3D Cell Culture Market Size to Hit USD 3937.7 Million by 2030 at 14.9% CAGR – Report by Market Research Future (MRFR)

3D Cell Culture Market Trends and Insights By Technique (Scaffolds Based 3D Cell Culture, Scaffold-Free 3D Cell Culture), Product (Consumables), Application (Cancer Research) and End-User (Pharmaceutical & Biotechnology Companies), Competitive Market Growth, Size, Share and Forecast to 2030


New York, USA, Dec. 13, 2022 (GLOBE NEWSWIRE) -- 3D Cell Culture Market Overview

According to a Comprehensive Research Report by Market Research Future (MRFR),"3D Cell Culture Market Information By Technique, Product, End-User, Application, And Region - Forecast till 2030", the market size is expected to reach USD 3,937.7 Million by 2030 at 14.9% CAGR during the forecast period 2020-2030.

Market Synopsis

It has been demonstrated that cells developed in 3D cell culture models are physiologically relevant. Numerous studies of biological mechanisms, such as cell morphology, cell number monitoring, viability, proliferation, differentiation, migration, and invasion of tumor cells into nearby tissues, response to stimuli, stimulation of angiogenesis, drug metabolism, immune system evasion, gene expression, and protein synthesis, and in-vivo relevance, have shown improvements as a result of their work. To examine and analyze the etiology of diseases, 3D cell cultures are helpful, which facilitates their acceptance in the field of research. 3D cell cultures' advantages over traditional 2D cell cultures in terms of cell-to-cell and cell-to-matrix connections are largely responsible for this growth rate.

A 3D cell culture, in contrast to 2D environments like a Petri dish, encourages cells to expand in all aspects in an in-vitro setting, mimicking how they would act in an in-vivo setting. Moreover, many research entities adopted 3-dimensional cell culture techniques due to the biomimetic tissue constructs employed to produce 3D organotypic structures. A new approach to conventional methods for COVID-19, cancer, and other medical illnesses has emerged: 3D tissue-engineered models.

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Report Scope:

Report AttributeDetails
Market Size in 2030USD 3937.7 Million
CAGR14.9%
Base Year2021
Forecast Period2022-2030
Historical Data2020
Forecast UnitsValue (USD Million)
Report CoverageRevenue Forecast, Competitive Landscape, Growth Factors, and Trends
Segments CoveredBy Technique, Product, Application and End-User.
Geographies CoveredNorth America, Europe, Asia-Pacific, and Rest of the World (RoW)
Key Market DriversRising occurrence of chronic conditions and increasing safety risks and hygiene
Increasing demand for organ transplantation

Market Competitive Landscape:

The vital companies operating in the 3D cell culture market are:

  • Biotechnology Innovation Organization (BIO)
  • Food and Drug Administration (FDA)
  • Thermo Fisher Scientific Inc
  • Lonza
  • Corning Incorporated
  • Kuraray Co Ltd
  • National Center for Biotechnology Information (NCBI)
  • National Science Foundation (NSF)
  • Pharmaceutical Research & Manufacturers of America (PhRMA)
  • Bio Century
  • Becton, Dickinson, and Company
  • Merck KGaA

Market Dynamics:

Market Drivers:

The 3D Cell Culture Market is anticipated to be driven by technological developments in this industry, a growing interest in finding alternatives to animal testing, an increase in the prevalence of chronic diseases, and the introduction of new products. One of the things anticipated to drive the expansion of the 3D cell culture market is the growing public awareness of oncological disorders like lung cancer and skin cancer and the alluring advantages of 3D cell culture, like high strength and affordable prices. Unlike other cell culture techniques, 3D cell culture is quite popular because of its practicality and cutting-edge qualities. Both scaffold-free and scaffold-based 3D cell cultures are possible. The scaffolds are in charge of supporting the cells. Market expansion is anticipated to be aided by a greater focus on investigating alternatives to animal testing. This is because regulatory organizations are working harder to eliminate, minimize, and improve test animals' usage while offering rehabilitation for those animals.

It is also projected that non-animal models that effectively translate toxicological and pharmacological data to humans would support the demand for alternatives to animal research. Introducing new goods and the widespread use of 3D methods in biological research are two significant drivers propelling market expansion. Similar to RAFT 3D cultures produced, typical 2D analytical techniques can be easily used. Numerous laboratories throughout the world have embraced these revolutionary technologies because they don't call for many modifications to the 2D culture methods that are now in use. This industry is being driven ahead by a growing emphasis on finding alternatives to animal testing, a rising commonness of chronic sicknesses, a growing emphasis on personalized medicine, and a growing amount of money for research.

Market Restraints:

The deployment of 3D cell cultures comes with higher implementation costs, and the outcomes can be unpredictable. Until they start, lack of consistency will continue to be a major market issue. In addition, high technology expenses and a lack of qualified workers are also projected to restrain market expansion. Additionally, the COVID-19 epidemic has caused new challenges for 3D cell culture in balancing the demand and supply of 3D cell culture components.

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COVID 19 Analysis

For pharmaceutical and biotechnology businesses engaged in the 3D cell culture industry, the overall impact of the COVID-19 pandemic is anticipated to be moderate. Due to the shutdown, the businesses suffered, which has caused a decline in 3D cell culture production and utilization among researchers. However, the rapid advancement of stem cell treatment research and increased R&D for creating regenerative medications for treating COVID-19 patients are making up for this negative impact. The significant utility of 3-dimensional representations for research on respiratory disorders and Covid-19 is anticipated to provide the market with substantial potential opportunities. Organoids of the airway and air-liquid interface have been employed as experimental virology platforms to research the immune function and infectivity of SARS-CoV-2 and instruments for discovering and developing antiviral medicines.

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3D Cell Culture Market Segmentation

By end-user, the market includes pharmaceutical & biotechnology companies.

By technique, the market includes scaffold-based 3D cell culture and scaffold-free 3D cell culture. By product into consumables.

By application into cancer research.

3D Cell Culture Market Regional Insights

Due to numerous pharmaceutical and biotechnology firms that use 3D culture technology in cooperation with research institutions and clinical laboratories for improving regenerative medications and drug development & development, North America is anticipated to maintain its dominant position during the forecast period. Several Americans are one of the top 3D cell technology patent applicants. The likelihood of American applicants developing their invention domestically is higher. In the United States, numerous contract research organizations operate on projects involving stem cells, oncology, and regenerative medicine.

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Due to its rapid economic development and cheap operating costs, Asia-Pacific has lucrative prospects for major players engaged in the 3D cell culture market and will grow quickly during the forecast period. The desire for novel treatments and cures has increased due to the aging population and the rising incidence of cancer. Advancements in the development of regenerative medicine and a highly established healthcare infrastructure are driving market expansion in China.

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