Description
Wiseguyreports.Com Adds “Single-cell Omics -Market Demand, Growth, Opportunities and Analysis Of Top Key Player Forecast To 2023” To Its Research Database
Single-cell omics analysis technologies are emerging as a disruptive force in the life science research, pharmaceutical and diagnostics industries. Single cell analysis is critical for analyzing complex, heterogeneous biological systems that occur at many levels of life sciences from stem cell biology to cancer to forensics.
In cancer, for example, a tumor may shed cells into the bloodstream that give clues about the aggressiveness of that tumor or how it is responding to a particular drug therapy. It is important to analyze these individual cells, called circulating tumor cells, to aid in monitoring the disease or to guide therapy strategies. The emerging field of liquid biopsy addresses this medical need.
Single-cell omics are also important to fundamental biological research, for example, to identify cancer mutation drivers or factors that influence stem cell potency. The trend toward biological drugs, stem cell therapies and new cancer treatments is also beneficial to the single cell analysis markets due to its importance in these fields.
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Report Scope:
The scope of this report includes single cell analysis technologies, applications, industries, major funding initiatives, patents and companies. The market sizes for single cell products are given for the years 2015, 2016, 2017 (estimated) and 2022 (forecasted).
This report reviews the single cell workflow steps and technologies and provides background on why single cell analysis is important. It then discusses some of the top research initiatives that are contributing to single cell applications. Market driving forces are also discussed.
The structure of several important industry subsectors is reviewed, as well as major industry acquisitions and strategic alliances from Jan. 2016 to Sept. 2017. Industry subsectors analyzed include target enrichment, droplet digital PCR, single cell DNA polymerase, DNA amplification, next generation sequencing (NGS) instruments, single cell proteomics, circulating tumor cell (CTC) capture and detection, liquid biopsy, preimplantation testing and immune sequencing.
The market for single cell analysis technologies is analyzed in depth. The market is analyzed by end user, application field, product type, omics method used, cell type, clinical indication and geography.
Specific geographic markets are discussed, including North America, Europe, Asia-Pacific and the rest of the world.
Market data covers the years 2015, 2016, 2017 (estimated) and 2022 (forecast).
More than 90 companies in the single cell analysis industry are profiled in this report.
BCC Research provides a summary of the main industry acquisitions and strategic alliances from Jan. 2016 through Sept. 2017, including key alliance trends.
Report Includes:
– 71 tables
– An overview of the global markets and emerging technologies for single-cell genomics and proteomics
– Analyses of global market trends, with data from 2016, estimates for 2017, and projections of compound annual growth rates (CAGRs) through 2022
– Cell isolation technologies, including flow cytometry, laser capture microscopy, and micromanipulation
– Sample preparation technologies, including microfluidics, whole genome amplification/pre-amplification
– Analyses of next-generation sequencing, qPCR/PCR, microarrays, mass spectrometry, and microfluidics
– End-use industry coverage, including research, drug discovery and development, diagnostics, and applied
– Evaluation of the market’s dynamics, including growth drivers, restraints, and opportunities
– Profiles of major players in the industry including 1 Cellbio, 10x Genomics Inc., Angle PLC, Aviva Biosciences, Boreal Genomics, Dolomite Bio and Hifibio
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Reasons for Doing This Study:
The life science industry is moving towards digitization with the advent of newer technologies including advanced genetic sequencing and microfluidics systems. As many biological systems contain heterogeneous populations of cells, heretofore many analysis methods measured mixtures of different cell types.
Single cell analysis is a disruptive technology that enables analysis of single cells out of a complex mixture of cells. This type of analysis is key to understanding complex systems in fields as diverse as neurology, stem cell biology and cancer.
At the same time, advances in genome editing, high-throughput systems and microfluidics technologies have enabled the rapid, parallel analysis of smaller samples that are common with single cells. Based on this, single cell analysis markets are rapidly emerging and the need for industry and market characterization is great.
Also, the single cell field is growing beyond basic research into applied fields and molecular diagnostics applications.
The outstanding growth potential for single cell analysis products makes it particularly timely for doing this updated report.United States.
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Summary Table : Single-cell Omics Market, by End User, Through 2022
Table 1 : Key Single-cell Omics Market Segments Covered
Table 2 : Single Cell Analysis Workflow
Table 3 : Single-cell Omics Market, by Analyte Type, Through 2022
Table 4 : Single Cell Analysis Market Growth Driving Forces
Table 5 : Trends in Single-cell Analysis
Table 6 : Key Segments within the Single-cell Analysis Industry
Table 7 : Unique Technical Challenges of Single-cell Analysis
Table 8 : Single-cell Omics
Table 9 : Single-cell analysis Workflow
Table 10 : Cell Differentiators
Table 11 : Cell Isolation Technologies
Table 12 : Single Cell Sample Preparation Workflows
Table 13 : Molecular Analysis Technologies
Table 14 : Genome-editing Technologies
Table 15 : Comparison of Gene Editing Platforms
Table 16 : High-throughput Single-cell Technologies
Table 17 : Technical Strategies for Single-cell Multi-omics
Table 18 : Emerging Droplet-based Single-cell RNA-seq Technologies
Table 19 : Technical Challenges for Single-cell Analysis
Table 20 : Key Single-cell Research and Development Projects
Table 21 : Single-cell Core Research Facilities
Table 22 : Single-cell Analysis: Near- to Mid-term Applications
Table 23 : Key Objectives of Basic Single-cell Biology
Table 24 : Single-cell Analysis to Identify Cancer Driver Mutations
Table 25 : Stem Cells
Table 26 : Biomarkers in Liquid Biopsy
Table 27 : Factors in Tissue Biopsy
Table 28 : Preimplantation Genetic Diagnosis and Screening Applications
Table 29 : Key Segments Within the Single-cell omics Industry
Table 30 : Target Enrichment Industry
Table 31 : Advantages of Droplet Digital PCR for Single-cell analysis
Table 32 : Droplet Digital PCR Industry
Table 33 : Single-cell DNA Polymerase Industry
Table 34 : Single-cell Sequencing Workflow
Table 35 : Single-cell DNA Amplification Industry
Continued…
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