The Australian 3D cell culture market is expected to witness a significant growth with the CAGR of approximately 15% during the forecast period. 3D cell culture is one of the new evolving fields of research and technology in the market. With this technology, a 3D environment is provided that is used for the growth of cells in all directions. The 3D environment provided by this technology gives more accurate results as comparable to 2D procedures. Increasing research in 3D cell culture, initiatives taken by the governments to implement research in 3D cell culture, will create future opportunities for the growth of the 3D cell culture market in the future.
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The Australian 3D cell culture market is segmented on the basis of method, product type, application and end-user. Based on the method, the market is segmented into Scaffold-Based 3d Cell Culture Method, Forced-Floating Method, Hanging Drop Method, Agitation Based Method, Microfluidics-Based 3d Cell Culture, and Magnetic Levitation & 3d Bioprinting. Out of which scaffold-based 3D cell culture method segment includes hydrogels, other (non-gel polymer), scaffold-free cell culture method. Based on the application, the market is segmented into scaffold-based 3D cell culture, hydrogels/ecm analogs, solid scaffolds, micropatterned surfaces, scaffold-free 3D cell culture, low-adhesion microplates, hanging drop plates, 3D bioreactors, and 3D petri dishes. Based on the application, the market is segmented into cancer and stem cell research, drug discovery, toxicology, and tissue engineering & regenerative medicine. Based on the end-user, the market is segmented into Pharmaceutical & Biotechnology Companies and Research Institutes.
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Australian 3D Cell Culture Market Segmentation
By Method
· Scaffold-Based 3d Cell Culture Method
· Hydrogels
· Other (Non-Gel Polymer)
· Scaffold-Free Cell Culture Method
· Forced-Floating Method
· Hanging Drop Method
· Agitation Based Method
· Microfluidics-Based 3d Cell Culture
· Magnetic Levitation & 3d Bioprinting
By Product Type
· Scaffold-Based 3D Cell Culture
· Hydrogels/Ecm Analogs
· Solid Scaffolds
· Micropatterned Surfaces
· Scaffold-Free 3D Cell Culture
· Low-Adhesion Microplates
· Hanging Drop Plates
· 3D Bioreactors
· 3D Petri Dishes
By Application
· Cancer And Stem Cell Research
· Drug Discovery
· Toxicology
· Tissue Engineering & Regenerative Medicine
By End-User
· Pharmaceutical & Biotechnology Companies
· Research Institutes
Company Profiles
· Thermo Fisher Scientific, Inc
· Biospherix
· Lonza Group Ltd.
· Merck KGAA
· Corning Inc.
· Becton, Dickinson, and Company
· PerkinElmer, Inc.
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