Brooklyn, NY , April 18, 2016 -- This report provides an in-depth overview of the 3D cell culture market, including its definition, applications, classifications, industry chain structure, policy analysis, and news analysis. The market analysis comprises development history, the development status of major regions, and competitive landscape analysis.
Cell culture is a process by which prokaryotic cells or eukaryotic cells are artificially grown outside their natural environment in a laboratory under controlled conditions. Cell culture is one of the key tools used to study various aspects of cells, including aging, the effect of various bio molecules on cells, mutagenesis studies, and the effect of drugs on cells, carcinogenesis studies, and metabolic studies. Cell culture is also essential for the study of physiology and is used in molecular and cellular biology.
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Cell culture was first initiated as 2D culturing on a Petri dish. However, due to certain limitations of 2D cell cultures such as the environment hampering cell growth, 3D cell culture was introduced.3D cell cultures are an artificially created environment where biological cells are grown so that they interact with the surroundings in all three dimensions. 3D models are more accurate and 3D cells culturing is physiologically more relevant than 2D cell culture environments. Cells in 3D cultures exhibit natural cell-to-cell interactions and synthesize extracellular material as they do in nature.
The rising application of 3D cell culture in fields such as drug discovery, cancer detection, stem cell research, developing model systems for research, manufacturing biologics, and for genetic engineering is boosting the market globally. There have been huge investments done by life science companies for research and development, which results in innovations in stem cell research and also in powerful industry collaborations, driving the global 3D cell culture market. 3D cell cultures are used as model systems to study cellular mechanisms related to various diseases such as Parkinson’s disease, Alzheimer’s disease, and diabetes, and also to evaluate drug response, thus boosting the market for 3D cell culture. The growing demand for biopharmaceuticals and artificial organs is expected to ensure the market’s success in the coming years.
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The manufacturing cost structure analysis of the 3D cell culture industry, along with raw material suppliers, equipment suppliers, price analysis, and labor cost analysis, other cost analysis, and manufacturing process analysis of 3D cell cultures, is given in the report.
Major companies profiled in the report for the purpose of explaining the competitive landscape of the market include: Sigma, Lonza, Bio matrix, Ams Bio, Life Technologies, Labome, Microtissues, Tecan, Lena Bio, 3D Biotek, Scivax Life Sciences, and Corning Incorporated.
Browse Related Research Reports:
- United States 3D Cell Culture Market 2016
- North America 3D Cell Culture Industry 2016
- China 3D Cell Culture Industry 2016
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