toxicity Testing Market, By Technology
- In Vitro Toxicity Testing Market, By Method
- In Vitro Toxicity Testing Market, By Application
- In Vitro Toxicity Testing Market, By End-Use
- Competitive Landscape
- Company Profile
10.1.1. Company Overview
10.1.2. Product/Service Landscape
10.1.3. Financial Overview
10.1.4. Recent Developments
10.2.1. Company Overview
10.2.2. Product/Service Landscape
10.2.3. Financial Overview
10.2.4. Recent Developments
10.3. Bio-Rad Laboratories
10.3.1. Company Overview
10.3.2. Product/Service Landscape
10.3.3. Financial Overview
10.3.4. Recent Developments
10.4.1. Company Overview
10.4.2. Product/Service Landscape
10.4.3. Financial Overview
10.4.4. Recent Developments
10.5. GE Healthcare
10.5.1. Company Overview
10.5.2. Product/Service Landscape
10.5.3. Financial Overview
10.5.4. Recent Developments
10.6. Eurofins Scientific
10.6.1. Company Overview
10.6.2. Product/Service Landscape
10.6.3. Financial Overview
10.6.4. Recent Developments
10.7. Merck Group
10.7.1. Company Overview
10.7.2. Product/Service Landscape
10.7.3. Financial Overview
10.7.4. Recent Developments
10.8. Thermo Fisher Scientific
10.8.1. Company Overview
10.8.2. Product/Service Landscape
10.8.3. Financial Overview
10.8.4. Recent Developments
10.9. Charles River Laboratories International
10.9.1. Company Overview
10.9.2. Product/Service Landscape
10.9.3. Financial Overview
10.9.4. Recent Developments
10.10.1. Company Overview
10.10.2. Product/Service Landscape
10.10.3. Financial Overview
10.10.4. Recent Developments
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