Global Cell Culture Protein Surface Coating Market

Cell Culture Protein Surface Coating Market Size, Share, Growth Analysis, By Type(Self-coating and pre-coating), By Protein Source(Animal-derived, human-derived, plant-derived and synthetic), By Region - Industry Forecast 2024-2031


Report ID: SQMIG35H2099 | Region: Global | Published Date: March, 2024
Pages: 219 | Tables: 61 | Figures: 75

Cell Culture Protein Surface Coating Market News

  • In April 2022, Molecular Devices LLC has continued its investment in the Organoid Innovation Center, focusing on enhancing the capabilities of their automated 3D cell culture platform through the addition of cell engineering functionalities.
  • In January 2022, Thermo Fisher Scientific Inc. completed the acquisition of PeproTech in January 2022. This strategic acquisition enables Thermo Fisher to expand its cell culture product offerings by incorporating PeproTech's range of recombinant proteins. The combined offering is expected to provide significant benefits to customers.
  • In December 2021, DenovoMATRIX introduced its latest product, isoMATRIX, in December 2021. isoMATRIX is a high-yield MSC (mesenchymal stem cell) isolation technology designed for cell and gene therapy applications. With isoMATRIX, researchers can obtain nearly 35% more stem cells, characterized by improved quality and faster growth rates.
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Cell Culture Protein Surface Coating Market size was valued at USD 0.83 billion in 2022 and is poised to grow from USD 0.96 billion in 2023 to USD 3.01 billion by 2031, growing at a CAGR of 15.4% during the forecast period (2024-2031).

The competitive landscape of the Cell Culture Protein Surface Coating Market is characterized by intense competition among various players striving to offer innovative and specialized protein surface coating solutions. Key strategies employed by market participants include product development and innovation, partnerships, collaborations, and mergers and acquisitions. Market players focus on expanding their product portfolios, enhancing coating performance, and developing cost-effective solutions to cater to the diverse needs of researchers and biotech companies. Additionally, efforts are made to establish strong distribution networks and forge strategic alliances with research institutions and industry stakeholders to strengthen market presence and gain a competitive edge. The market is dynamic, with players continuously investing in R&D activities and staying abreast of technological advancements to meet evolving customer demands and stay ahead in this highly competitive landscape. 'Thermo Fisher Scientific, Inc. (US)', 'Corning Incorporated (US)', 'Merck KGaA (Germany)', 'Eppendorf SE (Germany)', 'aaaSartorius AG (Germany)', 'Greiner Bio-One International GmbH (Austria)', 'PerkinElmer, Inc. (US)', 'ZenBio, Inc. (US)', 'Kollodis BioSciences, Inc. (US)', 'Viogene (Taiwan)', 'Avantor, Inc. (US)', 'Lonza Group AG (Switzerland)', 'PromoCell GmbH (Germany)', 'CytoMatrix (US)', 'Agilent Technologies, Inc. (US)', 'AMS Biotechnology (Europe) Limited (UK)', 'MatTek Corporation (US)', 'Cytiva (US)', 'ReproCELL Inc. (Japan)', 'Cell Guidance Systems (UK)'

One key driver of the Cell Culture Protein Surface Coating Market is the growing demand for advanced cell-based research and drug discovery. The increasing emphasis on personalized medicine, regenerative therapies, and understanding complex diseases has fueled the need for sophisticated cell culture techniques. Protein surface coatings play a vital role in creating optimal cell culture environments, enhancing cell growth, and enabling accurate and reproducible research outcomes. As a result, the demand for protein surface coatings in cell culture applications is expected to rise significantly, driving market growth.

One key market trend in the Cell Culture Protein Surface Coating Market is the increasing adoption of animal-free and synthetic protein coatings. With growing concerns regarding ethical considerations and potential risks associated with animal-derived protein coatings, there is a rising demand for alternatives. Researchers and biotech companies are shifting towards using plant-derived proteins, synthetic peptides, and recombinant proteins to create cell culture environments. This trend aligns with the growing focus on sustainability, animal welfare, and regulatory requirements, driving the development and adoption of animal-free and synthetic protein coatings in the market.

The dominant region in the Cell Culture Protein Surface Coating Market is North America. North America holds a significant market share due to its well-established research infrastructure, robust biotechnology and pharmaceutical industries, and high investments in cell culture research and development. The presence of leading academic institutions, pharmaceutical companies, and biotechnology firms in countries like the United States and Canada contributes to the region's dominance. Additionally, favorable government initiatives and funding for cell culture research further drive market growth in North America.

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Global Cell Culture Protein Surface Coating Market

Report ID: SQMIG35H2099

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