The "Global Single-Cell Multi-Omics Market (2020-2025): Focus on Product Type, Omics Type, Sample Type, Technique, Application, End User, Region, and Competitive Landscape - Analysis and Forecast, 2020-2025" report has been added to ResearchAndMarkets.com's offering.
Global Single-Cell Multi-Omics Market to Reach $3,188.9 Million by 2025
Healthcare experts have found the single-cell multi-omics market to be one of the most rapidly evolving markets, which is predicted to grow at a CAGR of 21.16% during the forecast period, 2020-2025.
The market is driven by the need for the development of an advanced solution based on single-cell technology for clinical research in various applications such as cancer, rare disease, cell biology, and synthetic biology, among others.
The market is favored by the development of single-cell technology-based solutions for visualization and analysis of cell heterogeneity, tumor micro-environment, and antibody development. The gradual increase in the prevalence of oncology and rare diseases globally has furthered the single-cell multi-omics market.
Furthermore, several contract research organizations are focusing on the development of single-cell technology-based services, which enable simultaneous analysis of genomics, proteomics, and transcriptomics, providing deeper insights on a disease progression.
The exponential rise in the application of precision medicine on the global level has created a buzz among companies to invest in the development of high-resolution multiplex diagnostics providing information on cellular interaction and tissue heterogeneity to understand disease biology and pathology. Due to technologically advanced solutions and intense market penetration, 10x Genomics, Inc. has been a pioneer and a significant competitor in this market.
North America holds the largest share of the single-cell multi-omics market due to improved healthcare infrastructure, rise in per capita income, and availability of state-of-the-art research laboratories and institutions in the region. Apart from this, Asia-Pacific is anticipated to grow at the fastest CAGR of 21.53% during the forecast period 2020-2025.
The market utilizes several technologies, such as barcoding, sequencing, mass cytometry, and microscopy, for the development of instruments and assays for single-cell analysis of tissue and cells to gain an understanding of cell heterogeneity and cellular mechanism. Each solution offered by the leading players is the combination of next-generation omics tools for application in several clinical areas, such as oncology, neurology, immunology, and pathology.
Key Topics Covered:
1 Product Definition
2 Scope of Work
3 Research Methodology
3.1 Primary Data Sources
3.2 Secondary Data Sources
3.3 Market Estimation Model
3.4 Criteria for Company Profiling
4 Market Overview
4.1.1 Technological Development in Single-Cell Sequencing
126.96.36.199 Advancements in Imaging Techniques for Single-Cell Sequencing
188.8.131.52 Advancements in Single-Cell Collection and Analysis System
5 Market Dynamics
5.2 Impact Analysis
5.3 Market Drivers
5.3.1 Increasing number of Large-Scale Genomics Studies Leveraging Single-Cell RNA Sequencing (sc-RNA)
5.3.2 Increasing Adoption of Personalized Medicine for the Screening and Diagnostics of Genetic Disorders
5.3.3 Increasing Disposable Income in Emerging Economies
5.4 Market Restraints
5.4.1 High Cost of Single-Cell Analysis and Integration of Data
5.4.2 Limited Availability of Large Online Data Storage and Analysis Platforms
5.5 Market Opportunities
5.5.1 Massive Scope for Adoption of Genomic-Based Medicine in Emerging Nations
5.5.2 Requirement for the Development of Advanced Solutions Based on Single-Cell Technology
5.5.3 Increased Use of Single-Cell Technology Solutions for the Development of Therapeutics Drugs and Comprehensive Treatment Plan
5.5.4 Expansion into New Research Applications such as Single-Cell Metabolomics
6 Competitive Insights
6.1 Market Share Analysis (by Company), 2019
6.2 Growth Share Analysis (Opportunity Mapping)
6.2.1 By Company
7 Global Single-Cell Multi-Omics Market (by Product Type)
8 Global Single-Cell Multi-Omics Market (by Omics Type)
8.1 Single-Cell Genomics
8.2 Single-Cell Transcriptomics
8.3 Single-Cell Proteomics
9 Global Single-Cell Multi-Omics Market (by Sample Type)
9.1 Human Samples
9.1.1 Cancer Tissues
9.1.2 Stem Cells
9.1.3 Brain Cells
9.1.4 Immune Cells
9.1.5 Other Samples
9.2 Animal Samples
9.3 Microbial Samples
10 Global Single-Cell Multi-Omics Market (by Technique)
10.1 Single-Cell Isolation and Dispensing
10.1.1 Fluorescence-Activated Cell Sorting (FACS)
10.1.2 Manual Cell Picking
10.1.3 Magnetic-Activated Cell Sorting (MACS)
10.1.4 Laser Capture Microdissection
10.1.5 Random Seeding
10.2 Single-Cell Analysis
10.2.1 Mass Cytometry
10.2.2 Polymerase Chain Reaction
10.2.3 Next-Generation Sequencing
10.2.4 Mass Spectrometry
11 Global Single-Cell Multi-Omics Market (by Application)
11.1 Clinical Research
11.1.4 Cell Therapy
11.1.5 Cell Biology
11.2 Translation Research
11.3 Synthetic Biology
12 Global Single-Cell Multi-Omics Market (by End User)
12.2 Research and Academic Laboratories
12.3 Contract Research Organizations
12.4 Biopharmaceutical and Biotech Companies
12.5 Others End Users
13 Global Single-Cell Multi-Omics Market (by Region)
14 Company Profiles
10x Genomics, Inc.
NanoString Technologies, Inc.
Bio-Rad Laboratories, Inc.
Berkeley Lights, Inc.
Becton, Dickinson and Company
Takara Bio, Inc.
Thermo Fisher Scientific Inc.
15 Emerging Companies
Scipio Biosciences SAS
Parse Biosciences, Inc.
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