Considerably rising application in cancer research, regenerative medicines, and in-vitro environment has pushed the demand for 3D cell culture considerably over the last few years.
Considerably rising application in cancer research, regenerative medicines, and in-vitro environment has pushed the demand for 3D cell culture considerably over the last few years. Researchers from a long time have known the benefits of the application of 2D cell culture models in drug discovery and development. 2D cell culture can be used to establish compatibility with high degree of effectiveness. Recently, 3D cell culture models are adopted by various biotechnology and pharmaceutical companies on account of their growing body of evidences showing higher correlation of 3D cell culture models to in-vivo results. On account of this, 3D cell culture is finding increasing application in the early assessment of drug discovery, regenerative medicine, toxicology, stem cell and cancer research, and tissue engineering.
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3D Cell Culture Market: Driving Factors
A: 3D cell cultures have been in practice for years, however, until recently it was mostly driven by academic curiosity. The rising application of 3D cell culture in biotech and pharmaceutical companies for the purpose of drug discovery and preclinical researches has propelled it forward in the last few years. 3D cell culture models and tools boast improved techniques that make them easier to use and reproducible. This as per experts is one of the primary drivers and going forward to impel wide application of 3D cell culture models and tools. Also, the increasing body of evidences exhibiting benefits has helped the 3D cell culture market advance considerably.
Also, the rising investment in cell culture-based research and development is creating growth opportunities for the market. Funding from international organizations such as International Society for Stem Cell research is a crucial factor fostering growth in the global 3D cell culture market. Furthermore, the market is likely to gain from the rising demand for cellular 3D culture techniques in the coming years.
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A: Lack of expertise to handle 3D cell culture tools is likely to emerge as a key challenge for the market. Its predecessor, which was a two dimensional format was easier to handle. For instance, imaging cells in 3D as against in two dimensions is a challenge at some point. Furthermore, lack of sophistication may hinder growth witnessed in the market to an extent. This is because looping a three-dimensional system, which is relatively simpler to things with more sophistication such as organ-on-chip requires a high level of knowledge. This factor can hinder the market’s expansion to an extent.
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3D Cell Culture Market: Regional Analysis
A: Regionally, the global 3D cell culture market is likely to witness high demand in North America and Europe. The rising incidence of cancer and increasing investment towards research and development of novel therapeutics will aid the market’s expansion in these regions. Furthermore, governments in these regions are supportive of research and development initiatives. Increasing government funding towards the same will give considerable boost to the global 3D cell culture market in the coming years.
Major players in the global 3D cell culture market are Merck, InSphero, Lonza, Thermo Fisher Scientific, Inc., ReproCELL, Inc., Nano3D Biosciences, Inc., Corning Technologies, Synthecon Incorporated, Global Cell Solutions, 3D Boitek, Kuraray Co. Ltd., Hamilton Company, Mimetas, and QGel.
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