A reliable In-Vitro Toxicology Testing Market Research Report makes available fluctuations in CAGR values during the forecast period of 2023-2030 for the market. The competitive landscape section of the report highlights a clear insight about the market share analysis of major industry players. This market report offers all-inclusive study about production capacity, consumption, import and export for all the major regions across the world. According to this marketing report, the global market is anticipated to witness a moderately higher growth rate during the forecast period. With the proper use of excellent practice models and brilliant method of research, an outstanding In-Vitro Toxicology Testing market report is generated which aids businesses to unearth the greatest opportunities to prosper in the market.
Data Bridge Market Research analyzes that the global in-vitro toxicology testing market is expected to reach USD 27,952.36 million by 2030, at a CAGR of 12.3% during the forecast period. This market report also covers pricing analysis and technological advancements in depth.
The term in vitro refers to a method for testing hazardous compounds on a section of an organism that has been isolated. It is used to identify harmful chemicals and to detect toxicity in new products such as medications, cosmetics, and food additives at an early stage of development. In vitro toxicity testing is mostly used in medication development to assess safety and to evaluate compounds according to their potency. In vitro toxicity testing can also be used to measure drug absorption, distribution, metabolism, and excretion (ADME), dosage response, and threshold response.
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In-vitro toxicology testing involves testing chemicals, drugs, and other substances to assess their potential toxicity using in-vitro (non-animal) testing methods. In-vitro toxicology testing involves using cells, tissues, or cellular components outside their natural environment to evaluate substances' safety and potential hazards. The market encompasses a wide range of in-vitro tests and assays that assess various aspects of toxicity, including but not limited to cytotoxicity, genotoxicity, carcinogenicity, organ toxicity, reproductive toxicity, and environmental toxicity. These tests are conducted on cell cultures, tissue models, or other in-vitro systems to mimic the response of biological systems to potential toxicants.
Some of the major market players operating in the global in-vitro toxicology testing market are Thermo Fisher Scientific Inc.(U.S.), Labcorp Drug Development (U.S.), Merck KGaA (Germany), Charles River Laboratories (U.S.), Lonza (Switzerland), Bio-Rad Laboratories, Inc. (U.S.), Catalent, Inc (U.S.), SGS Société Générale de Surveillance SA (Switzerland), QIAGEN (Germany), Intertek Group plc. (UK), Eurofins Scientific (Luxembourg), Promega Corporation (U.S.), Aragen Life Sciences Ltd. (India), Cyprotex Plc. (UK), Shanghai Medicilon Inc. (China), Creative Biolabs (U.S.), BioIVT (U.S.), AAT Bioquest, Inc. (U.S.), Gentronix (UK), IONTOX (U.S.), InSphero (U.S.), MB Research Laboratories (U.S.), Creative Bioarray (U.S.), and Preferred Cell Systems (U.S.) among others.
Global In-Vitro Toxicology Testing Market Dynamics
This section deals with understanding the market drivers, advantages, opportunities, restraints, and challenges. All of this is discussed in detail below:
DRIVERS
- Increasing demand for toxicology testing products
The main activity of the pharmaceutical industry is quality management. Drugs must be sold as formulations that are sterile, therapeutically active, reliable, and predictable in their performance. New and improved medicinal agents are being developed at an accelerated speed. At the same time, more exact and sophisticated analytical methods are being developed for their evaluation. The Food and Drug Administration has issued several guidance documents for industry, such as safety testing of drug metabolites, in-vitro metabolism and transporter-mediated drug-drug interaction studies, and clinical drug interactions studies.
There is a need for sterile medical products for patient safety, along with safeguarding pharmaceutical and medical device companies from a product recall, further escalating the market demand. Therefore, increasing demand for toxicology testing products in the pharmaceutical and biotechnology industry drives the growth of the market.
- Rapidly growing pharmaceutical and medical device industry
Many revolutionary trends and advances have been witnessed by the pharmaceutical and medical device industries, dramatically improving the medicines available to patients globally. It was possible to witness the effect of artificial intelligence and big data on the diagnosis and treatment of diseases.
Combined with their potential to remedy previously untreatable diseases, biopharmaceutical drugs' effectiveness, and protection help pharmaceutical companies succeed. An opportunity for sustained healthy growth supports the existing biologics-development pipeline. Since 1995, the number of biotech patents applied annually has increased by 25%. More than 1,500 biomolecules are presently undergoing clinical trials, and the biologics success rate has so far been more than double that of small-molecule drugs, with 13% of biopharmaceuticals entering the phase I testing phase going on to launch.
The prosperity and growth of these industries proportionally increase the demand for toxicity testing for the quality control of the products developed by them. Therefore, the rapidly growing pharmaceutical and medical device industries act as a driver for the growth of the market.
Global In-Vitro Toxicology Testing Market Scope
The global in-vitro toxicology testing market is segmented into six notable segments: product and service, toxicology end point and test, technology, method, industry, and distribution channel. The growth amongst these segments will help you analyze meager growth segments in the industries and provide the users with a valuable market overview and insights to help them make strategic decisions for identifying core market applications.
Product and Service
- Consumables
- Services
- Assay
- Equipments
- Software
Based on product and service, the global in-vitro toxicology testing market is segmented into consumables, services, assays, equipments, and software.
Toxicology End Point and Test
- ADME (Absorption, Distribution, Metabolism, & Excretion) Testing
- Cytotoxicity Testing
- Genotoxicity Testing
- Dermal Toxicity Testing
- Ocular Toxicity Testing
- Organ Toxicity Testing
- Skin Irritation, Corrosion, & Sensitization Testing
- Phototoxicity Testing, and Other Toxicity Endpoints & Test
Based on toxicology end point and test, the market is segmented into ADME (absorption, distribution, metabolism, & excretion) testing, cytotoxicity testing, genotoxicity testing, dermal toxicity testing, ocular toxicity testing, organ toxicity testing, skin irritation, corrosion, & sensitization testing, phototoxicity testing, and other toxicity endpoints & tests.
Technology
- Cell Culture Technologies
- High-Throughput Technologies
- Molecular Imaging
- OMICS Technology
Based on technology, the market is segmented into cell culture technologies, high-throughput technologies, molecular imaging, and OMICS technology.
Method
- Cellular Assays
- Biochemical Assays
- Ex-Vivo Models
- In Silico Models
Based on method the market is segmented into cellular assays, biochemical assays, ex-vivo models, and in silico models.
Industry
- Pharmaceutical & Biopharmaceutical Companies
- Diagnostics
- Food
- Chemicals
- Cosmetics & Household Products
Based on industry the market is segmented into pharmaceutical & biopharmaceutical companies, diagnostics, food, chemicals, cosmetics & household products.
Distribution Channel
- Direct Tender
- Retail Sales
- Others
Based on distribution channel, the market is segmented into direct tender, retail sales, and others.
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The country section of the in-vitro toxicology testing market report also provides individual market impacting factors and changes in regulation in the market domestically that impacts the current and future trends of the market. Data points such as consumption volumes, production sites and volumes, import export analysis, price trend analysis, cost of raw materials, down-stream and upstream value chain analysis are some of the major pointers used to forecast the market scenario for individual countries. Also, presence and availability of global brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of domestic tariffs and trade routes are considered while providing forecast analysis of the country data.
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