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Global Cell Culture Protein Surface Coating Market to reach USD 2192.35 million by the end of 2029

Global Cell Culture Protein Surface Coating Market Size study & Forecast, by Type (Self-coating, Precoating), by Protein Source (Animal-derived, Human-derived, Synthetic, Plant-derived) and Regional Analysis, 2022-2029

Product Code: HLSB-13470922
Publish Date: 19-12-2022
Page: 200

Global Cell Culture Protein Surface Coating Market is valued at approximately USD 701.9 million in 2021 and is anticipated to grow with a healthy growth rate of more than 15.3% over the forecast period 2022-2029. Cell culture is a method of growing cells under controlled conditions commonly outside their natural environment. Cell culture protein surface coating is a procedure of surface coating of cell culture with protein that comprises coating the cell culture surface with protein components or extracellular matrix. This helps in enhancing the adhesion and proliferation of the cells in-vitro. The increasing demand for synthetic protein surface coating, rising focus on stem cell research, coupled with the development of the biotechnology industry are escalating the market demand across the globe.

According to the India Brand Equity Foundation (IBEF), in 2019, the Indian biotechnology industry was estimated to account for USD 63 billion, which is projected to reach USD 150 billion by 2025. Thereby, the thriving development of the biotechnology industry is exhibiting upsurging growth in the cell culture protein surface coating market. Moreover, growing investment in research and development activities, as well as rising preference for 3D cell cultures over 2D cell cultures are presenting various growth prospects, which are supporting the market expansion globally. However, high cost of cell culture protein surface coating products and disadvantages of animal-derived protein surface coating are hindering market growth throughout the forecast period of 2022-2029.

The key regions considered for the Global Cell Culture Protein Surface Coating Market study include Asia Pacific, North America, Europe, Latin America, and the Rest of the World. North America dominated the market in terms of revenue, owing to the rising focus on the development of the healthcare & research infrastructure, along with the increasing spending on drug discovery. Whereas, Asia Pacific is expected to grow with the highest growth rate during the forecast period. Factors such as growing investments in R&D activities, increasing geriatric population, as well as rising number of favorable government policies, are burgeoning the market growth in the forecasting years.

Major market players included in this report are:
Thermo Fisher Scientific
Corning, Inc.
Merck Millipore
Promega Corp.
Sartorius AG
Greiner Bio-One International GmbH
PerkinElmer, Inc.
BioVision, Inc.
Trevigen, Inc.
Viogene
Recent Developments in the Market:
 In January 2022, Thermo Fisher Scientific announced the acquisition of PeproTech- a provider of bioscience reagents named recombinant proteins. The objective of this acquisition is to enhance Thermo Fisher Scientific products and provides customers substantial benefits with this integrated offering.
 In October 2020, Merck KGaA entered into a collaborative agreement with D1Med- a biopharmaceutical company based in Shanghai. The company aims to develop its 3D cell culture technology across China and advance its drug delivery process.

Global Cell Culture Protein Surface Coating Market Report Scope:
Historical Data 2019-2020-2021
Base Year for Estimation 2021
Forecast period 2022-2029
Report Coverage Revenue forecast, Company Ranking, Competitive Landscape, Growth factors, and Trends
Segments Covered Type, Protein Source, Region
Regional Scope North America; Europe; Asia Pacific; Latin America; Rest of the World
Customization Scope Free report customization (equivalent up to 8 analyst’s working hours) with purchase. Addition or alteration to country, regional & segment scope*

The objective of the study is to define the market sizes of different segments & countries in recent years and to forecast the values for the coming years. The report is designed to incorporate both qualitative and quantitative aspects of the industry within the countries involved in the study.

The report also caters the detailed information about the crucial aspects such as driving factors & challenges which will define the future growth of the market. Additionally, it also incorporates potential opportunities in micro markets for stakeholders to invest along with a detailed analysis of the competitive landscape and product offerings of key players. The detailed segments and sub-segment of the market are explained below:

By Type:
Self-coating
Precoating

By Protein Source:
Animal-derived
Human-derived
Synthetic
Plant-derived
By Region:
North America
U.S.
Canada
Europe
UK
Germany
France
Spain
Italy
ROE
Asia Pacific
China
India
Japan
Australia
South Korea
RoAPAC
Latin America
Brazil
Mexico
ROLA
Rest of the World

Chapter 1. Executive Summary
1.1. Market Snapshot
1.2. Global & Segmental Market Estimates & Forecasts, 2019-2029 (USD Million)
1.2.1. Cell Culture Protein Surface Coating Market, by Region, 2019-2029 (USD Million)
1.2.2. Cell Culture Protein Surface Coating Market, by Type, 2019-2029 (USD Million)
1.2.3. Cell Culture Protein Surface Coating Market, by Protein Source, 2019-2029 (USD Million)
1.3. Key Trends
1.4. Estimation Methodology
1.5. Research Assumption
Chapter 2. Global Cell Culture Protein Surface Coating Market Definition and Scope
2.1. Objective of the Study
2.2. Market Definition & Scope
2.2.1. Scope of the Study
2.2.2. Industry Evolution
2.3. Years Considered for the Study
2.4. Currency Conversion Rates
Chapter 3. Global Cell Culture Protein Surface Coating Market Dynamics
3.1. Cell Culture Protein Surface Coating Market Impact Analysis (2019-2029)
3.1.1. Market Drivers
3.1.1.1. Increasing demand for synthetic protein surface coating
3.1.1.2. Development of the biotechnology industry
3.1.2. Market Challenges
3.1.2.1. High cost of cell culture protein surface coating products
3.1.2.2. Disadvantages of animal-derived protein surface coating
3.1.3. Market Opportunities
3.1.3.1. Growing investment in research and development activities
3.1.3.2. Rising preference for 3D cell cultures over 2D cell cultures
Chapter 4. Global Cell Culture Protein Surface Coating Market Industry Analysis
4.1. Porter’s 5 Force Model
4.1.1. Bargaining Power of Suppliers
4.1.2. Bargaining Power of Buyers
4.1.3. Threat of New Entrants
4.1.4. Threat of Substitutes
4.1.5. Competitive Rivalry
4.2. Futuristic Approach to Porter’s 5 Force Model (2019-2029)
4.3. PEST Analysis
4.3.1. Political
4.3.2. Economical
4.3.3. Social
4.3.4. Technological
4.4. Top investment opportunity
4.5. Top winning strategies
4.6. Industry Experts Prospective
4.7. Analyst Recommendation & Conclusion

Chapter 5. Risk Assessment: COVID-19 Impact
5.1. Assessment of the overall impact of COVID-19 on the industry
5.2. Pre COVID-19 and post COVID-19 Market scenario
Chapter 6. Global Cell Culture Protein Surface Coating Market, by Type
6.1. Market Snapshot
6.2. Global Cell Culture Protein Surface Coating Market by Type, Performance – Potential Analysis
6.3. Global Cell Culture Protein Surface Coating Market Estimates & Forecasts by Type 2019-2029 (USD Million)
6.4. Cell Culture Protein Surface Coating Market, Sub Segment Analysis
6.4.1. Self-coating
6.4.2. Precoating
Chapter 7. Global Cell Culture Protein Surface Coating Market, by Protein Source
7.1. Market Snapshot
7.2. Global Cell Culture Protein Surface Coating Market by Protein Source, Performance – Potential Analysis
7.3. Global Cell Culture Protein Surface Coating Market Estimates & Forecasts by Protein Source 2019-2029 (USD Million)
7.4. Cell Culture Protein Surface Coating Market, Sub Segment Analysis
7.4.1. Animal-derived
7.4.2. Human-derived
7.4.3. Synthetic
7.4.4. Plant-derived
Chapter 8. Global Cell Culture Protein Surface Coating Market, Regional Analysis
8.1. Cell Culture Protein Surface Coating Market, Regional Market Snapshot
8.2. North America Cell Culture Protein Surface Coating Market
8.2.1. U.S. Cell Culture Protein Surface Coating Market
8.2.1.1. Type breakdown estimates & forecasts, 2019-2029
8.2.1.2. Protein Source breakdown estimates & forecasts, 2019-2029
8.2.2. Canada Cell Culture Protein Surface Coating Market
8.3. Europe Cell Culture Protein Surface Coating Market Snapshot
8.3.1. U.K. Cell Culture Protein Surface Coating Market
8.3.2. Germany Cell Culture Protein Surface Coating Market
8.3.3. France Cell Culture Protein Surface Coating Market
8.3.4. Spain Cell Culture Protein Surface Coating Market
8.3.5. Italy Cell Culture Protein Surface Coating Market
8.3.6. Rest of Europe Cell Culture Protein Surface Coating Market
8.4. Asia-Pacific Cell Culture Protein Surface Coating Market Snapshot
8.4.1. China Cell Culture Protein Surface Coating Market
8.4.2. India Cell Culture Protein Surface Coating Market
8.4.3. Japan Cell Culture Protein Surface Coating Market
8.4.4. Australia Cell Culture Protein Surface Coating Market
8.4.5. South Korea Cell Culture Protein Surface Coating Market
8.4.6. Rest of Asia Pacific Cell Culture Protein Surface Coating Market
8.5. Latin America Cell Culture Protein Surface Coating Market Snapshot
8.5.1. Brazil Cell Culture Protein Surface Coating Market
8.5.2. Mexico Cell Culture Protein Surface Coating Market
8.5.3. Rest of Latin America Cell Culture Protein Surface Coating Market
8.6. Rest of The World Cell Culture Protein Surface Coating Market

Chapter 9. Competitive Intelligence
9.1. Top Market Strategies
9.2. Company Profiles
9.2.1. Thermo Fisher Scientific
9.2.1.1. Key Information
9.2.1.2. Overview
9.2.1.3. Financial (Subject to Data Availability)
9.2.1.4. Product Summary
9.2.1.5. Recent Developments
9.2.2. Corning, Inc.
9.2.3. Merck Millipore
9.2.4. Promega Corp.
9.2.5. Sartorius AG
9.2.6. Greiner Bio-One International GmbH
9.2.7. PerkinElmer, Inc.
9.2.8. BioVision, Inc.
9.2.9. Trevigen, Inc.
9.2.10. Viogene
Chapter 10. Research Process
10.1. Research Process
10.1.1. Data Mining
10.1.2. Analysis
10.1.3. Market Estimation
10.1.4. Validation
10.1.5. Publishing
10.2. Research Attributes
10.3. Research Assumption

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