Protein Sequencing Market Global Trends, Market Share, Industry Size, Growth, Opportunities

Author: Akash Dadhich

Global protein sequencing market is estimated to value over USD 1.3 billion by 2026 end and register a CAGR of above 3% during the forecast period 2019-2026.

The key factor stimulating the growth of the protein sequencing market is the increased funding for proteomics research and growing focus towards the development of the target-based drug. Advancements in analytical methods and peptide-sequencing methods have represented a lucrative opportunity for manufacturers. Technological advancements in mass spectrometer are complementing the market growth. The increasing demand for protein biomarkers in the drug development process is also playing a vital role in the expansion of the market.

The market is bifurcated into product & service, technology, application, end-user, and region. In terms of product & service, protein sequencing services are expected to be the front runner of the market. The rise in the advancement of instruments has led to more launch and availability of advanced instruments which played a vital role in the escalation of the market. Furthermore, the high cost of sequencing infrastructure and fewer complexities associated with the procedure of protein sequencing is bolstering the market.

Mass spectrometry technology is expected to witness high growth owing to its benefits such as identification of modified proteins and cost-efficiency. Prominent players aiming towards the launch of technologically advanced spectrometry instruments are propelling the market growth.

Academic institutes and research centers segment are expected to control the market growth. Rising research and development activities coupled with an increased funding from private and public institutes regarding proteomic research is escalating the growth of academic institutes and research, thus propelling the market.

North America is the global leader of the market. Increase in research and development activities alongside increased funding from government and private organizations towards proteomic research is boosting the presence of the market in the region. Furthermore, a rise in drug development activities and increasing focus towards structure-based drug design are stimulating the market in regions like the US and Canada. The presence of prominent players in the region is also positively influencing the market.

Major players of the market are SGS S.A, Thermo Fisher Scientific, Shimadzu, Agilent Technologies, Selvita, Charles River Laboratories, Waters Corporation, and Rapid Novor.

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Competitive Landscape:

  • Thermo Fisher Scientific is one of the biggest players in the market and through product innovation and technological innovation bolstered the market. The company launched mass spectrometry platforms like Orbitrap, Fusion Lumos Tribrid Mass Spectrum. The product launches helped the company's growth in consumables as well
  • Shimadzu in 2018, launched Quadrupole time-of-flight (Q-TOF) LCMS-9030 System
  • SGS S.A acquired Vanguard Sciences Inc in 2018. The acquisition helped SGS S.A to enhance its protein sequencing offering for the safety of food

Global Protein Sequencing Market Segmentation

By Product & Service

  • Sample Preparation Products & Services
  • Protein Sequencing Products
  • Reagents & Consumables
  • Instruments
  • Analysis Products/Software
  • Protein Sequencing Services

By Technology

  • Edman Degradation
  • Mass Spectrometry

By Application

  • Biotherapeutics
  • Genetic Engineering
  • Other Applications

By End User

  • Academic Institutes & Research Centers
  • Pharmaceutical & Biotechnology Companies
  • Other End Users

By Region

  • North America
  • Europe
  • Asia Pacific
  • Latin America
  • Rest of the World

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FutureWise Key Takeaways

  • Growth Prospects
  • SWOT Analysis
  • Key Trends
  • Key data-points affecting market growth

Objectives of the Study:

  • To provide with an exhaustive analysis on the global protein sequencing market by product & service, by technology, by application, by end-user and by region
  • To cater comprehensive information on factors impacting market growth (drivers, restraints, opportunities, and industry-specific restraints)
  • Evaluate and forecast micro-markets and the overall market
  • To predict the market size, in key regions (along with countries)—North America, Europe, Asia Pacific, Latin America and the rest of the world
  • To record evaluate and competitive landscape mapping- product launches, technological advancements, mergers and expansions
  • Profiling of companies to evaluate their market shares, strategies, financial and core competencies
Table of Contents

1 Introduction

1.1 Objectives of the Study

1.2 Market Definition

1.3 Market Scope

1.3.1 Markets Covered

1.3.2 Years Considered for the Study

1.4 Currency

1.5 Limitations

1.6 Stakeholders

2 Research Methodology

2.1 Research Data

2.1.1 Secondary Research

2.1.1.1 Key Data From Secondary Sources

2.1.2 Primary Research

2.1.2.1 Key Data From Primary Sources

2.1.2.1.1 Breakdown of Primary Interviews

2.2 Market Size Estimation

2.2.1 Revenue-Based Market Estimation

2.2.2 End-User-Based Market Estimation

2.2.3 Primary Research Validation

2.3 Market Breakdown and Data Triangulation

2.4 Assumptions for the Study

3 Executive Summary

4 Premium Insights

4.1 Protein Sequencing Market Overview

4.2 Protein Sequencing Market, By Product & Service (2018 vs 2026)

4.3 Protein Sequencing Market, By Technology, 2018 vs 2026

4.4 Protein Sequencing Market, By Application, 2018 vs 2026

4.5 Protein Sequencing Market, By End User, 2018 vs 2026

5 Market Overview

5.1 Introduction

5.2 Market Dynamics

5.2.1 Drivers

5.2.1.1 Increasing Focus on Target-Based Drug Development By Pharmaceutical and Biotechnology Companies

5.2.1.2 Advancements in Clinical Mass Spectrometry and Analytical Techniques

5.2.1.3 Increasing Public-Private Financial Support for Proteomic Research

5.2.2 Restraints

5.2.2.1 High Infrastructure Costs

5.2.3 Opportunities

5.2.3.1 Technological Advancements for the Identification of Isobaric Residues in Protein Sequences

5.2.4 Challenges

5.2.4.1 Preparation of Pure Protein Samples

5.2.4.2 Need for Skilled Researchers and Laboratory Professionals

6 Protein Sequencing Market, By Product & Service

6.1 Introduction

6.2 Sample Preparation Products & Services

6.2.1 Growing Need for Standardized Sample Preparation Solutions is A Major Driver for the Sample Preparation Products & Services Market

6.3 Protein Sequencing Products

6.3.1 Reagents & Consumables

6.3.1.1 Growing Number of Sequencing Procedures to Drive the Demand for Protein Sequencing Reagents & Consumables

6.3.2 Instruments

6.3.2.1 Mass Spectrometry Instruments

6.3.2.1.1 Technological Advancements to Drive the Adoption of Mass Spectrometry Instruments

6.3.2.2 Edman Degradation Sequencers

6.3.2.2.1 High Accuracy of Edman Degradation Method to Drive the Adoption of These Products

6.3.3 Analysis Products/Software

6.3.3.1 Protein Sequencing Analysis Products/Software to Witness the Highest Growth Rate During the Forecast Period

6.4 Protein Sequencing Services

6.4.1 Protein Sequencing Services to Register the Highest Growth Between 2018 & 2026

7 Protein Sequencing Market, By Technology

7.1 Introduction

7.2 Mass Spectrometry

7.2.1 High-Throughput Sequencing Capabilities and Cost Efficiency to Drive the Adoption of Mass Spectrometry Protein Sequencing

7.3 Edman Degradation

7.3.1 High Accuracy of the Edman Degradation Method is the Key Factor Driving Its Adoption in the Market

8 Protein Sequencing Market, By Application

8.1 Introduction

8.2 Biotherapeutics

8.2.1 Biotherapeutics Segment to Witness the Highest Growth During the Forecast Period

8.3 Genetic Engineering

8.3.1 Large Number of Research Projects Focused on Genetically Modified Organisms & Technological Advancements—Key Factors Driving Market Growth

8.4 Other Applications

9 Protein Sequencing Market, By End User

9.1 Introduction

9.2 Academic Institutes & Research Centers

9.2.1 Academic Institutes & Research Centers to Account for the Largest Share of the Market Owing to the Increasing Funding for Proteomics Research

9.3 Pharmaceutical & Biotechnology Companies

9.3.1 Increasing R&D Expenditure of Major Pharmaceutical and Biotechnology Companies to Drive Market Growth

9.4 Other End Users

10 Protein Sequencing Market, By Region

10.1 Introduction

10.2 North America

10.2.1 US

10.2.1.1 Launch of Advanced Protein Sequencing Products & the Strong Presence of Leading Players are Driving the Growth of the Protein Sequencing Market in the Us

10.2.2 Canada

10.2.2.1 Financial Support From Government and Private Organizations for R&D in the Proteomics Field—Major Factor Supporting Market Growth

10.3 Europe

10.3.1 Germany

10.3.1.1 Favorable Funding Scenario for Life Science Research to Drive the Growth of the Protein Sequencing Market in Germany

10.3.2 France

10.3.2.1 Rising Demand for Biotherapeutics and Biotechnology in the Country to Drive the Adoption of Protein Sequencing

10.3.3 UK

10.3.3.1 Presence of A Large Life Sciences Industry and the Continued Growth of the Biopharmaceuticals Sector are the Major Factors Driving Market Growth

10.3.4 Rest of Europe

10.4 Asia Pacific

10.4.1 China

10.4.1.1 China to Register the Highest Growth in the Asia Pacific Protein Sequencing Market During the Forecast Period

10.4.2 Japan

10.4.2.1 Strong Life Sciences R&D Infrastructure and A Favorable Government Funding Scenario are Key Factors Driving Market Growth

10.4.3 India

10.4.3.1 Implementation of Favorable Government Initiatives to Support Life Sciences Research to Support the Growth of the Protein Sequencing Market in India

10.4.4 Rest of Asia Pacific

10.5 Rest of the World

11 Competitive Landscape

11.1 Overview

11.2 Market Share Analysis

11.3 Competitive Situation and Trends

11.3.1 Product Launches and Services

11.3.2 Partnerships

11.3.3 Acquisitions

11.3.4 Expansions

12 Company Profiles

(Introduction, Products & Services, Strategy, & Analyst Insights, Developments, FutureWise Perspective)*

12.1 Agilent Technologies, Inc.

12.2 Bioinformatics Solutions

12.3 Charles River Laboratories

12.4 Proteome Factory

12.5 Rapid Novor Inc.

12.6 Selvita

12.7 SGS

12.8 Shimadzu Corporation

12.9 Thermo Fisher Scientific Inc.

12.10 Waters

13. Research Finding and Conclusion

14. Appendix

15.1 Research Methodology

15.2 Research Data Source

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