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3D Cell Culture Technologies Market Size, Emerging Trends, Growth Rate, Business Opportunities And Forecast To 2033

05-16-2024 08:01 AM CET | IT, New Media & Software

Press release from: The Business research company

3D Cell Culture Technologies Market

3D Cell Culture Technologies Market

The 3D cell culture technologies market size has grown rapidly in recent years. It will grow from $2.85 billion in 2023 to $3.39 billion in 2024 at a compound annual growth rate (CAGR) of 19.0%. The growth in the historic period can be attributed to advancements in cell biology, drug development, rising incidence of chronic diseases, government funding.

The 3D cell culture technologies market size is expected to see rapid growth in the next few years. It will grow to $6.94 billion in 2028 at a compound annual growth rate (CAGR) of 19.6%. The growth in the forecast period can be attributed to pharmaceutical industry, increasing research and development, environmental and ethical considerations. Major trends in the forecast period include personalized medicine, technological advancements, bioprinting, regenerative medicine.

Market Overview -
Cell culture is a process for developing substrates for the safe production of viral vaccines. 3D cell culture is an in vitro technique wherein the cells can grow in an artificially created environment.

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Increased Demand For Organ Transplantation Boosts The 3D Cell Culture Technologies Market
The increasing requirement for organ transplantation is driving the 3D Cell Culture Technologies Market. 3D cell culture helps in forming a three-dimensional structure which further helps in mimicking the tissue or organ and therefore helps in organ transplantation. 3D cell structures are capable of tissue and organ regeneration as well as providing the provision for drug toxicology screening. For instance, in January 2023, according to United Network for Organ Sharing (UNOS), a US-based non-profit organization, In 2022, 42,887 organ transplants were performed in the United States, an increase of 3.7% over 2021. A total of 14,903 people became deceased organ donors nationwide in 2022, representing the twelfth consecutive record year for deceased donations and an increase of 7.5% over 2021. As the medical criteria for deceased organ donation continue to broaden based on favorable clinical experience, increasing proportions of donors come from less traditional categories of eligibility. In 2022, 4,776 people donated after circulatory death (DCD donors) as opposed to brain death, representing an increase of nearly 14% over the 2021 total. There were 5,789 deceased donors aged 50 or older, the first time there have been more than 5,000 donors of that age range in a single year.

Competitive Landscape -
Major companies operating in the 3D cell culture technologies market include Becton Dickinson and Company, Corning Incorporated, Eppendorf AG, GE Healthcare a division of General Electric Company, Merck KGaA, Thermo Fisher Scientific Inc., Lonza Group AG, HiMedia Laboratories Pvt. Ltd., Agilent Technologies Inc., PromoCell GmbH, CellGenix GmbH, Greiner Bio-One International GmbH, Irvine Scientific Sales Company Inc., Cell Culture Company LLC, SeraCare Life Sciences Inc., American Type Culture Collection (ATCC), Miltenyi Biotec B.V. & Co. KG, AITbiotech Pte Ltd, Essen BioScience a Sartorius Company, Sigma-Aldrich, Bel-Art Products Inc., MilliporeSigma, Sumitomo Bakelite, EMD Millipore, Affymetrix Inc., VWR International llc., WHEATON IndustriesInc, Sartorius AG, CN Bio Innovations, Nortis Inc., Kiyatec, Nanofiber Solutions, Copner Biotech, Known Medicine, Synthecon Inc., 3D Biotek LLC, 3D Cell Culture Innovations LLC., 3D Matrix Inc., Allevi Inc., BioSpherix Ltd., Emulate Inc., MicroTissues Inc.

Embracing Advanced Technology Within Vitro/Vivo Environments In The 3D Cell Culture Market
Implementing the latest technology is the latest trend in the 3D Cell culture market. For example, various companies have adopted one such advancement in the market for 3D cell culture, this is the use of the vivo/vitro environment. Cell expansion and interactions under 2D are not appropriate in vitro models but when compared with 3D cell culture technique, it offers a better cell culture environment. The Vitro environment enables researchers or doctors to conduct the procedure in a controlled environment outside the organism. This procedure is gaining importance as it plays a vital role in monitoring the health of patients. FDA approved Biotek's 3D cell expansion system to be used as a medical device. It also approved Biotek'sPolycaprolactone (PCL) which is a biodegradable polyester material that is used in many FDA-approved implants and drug delivery devices.

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Key Segments -
The 3d cell culture technologies market covered in this report is segmented -
1) By Type: Scaffold-based, Scaffold-free, 3D Bioreactors
2) By Application: Cancer Research, Stem Cell Research, Drug Discovery, Regenerative Medicine
3) By End Users: Research Laboratories and Institutes, Biotechnology and Pharmaceutical Companies, Hospitals and Diagnostic Centers, Other End Users

Subsegment: Hydrogels, Polymeric scaffolds, Micropatterned Surface Microplates, Hanging Drop Microplates, Spheroid Microplates, Microfluidic 3D Cell Culture, Magnetic Levitations & 3D Bioprinting

Key highlights covered in the report -
1. Detailed market size forecast and historical data analysis
2. Key drivers influencing market growth
3. Identification of upcoming trends and potential opportunities in the market
4. Analysis of major players strategies, to understand competitive dynamics and market positioning
5. Evaluation of regional dynamics

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