Global Single cell Analysis Market Drivers 2024, Forecast To 2033
26 Feb, 2024
The single-cell analysis market has experienced rapid growth, expanding from $3.14 billion in 2023 to $3.53 billion in 2024, with a CAGR of 12.4%. The surge is attributed to increased genomics research, augmented funding, and advancements in biopharmaceutical R&D. Forecasts anticipate further growth to $6.02 billion in 2028, at a CAGR of 14.3%, driven by broader applications, clinical diagnostics adoption, and innovations in data analysis, accompanied by trends like collaborations, multi-omics integration, single-cell spatial analysis, automation, AI integration, and neurology applications.
Global Single cell Analysis Market Key Driver
The increasing focus on personalized medicine worldwide is contributing to the growth of the single-cell analysis market. Personalized medicine utilizes genetic profiles to tailor treatment decisions, driving the adoption of single-cell analysis for deep insights into individual patient needs. Patient preferences, with 85% favoring personalized medicine, as per a Dosis survey, underscore the market's growth potential.
Get A Free Sample Of The Global Single cell Analysis Market ReportGlobal Single cell Analysis Market Segments
The single-cell analysis market covered in this report is segmented –
1) By Product: Consumables, Instruments
2) By Workflow: Single-cell Isolation And Library Preparation, Downstream Analysis, Data Analysis
3) By Technique: Flow Cytometry, Next Generation Sequencing, Polymerase Chain Reaction (PCR), Microscopy, Mass Spectrometry, Other Techniques
4) By Application: Cancer, Immunology, Neurology, Stem cell, Non-invasive prenatal diagnosis, In-vitro fertilization, Other Applications
5) By End User: Academic and Research Laboratories, Biotechnology and Pharmaceutical Companies, Hospital and Diagnostic Laboratories
By Geography: The regions covered in the template market report are Asia-Pacific, Western Europe, Eastern Europe,North America, South America, Middle East, and Africa. Among these regions.
North Americawas the largest region in the single-cell analysis market in 2023. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the single-cell analysis market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa
Major Single cell Analysis Industry Players
Becton Dickinson and Company; Merck KGAA; QIAGEN N. V.; Thermo Fisher Scientific Inc.; Illumina Inc.; Standard BioTools Inc.; 10X Genomics Inc.; Bio-Rad Laboratories Inc.; Novogene Corporation Limited; Agilent Technologies Inc.; Sartorius AG; Luminex Corporation; Fluxion Biosciences Inc.; Oxford Nanopore Technologies Ltd.; 1CellBio Inc.; 3D Biomatrix Inc.; ACEA Biosciences Inc.; Akoya Biosciences Inc.; Berkeley Lights Inc.; Bio-Techne Corporation; Celsee Inc.; Cellular Research Inc.; Cytena GmbH; Dolomite Bio Limited; Drop-seq Technologies Inc.; Epic Sciences Inc.; Ginkgo Bioworks Inc.; IsoPlexis Corporation; Menarini Silicon Biosystems S. p. A.; Mission Bio Inc.; NanoCellect Biomedical Inc.; NemaMetrix Inc.; OnRamp Bioinformatics Inc.; Partek Incorporated; RareCyte Inc.; Scienion AG; SeqWell Inc.; Sphere Fluidics Limited; Takara Bio USA Holdings Inc.
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Single cell Analysis Market Overview
Single-cell analysis is the study of transcriptomics, genomics, proteomics, cell interactions, and metabolomics at the level of a single cell. It helps in standardizing and automating the workflows with information useful in the treatment of various diseases such as cancer. The single-cell analysis is engaged in conducting research and experimental development in single-cell analysis.
Single cell Analysis Global Market Report 2023 provides data on the global single cell analysis market such as market size, growth forecasts, segments and geographies, competitive landscape including leading competitors’ revenues, profiles and market shares. The single cell analysis market report identifies opportunities and strategies based on market trends and leading competitors’ approaches.