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Report on Single-Cell Genomics and Proteomics: Technologies

Explore the growth projections, market trends, and emerging technologies in the global single-cell genomics and proteomics industry. This report covers market analyses, technologies, clinical applications, and funding initiatives driving the industry forward.

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Report on Single-Cell Genomics and Proteomics: Technologies

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  1. Report on Single-Cell Genomics and Proteomics: Technologies

  2. Summary The global single-cell analysis market was valued at $541.2 million in 2014. This market is projected to grow from $626.2 million in 2015 to $1.6 billion in 2020, at a compound annual growth rate (CAGR) of 20.7% from 2015 to 2020. This report provides: -An overview of the global markets and emerging technologies for single-cell genomics and proteomics. -Analyses of global market trends, with data from 2014, estimates for 2015, and projections of CAGRs through 2020. -Cell isolation technologies including flow cytometry, laser capture microscopy, micromanipulation. -Sample preparation technologies including microfluidics, whole genome amplification/ pre-amplification.

  3. STUDY GOALS AND OBJECTIVES The goal for this study is to provide an in-depth study of the single-cell analysis industry, an emerging industry with high market potential. The global market is analyzed from five points of view: by end user, field of application, workflow step, technology and geography. The diagnostics market is examined by indication and test purpose. The market sizes are given for the years 2014, 2015 and 2020. Market segments that provide exceptional growth opportunities include cancer and reproductive health. The report provides a comprehensive discussion of single-cell technologies, clinical applications, industry structure, important single-cell analysis funding initiatives, global markets, patent status and companies.

  4. REASONS FOR DOING THE 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, many analysis methods heretofore 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 microfluidics technologies have enabled the analysis of smaller samples that are common with single cells.

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