3D Cell Culture Market Size 2022 to 2030 - Quantitative Research by QYResearch Medical

The Global 3D Cell Culture Market is projected to grow at a CAGR of 15.8% from USD 1,032.9 Million in 2020 to USD 3,319.43 Million in 2030.

The Global 3D Cell Culture Market is projected to grow at a CAGR of 15.8% from USD 1,032.9 Million in 2020 to USD 3,319.43 Million in 2030. The growth is mainly contributed by the government and non-government investments for cancer research & development, coupled with large scale end users for stem cell research. The growing popularity of regenerative medicine, increasing patients for oncological diseases, as well as the demand for 3D cell culture in the pharmaceutical industry, are some of the factors driving the market growth. Moreover, the growing demand for organ transplantation will also have a positive impact on the growth of the market.

The market is solely based on the cell culture procedure, types of cell culture, application of cell culture, primary cell culture, matrigel protocol, cell toxicity assay, spheroid culture protocol, 3d in vitro culture system, 3d stem cell culture, promega proliferation assay are some of the extensively researched and high demanding topics that the prominent players are working on deliberately. Prominent benefits over the 2D cell cultures, 3d cell culture for drug screening, mammalian cell culture, are a few primary propellers of this market. Corning Incorporated has been one of the most popular companies dealing in this market and their products naming, corning matrigel 354277, corning matrigel 356231, corning matrigel 354230 are some of the highest-demanding products available in the market.

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3D cell culture is a satisfactory model simulating the in vivo cell behaviors, organization, morphology, and physiology. Assembling multi-layer 3D cells structures can only be made possible by using scaffolds, which are micro-organized cell supports that greatly influence cell differentiation and proliferation.

However, the expenses of the system and technologies associated with the culture; and lack of experienced and skilled professionals will hamper the market growth. The popularity and ease of 2D cell culture technologies will also have a negative impact on the market.

End-Use Outlook:

The stem cell research application is forecasted to have the highest CAGR of 12.3% during the forecast period. Many researchers have contributed to clinical trials of stem cell approaches to treating colorectal cancer, spinal cord injury, vision problems, HIV/AIDS and Alzheimer’s disease.

The cancer research application accounts for the largest market share of nearly 30% in the year 2019, contributed by the increasing cases of cancer as well as investments for cancer research and development from government and non-government organizations.

Type Outlook:

The scaffold-free products are forecasted to witness the highest growth rate of 12.3% during the forecast period, owing to the challenges associated with the use of scaffolds, such as interference of scaffolds with cell-to-cellular interactions and in the assembly of cell produced Extra Cellular Matrices (ECM).

Scaffold-free techniques form non-adherent cell aggregates called spheroids, to mimic the solid tissues by secreting their extracellular matrix and displaying differential nutrient availability. These techniques are consistent in size and shape and are better in-vitro cellular models for high-throughput screening.

Regional Outlook:

The Asia Pacific region is forecasted to witness the highest growth rate of 11.7% during the forecast period owing to developing healthcare & pharmaceutical industry in this region.

Asia Pacific has been adopting and advancing itself in terms of technology, owing to the growing population and rise in the number of people suffering from dangerous diseases like cancer, spinal cord injury, vision problems, HIV/AIDS, and Alzheimer’s disease, among others.

North America accounts for the largest market share of nearly 42% in the year 2018, owing to the presence of key pharmaceutical and biotechnology companies. Moreover, funding in research and development, especially for cancer research in the US is another factor driving the growth of the market in the region.

Related Reports:

Market-O-Nomics

  • The growth of the 3D bioreactor based products is contributed by the use of 3D bioreactor culture systems in combination with innovative sensor technologies. These products are developed to mimic the in vivo physiological environment to promote cell growth and differentiation.
  • Several aspects of the physiological environment rendered by bioreactors include temperature; oxygen concentration; carbon-dioxide concentration; mechanical stimuli (fluid shear stress); chemical stimuli; electrical current.
  • Many researchers have contributed to clinical trials of stem cell approaches to treating colorectal cancer, spinal cord injury, vision problems, HIV/AIDS and Alzheimer’s disease.
  • Many researchers have also used stem cells to uncover essential insights about kidney disease, ALS, arthritis, Zika virus, congenital disabilities and a wide variety of injuries.
  • Research laboratories and institutes segment are forecasted to have the highest CAGR of 13.2% during the forecast period, due to rising investments by the government and non-government organizations towards research projects conducted by academic and research institutes.
  • The growth of the European market is contributed by investments in R&D activities.
  • The scaffold-based products account for the largest market share of ~41% in the year 2018, owing to the ability of scaffold-based products to mimic in vivo conditions. Scaffolds tools are made of polymeric biomaterials that have the advantage to provide structural support for cell attachment and tissue development.
  • The market is segmented on the basis of applications into cancer, tissue engineering & immunohistochemistry, drug development, stem cell research, and others.
  • The cancer research application accounts for the largest market share of ~30% in the year 2018, contributed by the increasing cases of cancer as well as investments for cancer research and development from government and non-government organizations.
  • The market is segmented on the basis of end users into biotechnology and pharmaceutical industries, research laboratories and institutes, hospitals and diagnostic centers, and others.
  • Biotechnology and pharmaceutical industries account for the largest market share of nearly 44% in the year 2018, owing to the rapid adoption of these products for drug discovery, toxicity screening, and development of regenerative medicine.
  • Moreover, the focus and investments of key regions towards a well-established and mature pharmaceutical and biotechnology industry will also propel market growth.

Companies considered and profiled in this market study

Advanced Biomatrix, 3D Biotek, corning Incorporated, Becton and Dickinson Company (BD), Thermo Fisher scientific Inc., Global cell solutions Inc., Nanofiber solutions, VWR Corporation, Synthecon incorporated, Lonza Group Ltd., and Tecan Trading AG., among others are leading players involved on the global 3D Cell Culture market.

Start-up Traction

The 3D Cell Culture Market industry poses significant amount of opportunities for small manufacturers and startups to come up with cost-effective solutions in manufacturing of 3D Cell Culture products. There is a continuous growth in demand from the clinical & diagnostic centers, which can encourage several startups to launch innovative products in this market.

Deals Landscape

Mergers and Acquisitions are an integral part of the 3D Cell Culture industry. Amongst those cases few are highlighted below.

  • In May 2018, Greiner Bio-One North America, Inc. announced their acquisition of 3D Cell Culture Technology, which was previously owned by Nano 3D Biosciences, Inc. Being as international distributor of these healthcare products since the year 2016, Greiner Bio-One then took the initiative to become one of the most prominent provider of the technology worldwide.

Expert Insights:

Reports and Data forecasts in the 3D Cell Culture industry having considered the interviews with some of most the prestigious personalities and experts in this market. According to the industry experts, the growth of the market is mainly contributed by the government and non-government investments for cancer research & development, coupled with the large scale end users for stem cell research. The growing popularity of regenerative medicine, increasing patients of oncological diseases, as well as the demand for 3D cell culture in the pharmaceutical industry, are some of the factors driving the market growth. Moreover, the growing demand for organ transplantation will also have a positive impact on the growth of the market.

Segments covered in the report

This report forecasts revenue growth at a global, regional & country level, and provides an analysis of the market trends in each of the sub-segments from 2020 to 2030. The scope of the report can be defined as:

For the purpose of this report, Reports and Data have segmented global 3D cell culture Market on the basis of technology, application, end user, and region:

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3D Cell Culture Market Report Scope

Segments covered By Technology Outlook, Application Outlook, End users Outlook, Regional Outlook

By Technology Outlook

Scaffold-based

Hydrogels

Polymeric scaffolds

Micropatterned Surface Microplates

Scaffold-free

Hanging drop microplates

Spheroid microplates containing Ultra-Low Attachment (ULA) coating

Microfluidic 3D cell culture

Magnetic levitations & 3D bioprinting

3D Bioreactors

By Application Outlook

Cancer

Tissue engineering & Immunohistochemistry

Drug development

Stem cell research

Others

By End users Outlook

Biotechnology and pharmaceutical industries

Research laboratories and institutes

Hospitals and diagnostic centers

Others

Regional scope

North America

Europe

Asia Pacific

Latin America

Middle East & Africa

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