Global 3D Cell Culture Market Is Expected To Grow At 23.2% Compound Annual Growth Rate (CAGR), by Revenue, from 2017 – 2025: Factor & Equilibrium

Rising Application of 3D Cell Culture in Cancer Research and Drug Development is Fuelling the Growth of the Market: Factor & Equilibrium

As per a new market research report published by Factor & Equilibrium (www.factorandequilibrium.com), “3D Cell Culture Market – Global Industry Insights Market Size, Estimation and Growth Forecast By Technology (Scaffold Based {Hydrogels, Solid Scaffolds and Others} and Scaffold Free {Microfludics, Hanging Drop Microplates, Bioreactors, Magnetic Levitations & 3D Bioprinting and Others}), By Application (Cancer Research, Drug Development, Tissue Engineering, Stem Cell Research and Others), By End User (Research Laboratories, Biotechnology and Pharmaceutical Industries, Hospitals and Diagnostic Centers and Others), & By Regions, 2017-2025” is expected to reach USD 3,134.4 Million by 2025 in terms of revenue. In 2016, the market was valued USD 480.7 Million in terms of revenue.

 

Browse 27 Data Tables and 43 Figures in the full report at https://www.factorandequilibrium.com/market-report/3d-cell-culture-market

Market Overview

The 3D cell culture market is expected to grow at an exponential rate during 2017 to 2025. Three-dimensional (3D) cell culture more accurately represents the microenvironment of tissue cells. Behavior of cells in 3D culture is almost similar to their in vivo cellular responses. 3D cell culture model is used in drug discovery and development, cancer research, toxicology testing, bio sensor manufacturing and stem cell research among others. Growing application of 3D cell culture in regenerative medicine/tissue engineering has created growth opportunity for global 3D cell culture market. Furthermore, rising application of 3D cell culture in tumor cell research is driving the growth of the market.

 

Rising application of 3D cell culture in cancer research has been boosting the growth of the market

Segmentation Overview

Based on technology, the global market has been segmented into scaffold based and scaffold free. Scaffold based technology has been further segmented into hydrogels, solid scaffolds and others. Scaffold free technology has been further segmented into microfludics, hanging drop microplates, bioreactors, magnetic levitations & 3D bioprinting and others. In scaffold based technology, structural support is provided for the growth of the cells. Owing to wide scale applications and convenience in usage, scaffold based technology had the largest share in the 3D cell culture market size in 2016. Hydrogel scaffold based 3D cell culture is preferred in tissue engineering owing to their structural and compositional similarities to the natural extracellular matrix.

 

In terms of revenue, scaffold based was the largest technology type for 3D cell culture market in 2016

 

Based on application, 3D cell culture market has been segmented into cancer research, drug development, tissue engineering, stem cell research and others. As of 2016, in terms of revenue, cancer research held the largest share, accounting for more than 30% of total market size. As compared to 2D model, 3D cell culture model replicate in vivo condition for cancer tumor in more efficient manner. In addition, 3D model offers more realistic drug response of cancer cell which actually helps researchers to develop more efficient drugs.

 

In terms of revenue, cancer research was the largest application of 3D cell culture in 2016

 

By end user, the market has been divided into research laboratories, biotechnology and pharmaceutical industries, hospitals and diagnostic centers and others. Rising demand for developing disease specific drugs, growing application of 3D cell-based biosensors and gather physiologically relevant information during drug discovery have increased popularity of 3D cell culture in biotechnology and pharmaceutical industries. As of 2016, in terms of revenue, biotechnology and pharmaceutical industries held the largest share, accounting for more than 40% of total market size.

 

In terms of revenue, biotechnology and pharmaceutical industries were the largest end user for 3D cell culture market in 2016

 

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Regional Overview

By region, the global 3D cell culture market has been segmented into four regions; North America, Europe, Asia-Pacific (APAC) and Rest of the World (RoW). In 2016, North America occupied the largest revenue share of the 3D cell culture market size, accounting for more than 34%. The large market share in North America can be attributed to increasing investments of pharmaceutical companies, rising application of 3D cell culture in cancer research and rising demand of 3D cell culture in tissue engineering among others.

 

North America occupied the largest revenue share of the market

 

Leading Player Mapping

Some major players in the market are: Becton, Dickinson and Company (The U.S.), Corning Incorporated (The U.S.), Thermo Fisher Scientific (The U.S.), Lonza Group (Switzerland), 3D Biotek LLC (The U.S.), Sigma-Aldrich Corporation (The U.S.), InSphero AG (Switzerland), Hi Media Laboratories (India), ReproCELL Europe Ltd (The U.K) and Promocell GmbH (Germany) among others.

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The market has been segmented as follows:

3D Cell Culture Market, by Technology

  • Scaffold Based
    • Hydrogels
    • Solid Scaffolds
    • Others
  • Scaffold Free
    • Microfludics
    • Hanging Drop Microplates
    • Bioreactors
    • Magnetic Levitations & 3D Bioprinting
    • Others

3D Cell Culture Market, by Application

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

3D Cell Culture Market, by End User

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

3D Cell Culture Market, by Region:

  • North America  (The U.S. and Canada)
  • Europe (Germany, The U.K, Switzerland and Rest of the Europe)
  • Asia Pacific (China, Japan and Rest of the Asia Pacific)
  • Rest of the World (RoW)

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