Qualitative report "3D Cell Culture Market" Technologically worth around $1.8 billion by 2025 with dominant Key players in the market are Merck & Co, Thermo Fisher Scientific, Inc., Becton, Dickinson and Company, Nano 3D Biosciences, PromoCell GmbH, Corni
A 3D cell culture is a simulated environment in which organic cells are allowed to develop and remain in contact with their surroundings. The global 3D cell culture market is rising steadily due to increased research in this segment, vested interests of the pharmaceutical and biotechnology companies and government actions
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The global market is dominated by both established as well as emerging players. Key players in the market are Merck & Co, Thermo Fisher Scientific, Inc., Becton, Dickinson and Company, Nano 3D Biosciences, PromoCell GmbH, Corning Inc., Biomatrix, Lonza Group, VWR International, LLC, Tecan Trading AG., 3D Biotek LLC., Global Cell Solutions, Inc. and InSphero AG. These companies collaborate with research institutes and laboratories for the development of advanced treatment methods.
Market Trend Outlook Analysis
The potential of this technology to reduce or completely replace use of animals for biological assays are expected to fuel 3D cell culture market. The global 3D cell culture market is projected to be around $1.8 billion by 2025. This growth is attributed to various factors such as increasing research in 3D cell culture, investments by pharmaceutical and biotechnological companies, and increase demand for organ regeneration & transplantation. Rise of tissue regeneration and organ transplantation in acute and chronic diseases is expected to drive research activities in this industry. Additionally, this technique takes less time for cell regeneration and increases cell viability which leads to higher usage of this method as compared to conventional methods. However, compatibility of methods, availability of highly advanced labs, and high cost of setting such labs can restrict growth of 3D cell culture market.
Regional Outlook and Trend Analysis:
North America dominated the overall market in 2016. This is due to large number of collaborations of biotech and pharmaceutical companies with research institutes to developed and implement new technology. However, Asia- Pacific is expected to observe fastest growth with more investment in R&D activities and government initiatives to reduce risk of diseases such as cancer. Majority of key players are focusing on emerging markets such as Asia-Pacific as result of low operating and development cost in these regions.
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3D Cell Culture Market - Product Outlook and Trend Analysis
Scaffold–based cell cultures dominated the global market in 2016, owing to its advantage of easy integration into automated 96-well or 384-well assay workflow, ease of imaging, and flexibility of adjusting biochemical and mechanical property for large scale applications and manufacturing. Bioprinting and micro fluid cultures are expected to grow due to their application in tissue engineering for cell manipulation and creation of extracellular environment supporting growth of cell in vitro. Stem cell-based cultures are expected to witness profitable growth due to their use in human organs and tissue regeneration from embryonic stem cells. These cultures are used by various pharmacy and biotech companies, research laboratories, hospitals, and academic institutes for conducting research.
Market Opportunities - 3D Cell Culture Market
Development of optimized 3D assay methods will act as catalyst for the growth of global 3D cell market. Market will witness increasing commercialization of 3D cell culture technology as result of adoption of green initiatives, improving energy efficiency and various supportive government initiatives. A key trend in 3D cell culture is increasing prevalence of cancer that demands effective treatment options and drugs. Despite 2D cell culture still dominating cell base assay, many companies have started to integrate 3D cell culture for large scale production. The major factor that will drive market growth will be open adoption of innovative technologies in biotech and pharmaceutical companies and increased investments in these sectors.
Micro patterned Surfaces
Hydro gels/ECM Analogs
Attachment Resistant Surfaces
3D Printing/Micro fluidics
Cell-based Assays/Toxicity Screening
Cancer Cell Research
In Vivo Applications for Stem Cell
By End User:
Hospitals & Diagnostic Centers
Biotechnology & Pharmaceutical Industries
Research Laboratories & Institutes
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North America - U.S, Canada, Mexico
Europe – Germany, France, UK, Italy, Spain, Rest of Europe
Asia-Pacific- Japan, China, Australia, India, South Korea, Rest of Asia Pacific
Rest of the World – Brazil, South Africa, Saudi Arabia, United Arab Emirates
Major Table of Contents:
1.1. Report Description
1.2. Research Methodology
1.2.1. Secondary Research
1.2.2. Primary Research
2. Executive Summary
2.1. Key Highlights
3. Market Overview
3.1.1. Market Definition
3.1.2. Market Segmentation
3.2. Market Share Analysis
3.3. Market Dynamics
220.127.116.11. Emerging Markets to Offer Lucrative Growth Opportunities
4. Market Analysis by Regions
....CONTINUED FOR TOC
Some Beneficial Uses of 3d Cell Culture:
• For Drug Testing: Drug testing has been carried out on animal models for a long time. However along-with the rise in ethical issues by such testing came the high costs and time consumed to study the effects of drugs. 3D cell cultures have solved this problem by providing an in vivo response to drugs under in vitro conditions. It is a cost effective technology which saves a lot of time in drug screening.
• Microfluidic Technology: These are also called organs-on-chips that can duplicate the actions of a living organism. They can replicate a tissue function and can also develop a disease model in the laboratory.
• Tissue Engineering: 3D cell cultures are greatly efficient in tissue regeneration. Saving the need to use biomaterials, with the help of these cultures the tissues can be constructed by fibre scaffolds.
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