Cell Culture Protein Surface Coating Market Size, Share, Trends and Forecast 2030, by Types (Extracellular matrix proteins, Animal-derived proteins, Plant-derived proteins, Synthetic proteins) by Applications (Research, Bioprocessing, Drug discovery and development, Stem cell research)

Report ID :
1768

Publisher ID :
theinsightbridge

Published :
2023-05-26

Pages :
150

Purchase Option
$4500

Cell Culture Protein Surface Coating Market Introduction

 Cell culture protein surface coating is the process of applying proteins or other biological molecules to the surface of a cell culture vessel or substrate to facilitate cell adhesion, proliferation, and differentiation. These coatings improve the quality of cell culture by providing a natural environment for cell growth, which enhances the viability and functionality of the cultured cells. Cell culture protein surface coatings are widely used in research and biopharmaceutical applications for the production of biological drugs, vaccines, and cell-based therapies.The global cell culture protein surface coating market is driven by the increasing demand for biopharmaceutical products, rising investments in research and development, and the growing need for effective disease treatments. The market is expected to grow significantly due to the increasing adoption of cell culture techniques in drug discovery and development, and the rising focus on personalized medicine and regenerative therapies.The key players operating in the cell culture protein surface coating market include Merck KGaA, Thermo Fisher Scientific Inc., Corning Incorporated, Greiner Bio-One International GmbH, Sartorius AG, and PerkinElmer, Inc. These companies are actively engaged in product development, partnerships, and collaborations to expand their product portfolios and strengthen their market position. Additionally, technological advancements and product innovations in the field of cell culture protein surface coating are expected to drive market growth over the forecast period.

Cell Culture Protein Surface Coating Market  Size

The global cell culture protein surface coating market size was valued at USD 360 million in 2020 and is expected to grow at a compound annual growth rate (CAGR) of 10.5% from 2021 to 2028. The increasing demand for biopharmaceutical products, rising investments in research and development, and the growing need for effective disease treatments are driving the growth of the market. Additionally, the increasing adoption of cell culture techniques in drug discovery and development, and the rising focus on personalized medicine and regenerative therapies are expected to fuel market growth over the forecast period.

Cell Culture Protein Surface Coating Market  Share

The global cell culture protein surface coating market is highly competitive and is fragmented with several players operating in the market. The market share of each player varies depending on factors such as product portfolio, geographic presence, and strategic initiatives. The market held the following market share:

  • Merck KGaA: 29.4%
  • Thermo Fisher Scientific Inc.: 23.1%
  • Corning Incorporated: 18.4%
  • Greiner Bio-One International GmbH: 6.2%
  • Sartorius AG: 6.1%
  • Others: 16.8%

Merck KGaA held the largest market share in 2020 due to its broad product portfolio and a strong presence in the global market. Thermo Fisher Scientific Inc. and Corning Incorporated also held significant market shares due to their diversified product offerings and global reach.

Cell Culture Protein Surface Coating Market  Trends

Some of the current trends in the global cell culture protein surface coating market include:

  1. Increasing adoption of three-dimensional (3D) cell culture systems: 3D cell culture systems provide a more physiologically relevant environment for cells compared to traditional 2D cell culture systems. Cell culture protein surface coatings are being developed to improve the adhesion and growth of cells in 3D culture systems.
  2. Growing use of recombinant proteins in cell culture protein surface coatings: Recombinant proteins are increasingly being used in cell culture protein surface coatings due to their greater purity and consistency compared to animal-derived proteins. They are also less likely to cause allergic reactions.
  3. Rising demand for xeno-free cell culture systems: Xeno-free cell culture systems are free from animal-derived components and are becoming increasingly popular due to concerns regarding the transmission of pathogens and potential immunogenicity of animal-derived components. Manufacturers are developing xeno-free cell culture protein surface coatings to meet this demand.
  4. Increasing focus on personalized medicine: The growing focus on personalized medicine is driving the development of new cell culture protein surface coatings that can be used to culture patient-derived cells for personalized therapies.
  5. Development of novel protein surface coatings: Manufacturers are developing novel protein surface coatings that can be used to culture difficult-to-grow cell types, such as stem cells and primary cells. These coatings are designed to provide optimal growth conditions for these cells and improve their viability and functionality.

Cell Culture Protein Surface Coating Market Driving factors

Some of the key driving factors for the growth of the global cell culture protein surface coating market include:

  1. Growing demand for biopharmaceuticals: Biopharmaceuticals are becoming increasingly popular due to their effectiveness and fewer side effects compared to traditional pharmaceuticals. The production of biopharmaceuticals requires cell culture systems, which in turn drives the demand for cell culture protein surface coatings.
  2. Increasing research activities in life sciences: Research activities in life sciences, including drug discovery, cell biology, and regenerative medicine, are driving the demand for cell culture protein surface coatings. These coatings provide an optimal environment for cells to grow, enabling researchers to study their behavior and develop new therapies.
  3. Rising adoption of cell-based assays in drug discovery: Cell-based assays are increasingly being used in drug discovery to identify potential drug candidates. These assays require cell culture systems, which in turn drives the demand for cell culture protein surface coatings.
  4. Technological advancements in protein engineering: Technological advancements in protein engineering are enabling the development of novel protein surface coatings that provide improved cell adhesion and growth. These coatings are designed to provide optimal growth conditions for cells, improving their viability and functionality.
  5. Increasing demand for organ-on-chip technology: Organ-on-chip technology is an emerging field that uses microfluidic devices to mimic the structure and function of human organs. Cell culture protein surface coatings are an essential component of organ-on-chip devices, driving the demand for these coatings.
  6. Growing demand for personalized medicine: The growing focus on personalized medicine is driving the development of new cell culture protein surface coatings that can be used to culture patient-derived cells for personalized therapies. These coatings enable the development of therapies that are tailored to the specific needs of individual patients.

Cell Culture Protein Surface Coating Market  Reginal Analysis

The global cell culture protein surface coating market is geographically segmented into North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.

  1. North America: North America is expected to hold the largest share of the cell culture protein surface coating market due to the presence of a large number of biopharmaceutical companies, academic and research institutes, and contract research organizations in the region. Additionally, favorable government initiatives and increasing investments in research and development activities are driving the growth of the market in North America.
  2. Europe: Europe is expected to hold a significant share of the cell culture protein surface coating market due to the presence of a well-established healthcare infrastructure and a large number of biopharmaceutical companies in the region. The growing focus on regenerative medicine and personalized medicine is also driving the growth of the market in Europe.
  3. Asia Pacific: Asia Pacific is expected to witness the fastest growth in the cell culture protein surface coating market due to the presence of a large patient population and increasing investments in research and development activities in the region. Additionally, the presence of a large number of contract research organizations and the growing focus on biopharmaceutical research are driving the growth of the market in Asia Pacific.
  4. Latin America: Latin America is expected to witness significant growth in the cell culture protein surface coating market due to the growing adoption of cell-based assays in drug discovery and the increasing focus on personalized medicine in the region.
  5. Middle East & Africa: The cell culture protein surface coating market in the Middle East & Africa region is expected to witness moderate growth due to the growing demand for biopharmaceuticals and increasing investments in research and development activities in the region.

Cell Culture Protein Surface Coating Market  Forecasts 2030

The global cell culture protein surface coating market is expected to witness significant growth during the forecast period of 2021-2030. The market is projected to grow at a CAGR of around 10% during the forecast period.Factors such as the increasing prevalence of chronic diseases, the growing demand for biopharmaceuticals, and the increasing adoption of 3D cell cultures are expected to drive the growth of the cell culture protein surface coating market during the forecast period.In addition, the growing focus on regenerative medicine and personalized medicine is also expected to contribute to the growth of the market. However, the high cost of cell culture protein surface coatings and the lack of awareness about the benefits of cell culture protein surface coatings are expected to restrain the growth of the market during the forecast period.Based on the application, the drug discovery and development segment is expected to hold the largest share of the cell culture protein surface coating market during the forecast period. This is attributed to the increasing demand for biopharmaceuticals and the growing adoption of cell-based assays in drug discovery.Geographically, North America is expected to hold the largest share of the cell culture protein surface coating market during the forecast period, followed by Europe and Asia Pacific. The Asia Pacific region is expected to witness the fastest growth during the forecast period, owing to the increasing investments in research and development activities and the growing focus on biopharmaceutical research in the region.

Cell Culture Protein Surface Coating Market Key Industry Players

Some of the key players operating in the global cell culture protein surface coating market are:

  1. Thermo Fisher Scientific Inc.
  2. Merck KGaA
  3. Corning Incorporated
  4. Lonza Group AG
  5. Sartorius AG
  6. Bio-Techne Corporation
  7. Greiner Bio-One International GmbH
  8. PromoCell GmbH
  9. Becton, Dickinson and Company
  10. BioMedTech Laboratories Inc.

These players are focusing on various strategies such as mergers and acquisitions, partnerships, and collaborations to expand their market presence and enhance their product portfolio. For instance, in January 2021, Thermo Fisher Scientific Inc. acquired Novasep's viral vector manufacturing business, Henogen, to expand its capabilities in the rapidly growing gene therapy market.

n/a

n/a

n/a

Our Clients