Single Cell Analysis Market Trends, Business Insights and Forecast to 2026

According to a research report Single-cell Analysis Market by Cell Type (Human, Animal, Microbial), Product (Consumables, Instrument), Technique (Flow Cytometry, NGS, PCR, Microscopy, MS), Application (Research, Medical), End User (Pharma, Biotech, Hospitals) – Global Forecast to 2026″ published by MarketsandMarkets, The global single-cell analysis market is projected to reach USD 6.3 billion by 2026 from USD 3.1 billion in 2021, at a CAGR of 15.1% during the forecast period.

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Key Player

The global single-cell analysis market is highly consolidated. Key players in the market include Becton, Dickinson and Company (US), Danaher Corporation (US), Merck KGAA (Germany), QIAGEN N.V. (Netherlands), Thermo Fisher Scientific, Inc. (US), 10x Genomics (US), Promega Corporation (US), Illumina, Inc. (US), Bio-Rad Laboratories (US), Fluidigm Corporation (US), Agilent Technologies, Inc. (US), Tecan Group Ltd. (Switzerland), Sartorius AG (Germany), Luminex Corporation (US), Takara Bio (Japan), Fluxion Biosciences (US), Menarini Silicon Biosystems, Inc. (Italy), bioMérieux SA (France), Oxford Nanopore Technologies (UK), Cytek Biosciences (US), Corning Incorporated (US), Apogee Flow Systems Ltd. (UK), NanoCellect Biomedical (US), Rarecyte Inc (US), and On-chip Biotechnologies Co., Ltd. (Japan). The key players in this market are increasingly focusing on strategic expansions, partnerships, to expand their manufacturing capabilities and increase market presence.

Drivers: Growing prevalence of cancer

One of the most important application areas of single-cell analysis is cancer genomics. According to GLOBOCAN, the number of cancer cases will rise to approximately 30 million by 2040 from 19.3 million cases and 10 million cancer deaths in 2020. The growth in the prevalence of this disease has resulted in a need to conduct extensive research for diagnosis and treatment; single-cell analysis forms an important part of this research. The analysis of individual cells enables the correct diagnosis of diseases and monitoring of treatment efficacy. Single-cell analysis aids in the enumeration of helper T-cells, determination of DNA content, and monitoring the proliferation of tumor cells in breast cancer and other malignancies.

Restraints: High cost of single-cell analysis products

The cost of research in single-cell biology is high because of the need to maintain high-quality standards (the use of high-grade, expensive products) and comply with the guidelines set by regulatory authorities. However, research and academic laboratories find it difficult to afford such expensive instruments due to budget constraints. In addition, the maintenance costs and several other indirect expenses result in an overall increase in the total cost of ownership of these instruments. This is a major factor limiting the adoption of flow cytometers and microfluidic devices in both clinical and research applications.

Opportunities: High growth potential of single-cell sequencing

Single-cell sequencing is considered a powerful tool to identify disease-specific biomarkers to diagnose and monitor the occurrence and progress of a disease and the patient’s response to treatment. As the SCS technology provides extensive details pertaining to genetic mutations, companies are focusing on developing instruments and reagents that are suitable for single-cell sequencers. Considering the high-growth potential of this segment, several advanced SCS instruments are expected to be developed and launched in the market in the coming years.

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The consumables segment accounted for the largest share of the product segment in the single-cell analysis market in 2020.

Consumables accounted for the largest share of the single-cell analysis market in 2020. The large share of this segment can primarily be attributed to the frequent purchase of these products compared to instruments, which are considered a one-time investment. The wide applications of consumables in research and genetic exploration, exosome analysis, and isolation of RNA and DNA are also expected to drive market growth.

The research applications segment accounted for the largest share of the application segment in the single-cell analysis market in 2020

Based on applications, the single-cell analysis market is segmented into research and medical applications. The research applications segment accounted for the largest share of the single-cell analysis market in 2020. Increasing government initiatives in stem cell research and the wide usage of single-cell analysis in cancer research are the major factors driving the growth of the research applications segment.

The Asia Pacific region is the fastest-growing region of the single-cell analysis market in 2020.

The market in the Asia Pacific is expected to grow at the highest CAGR of 17.4% during the forecast period. This can be attributed to the fast-growing pharmaceutical industry in this region, rising geriatric population, rising prevalence of cancer, and increasing government initiatives.

Recent Developments:

  • In March 2021, Beckman Coulter (a subsidiary of Danaher Corporation) launched the CytoFLEX SRT Benchtop Sorter that features expanded laser and color options for use in labs of all sizes.
  • In March 2020, Fluidigm Corporation (US) opened a new Center of Excellence (CoE) for Imaging Mass Cytometry (IMC) in Singapore, together with the Singapore Immunology Network (SIgN), part of the Agency for Science, Technology and Research.

North America was the largest regional market for single-cell analysis in 2020.

North America accounted for the largest share of 44.9% of the global single-cell analysis market in 2020. This market is expected to reach USD 2,520.2 million by 2026 from an estimated USD 1,282.2 million in 2021, at a CAGR of 14.5%. North America’s prominence in this market is mainly attributed to the presence of key market players, coupled with increasing R&D expenditure and federal funding.

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