ADME Toxicology Testing Market Size, Share & Trends Analysis Report By Technology (Cell Culture Tech, High Throughput Tech, Molecular Imaging), By Application, By Method, By Region, And Segment Forecasts, 2025 - 2030
ADME Toxicology Testing Market Growth & Trends
The global ADME toxicology testing market size is expected to reach USD 11.44 billion by 2030, expanding at a CAGR of 10.0% from 2025 to 2030, according to a new report by Grand View Research, Inc. Factors such as increased need to check late-stage drug failures with the adoption of more appropriate toxicity testing methods by pharmaceutical companies are expected to aid revenue generation for the market.
Absorption, distribution, metabolism, and excretion (ADME) toxicology testing is used to test toxic reactions caused by molecules in clinical trials on factors and systemic reactions such as chemical, pharmaceutical, and genetic. These toxicology testing procedures help in effective drug development, which limits or prevents toxic reactions to the body when administered. Toxicity levels are decided on the results of a series of tests conducted in near-natural conditions, which represent almost real-time reactions between the drug and the host.
As of 2017, approximately 43.0% of ADME toxicology testing areas carried out are based on cell culture tech. Cell culture technology is adopted widely owing to advantages such as near-natural conditions and accurate results obtained at a cellular level.
These assays are conducted for several types of toxic reactions or systems where toxic reactions might take place. Some of the toxicity tests are systemic toxicity, renal toxicity, hepatotoxicity, neurotoxicity, and other toxicities that might result in living tissue. Advancements in testing methods are underway and this trend is likely to be picked up by many companies developing drug molecules. This will speed up the drug discovery process and boost the market growth.
ADME Toxicology Testing Market Report Highlights
The market is driven by an increasing ratio of late-stage drug failures, resulting in loss of valuable time and investment for drug development. Growth and increasing adoption of OMICS technology is also expected to boost revenue generation in the coming years
North America is the largest market for ADME toxicology testing owing to the presence of a large number of pharmaceutical companies competing for the commercial launch of novel molecules
Developing regions of Asia Pacific and Latin America are set to grow considerably as many multinational and local players are striving to enter the market. They are also looking to improve their hold in markets that present innovation and growth opportunities
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Chapter 1. Methodology and Scope
1.1. Market Segmentation and Scope
1.2. Segment Definitions
1.2.1. Technology
1.2.2. Method
1.2.3. Application
1.3. Information analysis
1.4. Market formulation & data visualization
1.5. Data validation & publishing
1.6. Information Procurement
1.6.1. Primary Research
1.7. Information or Data Analysis
1.8. Market Formulation & Validation
1.9. Market Model
1.10. Objectives
Chapter 2. Executive Summary
2.1. Market Outlook
2.2. Segment Snapshot
2.3. Competitive Landscape Snapshot
Chapter 3. Market Variables, Trends, & Scope
3.1. Market Lineage Outlook
3.1.1. Parent Market Outlook
3.1.2. Related/Ancillary Market Outlook
3.2. Market Dynamics
3.2.1. Market Driver Analysis
3.2.1.1. High rate of late-stage drug failure
3.2.1.2. Increasing need for novel drug molecules
3.2.1.3. Technological advancements in ADME studies
3.2.2. Market Restraint Analysis
3.2.2.1. Challenges pertaining to in vitro ADME studies
3.3. Industry Analysis Tools
3.3.1. Porter's Five Forces Analysis
3.3.2. PESTEL Analysis
3.3.3. COVID-19 Impact Analysis
Chapter 4. ADME Toxicology Testing Market: Technology Business Analysis
4.1. Segment Dashboard
4.2. Global ADME Toxicology Testing Market Movement Analysis
4.3. Global ADME Toxicology Testing Market Size & Trend Analysis, by Technology, 2018 to 2030 (USD Million)
4.4. Cell Culture Tech
4.4.1. Global Cell Culture Tech Market Estimates and Forecasts, 2018 - 2030 (USD Million)
4.5. High Throughput Tech
4.5.1. Global High Throughput Tech Market Estimates and Forecasts, 2018 - 2030 (USD Million)
4.6. Molecular Imaging
4.6.1. Global Molecular Imaging Market Estimates and Forecasts, 2018 - 2030 (USD Million)
4.7. OMICS Tech
4.7.1. Global OMICS Tech Market Estimates and Forecasts, 2018 - 2030 (USD Million)
Chapter 5. ADME Toxicology Testing Market: Method Business Analysis
5.1. Segment Dashboard
5.2. Global ADME Toxicology Testing Market Movement Analysis
5.3. Global ADME Toxicology Testing Market Size & Trend Analysis, by Method, 2018 to 2030 (USD Million)
5.4. Cellular Assay
5.4.1. Global Cellular Assay Market Estimates and Forecasts, 2018 - 2030 (USD Million)
5.5. Biochemical Assay
5.5.1. Global Biochemical Assay Market Estimates and Forecasts, 2018 - 2030 (USD Million)
5.6. In Silico
5.6.1. Global In Silico Market Estimates and Forecasts, 2018 - 2030 (USD Million)
5.7. Ex-vivo
5.7.1. Global Ex-vivo Market Estimates and Forecasts, 2018 - 2030 (USD Million)
Chapter 6. ADME Toxicology Testing Market: Application Business Analysis
6.1. Segment Dashboard
6.2. Global ADME Toxicology Testing Market Movement Analysis
6.3. Global ADME Toxicology Testing Market Size & Trend Analysis, by Application, 2018 to 2030 (USD Million)
6.4. Systemic Toxicity
6.4.1. Global Systemic Toxicity Market Estimates and Forecasts, 2018 - 2030 (USD Million)
6.5. Renal Toxicity
6.5.1. Global Renal Toxicity Market Estimates and Forecasts, 2018 - 2030 (USD Million)
6.6. Hepatotoxicity
6.6.1. Global Hepatotoxicity Market Estimates and Forecasts, 2018 - 2030 (USD Million)
6.7. Neurotoxicity
6.7.1. Global Neurotoxicity Market Estimates and Forecasts, 2018 - 2030 (USD Million)
6.8. Others
6.8.1. Global Others Market Estimates and Forecasts, 2018 - 2030 (USD Million)