3D Cell Culture Market Size Worth USD 2.19 Billion by 2027; at 10.5% Of CAGR by Top Vendors: Thermo Fisher Scientific Inc., Advanced Biomatrix, Corning Incorporated

February 16 15:13 2021
3D Cell Culture Market Size Worth USD 2.19 Billion by 2027; at 10.5% Of CAGR by Top Vendors: Thermo Fisher Scientific Inc., Advanced Biomatrix, Corning Incorporated
Increasing focus on stem cell research and a rise in government and non-government investments in cancer research are the pivotal factors influencing the global market growth. Market Size – USD 932.95 Million in 2019, Market Growth – CAGR of 10.5%, Market Trends – The extensive use of 3D cell culture in biotechnology

The global 3D cell culture market is expected to be valued at USD 2.19 Billion by 2027 from USD 932.95 Million in 2019, registering a CAGR of 10.5% through the forecast period. Cell culture refers to the growth of human, animal, or plant cells and microorganisms like bacteria and yeast in the laboratory. Cell culture is widely used in cellular and molecular biology and thus provides model systems for cell physiology and biochemistry. A 3D cell culture is the artificial creation of biological cells that grow and interact with their surroundings in all three dimensions. This technique finds significant applications in drug screening, cancer research, stem cell research, and regenerative medicine.

The global 3D cell culture market is expected to account for a significantly high revenue over the projected timeframe. The most fundamental factors bolstering the market growth include the intensifying focus on developing animal testing alternatives, escalating demand for personalized medicine, increasing prevalence of chronic diseases, and augmented government investments in regenerative medicine, cancer research, and stem cell research. The ongoing COVID-19 pandemic has influenced the global 3D cell culture market positively. Researchers have developed innovative 3D tissue-engineered models for COVID-19 and other severe respiratory disorders. Furthermore, they have employed airway and air-liquid interface organoids as antiviral drug development tools for the SARS-CoV-2 virus that causes COVID-19. However, specific factors, such as high spending on cell biology research and inadequate infrastructure for 3D cell-based research, pose major challenges to the global market growth.

The leading market competitors include: Thermo Fisher Scientific Inc., Advanced Biomatrix, Corning Incorporated, Becton Dickinson and Company, Global Cell Solutions Inc., VWR Corporation, Nanofiber Solutions, Synthecon, Inc., 3D Biotek, Tecan Trading AG., and Lonza Group Ltd.

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Key findings of the report:

  • The scaffold-free technology sub-segment is poised to record the highest CAGR of 12.3% over the forecast period. Various problems associated with scaffold-based technologies, such as interference with cell-to-cellular interactions, are a key factor boosting the demand for scaffold-free cell culture techniques. The introduction of new products and advancements in hydrogels for human and cellular physiology further propel this segment’s growth. For instance, in January 2021, the biopharmaceutical giant Adocia introduced a new hydrogel scaffold for cell therapy of Type 1 diabetes.
  • Based on application, the stem cell research sub-segment is estimated to dominate the global 3D cell culture market, registering a 12.5% CAGR. The growing contribution of stem cell research to the treatment of colorectal cancer, HIV/AIDS, spinal cord injuries, vision disorders, congenital disabilities, and Alzheimer’s disease is the pivotal factor fueling this segment’s growth.
  • Among the leading regional markets, the Asia Pacific region is envisaged as the leading market for 3D cell culture, accounting for the highest CAGR of 11.7%. The region’s constantly developing healthcare infrastructure, the surging prevalence of life-threatening diseases like cancer, HIV/AIDS, and Alzheimer’s disease, and considerable government funding for cancer and stem cell research are the primary factors leading to this market’s growth.
  • In March 2020, Nichirei Biosciences Inc. and UPM Biomedicals inked an agreement to provide the advanced UPM’s cell culture products for researchers in Japan. As per the agreement, researchers would be able to access UPM’s GrowDex® hydrogels for advanced stem cell biology and cell culture.


3D Cell Culture Market By Technology (Scaffold-Based, Scaffold-Free, and 3D Bioreactors), By Application (Cancer, Tissue Engineering & Immunohistochemistry, Drug development, Stem cell research, and Others), And By End-user, And Segment Forecasts To 2027, To identify the key trends in the industry, click on the link below:
https://www.reportsanddata.com/report-detail/3d-cell-culture-market

For the purpose of this report, the global 3D cell culture market has been segmented on the basis of technology, application, end-user, and region:

By Technology (Volume, Kilo tons; Revenue, USD Billion; 2017-2027)

  • 3D Bioreactors
  • Scaffold-free
    • Hanging drop microplates
    • Spheroid microplates containing Ultra-Low Attachment (ULA) coating
    • Magnetic levitations & 3D bioprinting
    • Microfluidic 3D cell culture
    • Scaffold-based
      • Hydrogels
      • Polymeric scaffolds
      • Micropatterned Surface Microplates

By Application (Volume, Kilo tons; Revenue, USD Billion; 2017-2027)

  • Cancer
  • Stem cell research
  • Tissue engineering
  • Immunohistochemistry
  • Drug development
  • Others

By End-user (Volume, Kilo tons; Revenue, USD Billion; 2017-2027)

  • Biotechnology and pharmaceutical industries
  • Hospitals and diagnostic centers
  • Research laboratories and institutes
  • Others

By Region (Volume, Kilo tons; Revenue, USD Billion; 2017-2027)

  • North America
    • U.S.
    • Canada
    • Mexico
  • Europe
    • Germany
    • France
    • U.K.
    • Spain
    • Italy
    • Rest of Europe
  • Asia Pacific
    • China
    • India
    • Japan
    • Australia
    • South Korea
    • Rest of Asia Pacific
  • Latin America
    • Brazil
    • Rest of LATAM
  • Middle East & Africa
    • Saudi Arabia
    • South Africa
    • Egypt
    • Rest of MEA

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Table of Content:

Chapter 1. Market Synopsis
    1.1. Market Definition
    1.2. Research Scope & Premise
    1.3. Methodology
    1.4. Market Estimation Technique

Chapter 2. Executive Summary

    2.1. Summary Snapshot, 2018-2027

Chapter 3. Indicative Metrics

Chapter 4. 3D Cell Culture Segmentation & Impact Analysis

    4.1. 3D Cell Culture Material Segmentation Analysis
    4.2. Industrial Outlook
         4.2.1. Market indicators analysis
         4.2.2. Market drivers analysis
                 4.2.2.1. Rapid Growth in the Geriatric Population
                 4.2.2.2. Rising Innovation in 3D Cell Culture Products
                 4.2.2.3. Increased Incidence of Diabetes & Associated Chronic Wounds
         4.2.3. Market restraints analysis
                 4.2.3.1. High cost of products for 3D Cell Culture
    4.3. Technological Insights
    4.4. Regulatory Framework
    4.5. ETOP Analysis
    4.6. Porter’s Five Forces Analysis
    4.7. Competitive Metric Space Analysis
    4.8. Price trend Analysis

Chapter 5. 3D Cell Culture Market By Product Type Insights & Trends

    5.1. Product Type Dynamics & Market Share, 2020 & 2027
    5.2. Moist Wound Dressings

Continue…

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