The “In-Vitro Toxicology Testing Market” report 2019 delivers up-to-date information about market changes and prospective threats, as well as in-depth knowledge of products and services, which can help in planning and in executing category management activities. Moreover, it focuses on the cost-saving aspects of procurement and on providing insights that can lead to optimization of category spend.
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Top Key Players of In-Vitro Toxicology Testing Market Are:
Reasons to buy:
- In-depth analysis of the market on the global and regional level.
- Major changes in market dynamics and competitive landscape.
- Segmentation on the basis of type, application, geography and others.
- Historical and future market research in terms of size, share, growth, volume & sales.
- Major changes and assessment in market dynamics & developments.
- Industry size & share analysis with industry growth and trends.
- Emerging key segments and regions
- Key business strategies by major market players and their key methods.
- The research report covers size, share, trends and growth analysis of the In-Vitro Toxicology Testing Market on the global and regional level.
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Scope of the Report:
In-Vitro Toxicology Testing market covers the outlook for overall market status, size and share. The report provides complete coverage on major industry drivers, restraints, and their impact on market growth during the forecast period. In-Vitro Toxicology Testing market report also presents the market competition landscape and a corresponding detailed analysis of the major vendor in the market.
Key Market Trends:
Cell Culture is Expected to Hold Significant Market Share in the Technology Type
Recent inventions and advances in human cell culture exposure, as well as test systems, have allowed the expansion and development of in-vitro assay systems, which are predictive, demonstrative and suitable for toxicity screening of a varied range of chemicals including nanomaterials and airborne materials. In-vitro toxicology involves using cells or tissues grown or maintained in a controlled laboratory environment to examine the toxic properties of various compounds and mixtures. This further enables one to examine the toxicity of xenobiotics at the basic level of the cell without involving the interplay of complex physiological systemic effects, which are often observed in entire organisms. However, definite cellular functions could be studied with primary cell cultures obtained from specific tissues such as the kidney or gills for ionic homeostasis, liver for xenobiotic biotransformation, and the nerve cells for neurotransmitter signaling effects.
North America Dominates the Market and is Expected to Do So in the Forecast Period
Over the past few years, technical advancements and supportive government regulations have led to the rapid development of innovative, cost-effective testing for establishing drug, device, chemical and cosmetic safety, in North America. The significant increase in investment in instruments and the ongoing expansion of laboratory capabilities, across the region, currently, enable clients to establish toxicological profiles of medical devices, biopharmaceuticals, cosmetics, and chemicals. These investments include an expansion of the existing cell/tissue culture capabilities, flow cytometry, and mass spectrometry facilities, apart from the introduction of high throughput screening, automation, and multiplexing technologies for biomarker analysis.
In-Vitro Toxicology Testing Market Report contents include:
– Analysis of the In-Vitro Toxicology Testing market including revenues, future growth, market outlook
– Historical data and forecast
– Regional analysis including growth estimates
– Analyzes the end user markets including growth estimates.
– Profiles on In-Vitro Toxicology Testing including products, sales/revenues, and market position
– Market structure, market drivers and restraints.
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Detailed TOC of In-Vitro Toxicology Testing Market Report Are:
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET DYNAMICS
4.1 Market Overview
4.2 Market Drivers
4.2.1 Opposition to the Usage of Animals in Pre-clinical Research
4.2.2 Significant Advancements In-vitro Toxicology Assays
4.2.3 Increasing Awareness Regarding Drug Product Safety
4.3 Market Restraints
4.3.1 Incapability of In-vitro Models to Determine Autoimmunity and Immunostimulation
4.3.2 Stringent Regulatory Framework for the In-vitro Tests
4.4 Porter’s Five Forces Analysis
4.4.1 Threat of New Entrants
4.4.2 Bargaining Power of Buyers/Consumers
4.4.3 Bargaining Power of Suppliers
4.4.4 Threat of Substitute Products
4.4.5 Intensity of Competitive Rivalry
5 MARKET SEGMENTATION
5.1 By Technology
5.1.1 Cell Culture
5.1.2 High Throughput
5.1.3 Molecular Imaging
5.2 By Method
5.2.1 Cellular Assay
5.2.2 Biochemical Assay
5.2.3 In Silica
5.3 By Application
5.3.1 Systemic Toxicology
5.3.2 Dermal Toxicity
5.3.3 Endorine Disruption
5.3.4 Occular Toxicity
5.3.5 Other Applications
5.4 By End User
5.4.1 Pharmaceutical Industry
5.4.2 Cosmetics & Household Products
5.4.4 Chemicals Industry
5.4.5 Food Industry
5.5.1 North America
126.96.36.199 Rest of Europe
188.8.131.52 South Korea
184.108.40.206 Rest of Asia-Pacific
5.5.4 Middle East & Africa
220.127.116.11 South Africa
18.104.22.168 Rest of Middle East & Africa
5.5.5 South America
22.214.171.124 Rest of South America
6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 Abbott Laboratories
6.1.2 Agilent Technologies
6.1.3 Bio-Rad Laboratories
6.1.5 Eurofins Scientific
6.1.6 GE Healthcare
6.1.7 Merck KGaA
6.1.8 Promega Corporation
6.1.9 Quest Diagnostics
6.1.10 Thermo Fisher Scientific
7 MARKET OPPORTUNITIES AND FUTURE TRENDS
Name: Ajay More
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