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Global In Vitro Toxicology Testing Market Report and Forecast 2023-2028

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    Report

  • 168 Pages
  • August 2023
  • Region: Global
  • Expert Market Research
  • ID: 5868177
According to the report the global in vitro toxicology testing market reached a value of approximately USD 25.42 billion in 2022. Aided by the growing demand for advanced, predictive toxicology assays and the increasing drug discovery and development activities, the market is projected to further grow at a CAGR of 9.53% between 2023 and 2028 to reach a value of USD 41.05 billion by 2028.

In vitro toxicology testing involves the use of cell cultures, cellular components, or biomolecules to assess the potential toxicity of new compounds. These tests play an integral role in drug development, chemical safety testing, and cosmetic product evaluation. Apart from its primary function in toxicity prediction, in vitro toxicology testing offers significant benefits such as reduced dependency on animal models, cost-effectiveness, and high-throughput screening potential, making it a valuable tool in various industrial applications, including pharmaceuticals, biotechnology, and cosmetics.

The rising demand for innovative, predictive toxicology assays is driving the global in vitro toxicology testing market growth. With growing awareness of the ethical issues associated with animal testing and the regulatory push for alternative methods, there has been a significant shift towards in vitro toxicology tests. Additionally, the rising trend of precision and personalised medicine has further enhanced the appeal of in vitro toxicology testing, as it provides a more human-relevant approach to toxicity prediction.

The expanding applications of in vitro methods in various industries also contribute to the in vitro toxicology testing market development. In the pharmaceutical industry, in vitro toxicology testing aids in early risk identification in the drug discovery process, reducing the risk of late-stage failures. The cosmetic industry, under pressure to avoid animal testing, increasingly utilises in vitro methods for safety evaluation. Furthermore, in vitro tests' high-throughput screening capabilities make them crucial tools in chemical safety testing and environmental risk assessment, fuelling the in vitro toxicology testing market demand.

Moreover, the demand for efficient and ethical alternatives in toxicity testing has led to an increased focus on in vitro methods. With the rise of 3D cell culture technologies and the increasing popularity of human-on-a-chip systems, in vitro toxicology testing is emerging as a critical area in the pursuit of more accurate and ethical testing methods, thereby driving the in vitro toxicology testing market expansion.

Market Segmentation

The market can be divided based on product type, technology, method, application, end-user, and region.

Market Breakup by Product Type

  • Equipment
  • Assay Kits
  • Consumables
  • Software
  • Services

Market Breakup by Technology

  • High Throughput
  • Cell Culture
  • Texicogenomics

Market Breakup by Method

  • Cellular Assay
  • Biochemical Assay
  • In Silica
  • Ex-vivo

Market Breakup by Application

  • Neuro Toxicity
  • Dermal Toxicity
  • Cytotoxicity
  • Others

Market Breakup by End-User

  • Pharmaceuticals and Biopharmaceuticals
  • Cosmetics and Household Products
  • Food Industry
  • Chemicals
  • Others

Market Breakup by Region

  • North America
  • Europe
  • Asia Pacific
  • Latin America
  • Middle East and Africa

Competitive Landscape

The report looks into the market shares, plant turnarounds, capacities, investments, and acquisitions and mergers, among other major developments, of the global in vitro toxicology testing companies. Some of the major key players explored in the report are as follows:
  • SGS SA
  • Gentronix
  • Thermo Fisher Scientific Inc.
  • Bio-Rad Laboratories, Inc.
  • Integrated Laboratory Systems
  • LAUS GmbH
  • Aragen Life Sciences Pvt. Ltd.
  • Others

About the Publisher

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*The publisher always strives to provide you with the latest information. The numbers in the article are only indicative and may be different from the actual report.

Table of Contents

1 Preface2 Report Coverage - Key Segmentation and Scope
3 Report Description
3.1 Market Definition and Outlook
3.2 Properties and Applications
3.3 Market Analysis
3.4 Key Players
4 Key Assumptions
5 Executive Summary
5.1 Overview
5.2 Key Drivers
5.3 Key Developments
5.4 Competitive Structure
5.5 Key Industrial Trends
6 Market Snapshot
6.1 Global
6.2 Region
7 Opportunities and Challenges in the Market
8 Global In Vitro Toxicology Testing Market Analysis
8.1 Key Industry Highlights
8.2 Global In Vitro Toxicology Testing Historical Market (2018-2022)
8.3 Global In Vitro Toxicology Testing Market Forecast (2023-2028)
8.4 Global In Vitro Toxicology Testing Market by Product Type
8.4.1 Equipment
8.4.1.1 Market Share
8.4.1.2 Historical Trend (2018-2022)
8.4.1.3 Forecast Trend (2023-2028)
8.4.2 Assay Kits
8.4.2.1 Market Share
8.4.2.2 Historical Trend (2018-2022)
8.4.2.3 Forecast Trend (2023-2028)
8.4.3 Consumables
8.4.3.1 Market Share
8.4.3.2 Historical Trend (2018-2022)
8.4.3.3 Forecast Trend (2023-2028)
8.4.4 Software
8.4.4.1 Market Share
8.4.4.2 Historical Trend (2018-2022)
8.4.4.3 Forecast Trend (2023-2028)
8.4.5 Services
8.4.5.1 Market Share
8.4.5.2 Historical Trend (2018-2022)
8.4.5.3 Forecast Trend (2023-2028)
8.5 Global In Vitro Toxicology Testing Market by Technology
8.5.1 High Throughput
8.5.1.1 Market Share
8.5.1.2 Historical Trend (2018-2022)
8.5.1.3 Forecast Trend (2023-2028)
8.5.2 Cell Culture
8.5.2.1 Market Share
8.5.2.2 Historical Trend (2018-2022)
8.5.2.3 Forecast Trend (2023-2028)
8.5.3 Texicogenomics
8.5.3.1 Market Share
8.5.3.2 Historical Trend (2018-2022)
8.5.3.3 Forecast Trend (2023-2028)
8.6 Global In Vitro Toxicology Testing Market by Method
8.6.1 Cellular Assay
8.6.1.1 Market Share
8.6.1.2 Historical Trend (2018-2022)
8.6.1.3 Forecast Trend (2023-2028)
8.6.2 Biochemical Assay
8.6.2.1 Market Share
8.6.2.2 Historical Trend (2018-2022)
8.6.2.3 Forecast Trend (2023-2028)
8.6.3 In Silica
8.6.3.1 Market Share
8.6.3.2 Historical Trend (2018-2022)
8.6.3.3 Forecast Trend (2023-2028)
8.6.4 Ex-vivo
8.6.4.1 Market Share
8.6.4.2 Historical Trend (2018-2022)
8.6.4.3 Forecast Trend (2023-2028)
8.7 Global In Vitro Toxicology Testing Market by Application
8.7.1 Neuro Toxicity
8.7.1.1 Market Share
8.7.1.2 Historical Trend (2018-2022)
8.7.1.3 Forecast Trend (2023-2028)
8.7.2 Dermal Toxicity
8.7.2.1 Market Share
8.7.2.2 Historical Trend (2018-2022)
8.7.2.3 Forecast Trend (2023-2028)
8.7.3 Cytotoxicity
8.7.3.1 Market Share
8.7.3.2 Historical Trend (2018-2022)
8.7.3.3 Forecast Trend (2023-2028)
8.7.4 Others
8.8 Global In Vitro Toxicology Testing Market by End-User
8.8.1 Pharmaceuticals and Biopharmaceuticals
8.8.1.1 Market Share
8.8.1.2 Historical Trend (2018-2022)
8.8.1.3 Forecast Trend (2023-2028)
8.8.2 Cosmetics and Household Products
8.8.2.1 Market Share
8.8.2.2 Historical Trend (2018-2022)
8.8.2.3 Forecast Trend (2023-2028)
8.8.3 Food Industry
8.8.3.1 Market Share
8.8.3.2 Historical Trend (2018-2022)
8.8.3.3 Forecast Trend (2023-2028)
8.8.4 Chemicals
8.8.4.1 Market Share
8.8.4.2 Historical Trend (2018-2022)
8.8.4.3 Forecast Trend (2023-2028)
8.8.5 Others
8.9 Global In Vitro Toxicology Testing Market by Region
8.9.1 North America
8.9.1.1 Market Share
8.9.1.2 Historical Trend (2018-2022)
8.9.1.3 Forecast Trend (2023-2028)
8.9.2 Europe
8.9.2.1 Market Share
8.9.2.2 Historical Trend (2018-2022)
8.9.2.3 Forecast Trend (2023-2028)
8.9.3 Asia Pacific
8.9.3.1 Market Share
8.9.3.2 Historical Trend (2018-2022)
8.9.3.3 Forecast Trend (2023-2028)
8.9.4 Latin America
8.9.4.1 Market Share
8.9.4.2 Historical Trend (2018-2022)
8.9.4.3 Forecast Trend (2023-2028)
8.9.5 Middle East and Africa
8.9.5.1 Market Share
8.9.5.2 Historical Trend (2018-2022)
8.9.5.3 Forecast Trend (2023-2028)
9 North America In Vitro Toxicology Testing Market Analysis
9.1 United States of America
9.1.1 Market Share
9.1.2 Historical Trend (2018-2022)
9.1.3 Forecast Trend (2023-2028)
9.2 Canada
9.2.1 Market Share
9.2.2 Historical Trend (2018-2022)
9.2.3 Forecast Trend (2023-2028)
10 Europe In Vitro Toxicology Testing Market Analysis
10.1 United Kingdom
10.1.1 Market Share
10.1.2 Historical Trend (2018-2022)
10.1.3 Forecast Trend (2023-2028)
10.2 Germany
10.2.1 Market Share
10.2.2 Historical Trend (2018-2022)
10.2.3 Forecast Trend (2023-2028)
10.3 France
10.3.1 Market Share
10.3.2 Historical Trend (2018-2022)
10.3.3 Forecast Trend (2023-2028)
10.4 Italy
10.4.1 Market Share
10.4.2 Historical Trend (2018-2022)
10.4.3 Forecast Trend (2023-2028)
10.5 Others
11 Asia Pacific In Vitro Toxicology Testing Market Analysis
11.1 China
11.1.1 Market Share
11.1.2 Historical Trend (2018-2022)
11.1.3 Forecast Trend (2023-2028)
11.2 Japan
11.2.1 Market Share
11.2.2 Historical Trend (2018-2022)
11.2.3 Forecast Trend (2023-2028)
11.3 India
11.3.1 Market Share
11.3.2 Historical Trend (2018-2022)
11.3.3 Forecast Trend (2023-2028)
11.4 ASEAN
11.4.1 Market Share
11.4.2 Historical Trend (2018-2022)
11.4.3 Forecast Trend (2023-2028)
11.5 Australia
11.5.1 Market Share
11.5.2 Historical Trend (2018-2022)
11.5.3 Forecast Trend (2023-2028)
11.6 Others
12 Latin America In Vitro Toxicology Testing Market Analysis
12.1 Brazil
12.1.1 Market Share
12.1.2 Historical Trend (2018-2022)
12.1.3 Forecast Trend (2023-2028)
12.2 Argentina
12.2.1 Market Share
12.2.2 Historical Trend (2018-2022)
12.2.3 Forecast Trend (2023-2028)
12.3 Mexico
12.3.1 Market Share
12.3.2 Historical Trend (2018-2022)
12.3.3 Forecast Trend (2023-2028)
12.4 Others
13 Middle East and Africa In Vitro Toxicology Testing Market Analysis
13.1 Saudi Arabia
13.1.1 Market Share
13.1.2 Historical Trend (2018-2022)
13.1.3 Forecast Trend (2023-2028)
13.2 United Arab Emirates
13.2.1 Market Share
13.2.2 Historical Trend (2018-2022)
13.2.3 Forecast Trend (2023-2028)
13.3 Nigeria
13.3.1 Market Share
13.3.2 Historical Trend (2018-2022)
13.3.3 Forecast Trend (2023-2028)
13.4 South Africa
13.4.1 Market Share
13.4.2 Historical Trend (2018-2022)
13.4.3 Forecast Trend (2023-2028)
13.5 Others
14 Market Dynamics
14.1 SWOT Analysis
14.1.1 Strengths
14.1.2 Weaknesses
14.1.3 Opportunities
14.1.4 Threats
14.2 Porter’s Five Forces Analysis
14.2.1 Supplier’s Power
14.2.2 Buyer’s Power
14.2.3 Threat of New Entrants
14.2.4 Degree of Rivalry
14.2.5 Threat of Substitutes
14.3 Key Indicators for Demand
14.4 Key Indicators for Price
15 Competitive Landscape
15.1 Market Structure
15.2 Company Profiles
15.2.1 SGS SA
15.2.1.1 Company Overview
15.2.1.2 Product Portfolio
15.2.1.3 Demographic Reach and Achievements
15.2.1.4 Certifications
15.2.2 Gentronix
15.2.2.1 Company Overview
15.2.2.2 Product Portfolio
15.2.2.3 Demographic Reach and Achievements
15.2.2.4 Certifications
15.2.3 Thermo Fisher Scientific Inc.
15.2.3.1 Company Overview
15.2.3.2 Product Portfolio
15.2.3.3 Demographic Reach and Achievements
15.2.3.4 Certifications
15.2.4 Bio-Rad Laboratories, Inc.
15.2.4.1 Company Overview
15.2.4.2 Product Portfolio
15.2.4.3 Demographic Reach and Achievements
15.2.4.4 Certifications
15.2.5 Integrated Laboratory Systems
15.2.5.1 Company Overview
15.2.5.2 Product Portfolio
15.2.5.3 Demographic Reach and Achievements
15.2.5.4 Certifications
15.2.6 LAUS GmbH
15.2.6.1 Company Overview
15.2.6.2 Product Portfolio
15.2.6.3 Demographic Reach and Achievements
15.2.6.4 Certifications
15.2.7 Aragen Life Sciences Pvt. Ltd.
15.2.7.1 Company Overview
15.2.7.2 Product Portfolio
15.2.7.3 Demographic Reach and Achievements
15.2.7.4 Certifications
15.2.8 Others
16 Key Trends and Developments in the Market

Companies Mentioned

  • SGS SA
  • Gentronix
  • Thermo Fisher Scientific Inc.
  • Bio-Rad Laboratories, Inc.
  • Integrated Laboratory Systems
  • LAUS GmbH
  • Aragen Life Sciences Pvt. Ltd.

Methodology

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