3D Cell Culture Market Size Worth $3.2 Billion By 2027 | CAGR: 11.3%: Grand View Research, Inc.

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3D Cell Culture Market Size Worth $3.2 Billion By 2027 | CAGR: 11.3%: Grand View Research, Inc.

March 20
13:16 2020
3D Cell Culture Market Size Worth $3.2 Billion By 2027 | CAGR: 11.3%: Grand View Research, Inc.

Grand View Research, Inc. – Market Research And Consulting.
The global 3D cell culture market size was valued at USD 1.4 billion in 2019 and is anticipated to witness a CAGR of 11.3% during the forecast period.

The global 3D cell culture market size is expected to reach USD 3.2 billion by 2027, expanding at a CAGR of 11.3%, according to a new report by Grand View Research, Inc. A rise in the adoption of in-vivo models for a better understanding of cell behavior is anticipated to fuel market growth.

Expected emergence of 3D optimized kits, protocols, and assays and evolution of different assay techniques are anticipated to provide growth avenues to this market in the coming years. Since, 3D cultures closely mimic a typical organ microarchitecture and morphology, resembling the in-vivo model, there are substantial efforts taken towards developing in-vitro 3D cellular models.

China 3D cell culture market size, by application, 2016 - 2027 (USD Million)

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A rise in demand for organ transplantation and tissue engineering for the treatment of chronic diseases is expected to drive research, impelling market growth through to 2027. Moreover, the advent of new technologies such as the lab-on-a-chip technique, based on the principle of microfabricated tissue component culturing, is anticipated to drive the market.

Key suggestions from the report:

  • The scaffold based techniques segment accounted for a major share in 2019 and is projected to maintain its dominance throughout the forecast period
  • Rising demand for three-dimensional cellular model-based research coupled with an increased incidence of chronic diseases is anticipated to propel market growth
  • Hydrogels are the most commonly used scaffold-based methods. Therefore, the hydrogels segment occupied a major share of the scaffold-based technologies in 2019
  • Enzymatically triggered peptide hydrogels for three-dimensional cell encapsulation and culture are expected to drive R&D in this segment
  • The hanging drop microplates segment occupied a major share of the scaffold-free technologies used in these culture techniques
  • This is because hanging drop microplates do not interfere with cell polarity and thus enable efficient cell growth in in vivo conditions
  • Cancer was estimated to be the major application segment in 2019 and is expected to remain so throughout the forecast period
  • Ongoing research to harness the potential of spheroid models for the development of new anticancer therapies is anticipated to drive R&D in the segment
  • Adoption of three-dimensional cellular models for studying cancer biology in preclinical screening and testing as a result of the availability of customized microenvironments is expected to increase in the coming years
  • Biotechnology and pharmaceutical organizations accounted for the largest share owing to a rise in the adoption of these culture techniques in drug discovery and tissue engineering
  • Lucrative opportunities offered by emerging nations has attracted investments from global firms in the region, thus driving the 3D cell culture market in Asia Pacific region at the fastest growth rate throughout the forecast period
  • Merck KGaA; Global Cell Solutions, Inc.; Thermo Fisher Scientific, Inc.; Corning, Inc.; PromoCell GmbH; Greiner Bio One International GmbH; 3D Biomatrix; 3D Biotek LLC; Lonza; Avantor Performance Materials, LLC; Tecan Trading AG; and InSphero are key players operating in this market
  • These participants are engaged in new product development and strategic alliances to maintain the market share.

Global 3D cell culture market share, by end use, 2019 (%)

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Grand View Research has segmented the global 3D cell culture market on the basis of technology, application, end use, and region:

3D Cell Culture Technology Outlook (Revenue, USD Million, 2016 – 2027)

  • Scaffold Based
    • Hydrogels
    • Polymeric Scaffolds
    • Micro-patterned Surface Microplates
    • Nanofiber Based Scaffolds
  • Scaffold Free
    • Hanging Drop Microplates
    • Spheroid Microplates with ULA coating
    • Microfluidic 3D Cell Culture
    • Magnetic Levitations & 3D Bioprinting
  • Bioreactors

3D Cell Culture Application Outlook (Revenue, USD Million, 2016 – 2027)

  • Cancer
  • Tissue Engineering & Immunohistochemistry
  • Drug Development
  • Stem Cell Research
  • Others

3D Cell Culture End-use Outlook (Revenue, USD Million, 2016 – 2027)

  • Biotechnology and Pharmaceutical Industries
  • Research Laboratories and Institutes
  • Hospitals and Diagnostic Centers
  • Others

3D Cell Culture Regional Outlook (Revenue, USD Million, 2016 – 2027)

  • North America
    • U.S.
    • Canada
  • Europe
    • Germany
    • U.K.
  • Asia Pacific
    • China
    • Japan
  • Latin America
    • Brazil
  • MEA
    • South Africa

Find more research reports on Biotechnology Industry, by Grand View Research:

Scaffold Technology Market – Global scaffold technology market was valued at USD 610.0 million in 2015.

Genomics In Cancer Care Market – The global cancer genomics market size was valued at USD 9,216 million in 2014 and is expected to grow at CAGR of 17.3% over the forecast period.

About Grand View Research

Grand View Research provides syndicated as well as customized research reports and consulting services on 46 industries across 25 major countries worldwide. This U.S.-based market research and consulting company is registered in California and headquartered in San Francisco. Comprising over 425 analysts and consultants, the company adds 1200+ market research reports to its extensive database each year. Supported by an interactive market intelligence platform, the team at Grand View Research guides Fortune 500 companies and prominent academic institutes in comprehending the global and regional business environment and carefully identifying future opportunities.

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