Future of the Global Flow Cytometry Market: Growth Projections and Key Trends (2025-2034)

What is the current market size and future outlook for the flow cytometry market?

The flow cytometry market size has grown strongly in recent years. It will grow from $6.88 billion in 2024 to $7.51 billion in 2025 at a compound annual growth rate (CAGR) of 9.1%. The growth in the historic period can be attributed to immunophenotyping, cancer research, hematology and blood cell analysis, clinical diagnostics, drug discovery and development.

The flow cytometry market size is expected to see rapid growth in the next few years. It will grow to $11.6 billion in 2029 at a compound annual growth rate (CAGR) of 11.5%. The growth in the forecast period can be attributed to single-cell analysis, immunotherapy and car-t cell development, infectious disease research, biomarker discovery, point-of-care testing (poct). Major trends in the forecast period include multicolor analysis, automation and robotics, imaging flow cytometry, data analysis and informatics, sample preparation innovations.

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How has the flow cytometry market evolved, and what factors have shaped its growth?

The increasing number of HIV cases globally is an important driver for the flow cytometry market. This is because the flow cytometry technique has its direct application in HIV diagnosis. Flow cytometry uses light scattering to determine the identity of cells. These cells are given certain markers called CDs (clusters of differentiation), based on the type of scattering. For instance, in October 2023, according to the UK Health Security Agency, a UK-based government agency, in England, HIV diagnoses increased by 22%, rising from 3,118 cases in 2021 to 3,805 in 2022. As the global HIV population continues to grow, the demand for diagnosis techniques such as flow cytometry is also increasing.

What are the major segments of the flow cytometry market?

The flow cytometry market covered in this report is segmented –

1) By Type: Instruments, Reagents And Consumables, Software, Accessories, Services

2) By Technology: Cell-Based, Bead-Based

3) By Application: Oncology, Drug Discovery, Disease Diagnosis, Stem Cell Therapy, Organ Transplantation, Hematology

4) By End User: Hospitals And Clinics, Academia And Research Institutes, Pharmaceutical And Biotechnology Companies, Other End Users

Subsegments:

1) By Instruments: Cell Analyzers, Cell Sorters, Multi-Parameter Flow Cytometers, High-Throughput Flow Cytometers

2) By Reagents And Consumables: Antibodies, Dyes And Fluorescent Probes, Kits And Assays, Sample Preparation Consumables (Tubes, Filters)

3) By Software: Data Analysis Software, Visualization Software, Acquisition Software, Cell Sorting Software

4) By Accessories: Lasers And Optics, Filters, Flow Cells, Sample Preparation Tools

5) By Services: Maintenance And Repair Services, Calibration And Validation Services, Training And Support Services

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Which companies dominate the flow cytometry market?

Major companies operating in the flow cytometry market include Beckman Coulter Inc., Agilent Technologies Inc, Bio-Rad Laboratories Inc, Thermo Fisher Scientific Inc., Luminex Corporation, Miltenyi Biotec Ltd., Becton Dickinson and Company, Sysmex Corporation, Merck KGaA, Danaher Corporation, Apogee Flow Systems Ltd., Stratedigm Inc., General Electric Company, EMD Millipore Corporation, Affymetrix Inc., Biomérieux SA, Cytonome St LLC, Enzo Life Sciences Inc., Sony Biotechnology Inc., Life Technologies Corporation, ACEA Biosciences Inc., Takara Bio Inc., Union Biometrica Inc., Cytek Biosciences Inc., Nexcelom Bioscience LLC, Verity Software House Inc., Spectral Cytometry Systems GmbH, InstruNor AS

How will evolving trends contribute to the growth of the flow cytometry market?

Major companies operating in the flow cytometry market are focused on developing advanced products such as research-grade flow cytometers to enhance the sensitivity and resolution of cell analysis. Research-grade flow cytometers are used in scientific research to analyze the physical and chemical properties of particles or cells as they move through a fluid stream. They provide high sensitivity and resolution for multiparametric cellular analysis, featuring advanced optical systems and software for detecting multiple fluorescent markers, making them vital in immunology, oncology, and cell biology. For instance, in March 2024, Beckman Coulter Life Sciences, a US-based manufacturer of products relevant to biomedical testing, launched the CytoFLEX nanoflow cytometer. It is designed to detect nanoparticles as small as 40 nm, making it highly effective for investigating extracellular vesicles (EVs) and other nanoscale entities. Its sensitivity range extends from 1 µm to 40 nm, with a resolution of 10 nm, enabling the detection of low-abundance cargo within EVs. This advanced sensitivity is essential for accurately characterizing small particle populations. The system features 6 fluorescent channels and 5 side scatter channels, allowing for extensive data collection across multiple parameters at once. Additionally, it operates with CytExpert nano software, offering an intuitive interface that streamlines complex analyses while supporting high-level research capabilities.

What are the key regional dynamics of the flow cytometry market, and which region leads in market share?

North America was the largest region in the flow cytometry market in 2023. Western Europe was the second largest region in the flow cytometry market analysis. The regions covered in the flow cytometry market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa

What Does The Flow Cytometry Market Report 2025 Offer?

The flow cytometry market research report from The Business Research Company offers global market size, growth rate, regional shares, competitor analysis, detailed segments, trends, and opportunities.

Flow cytometry is a technique in which cells are added to a fluid medium, which is then passed through a pulsating laser beam. The cell then scatters the beam in different directions towards receptors that capture the light and translate it into data displayed on a monitor. Flow cytometry is used to analyze characteristics of a biological cell, such as cell size, cell count, and cell complexity, using laser optics.

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