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Navigating the Future: Cell Processing Instruments Market Trends and Forecast Insights, 2025 Edition

09-05-2025 07:29 AM CET | Health & Medicine

Press release from: The Business Research Company

Cell Processing Instruments

Cell Processing Instruments

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Cell Processing Instruments Market Size Growth Forecast: What to Expect by 2025?
The market size for cell processing instruments has experienced robust growth in the past few years. It is forecasted to increase from $6.43 billion in 2024 to $6.95 billion in 2025, signifying an 8.2% compound annual growth rate (CAGR). Factors contributing to growth during the historic period include a heightened demand for consistent cell processing procedures, increased attention towards personalized medicine, a soar in regulatory approvals for cell therapy products, an escalation in clinical trials related to cell-based treatments, as well as the expansion of biobank and cell repository infrastructure.

How Will the Cell Processing Instruments Market Size Evolve and Grow by 2029?
The market size for cell processing instruments is anticipated to experience significant expansion in the upcoming years, projected to reach a value of $9.39 billion by 2029, marking a compound annual growth rate (CAGR) of 7.8%. Factors contributing to this growth over the forecast period include the growing incorporation of automation in the manufacturing of cell therapy, an increased emphasis on scalable solutions for cell processing, a surge in clinical trials centered around gene and cell therapies, enhanced funding in state-of-the-art bioprocessing technologies, and a growing demand for instrumentation that complies with good manufacturing practices (GMP). Key marketplace trends to watch for during the forecast period include progress in closed-system automation, the creation of cell analysis tools powered by artificial intelligence (AI), breakthroughs in microfluidic cell sorting, advancements in integrated quality control (QC) instrumentation, and the evolution of modular bioprocessing platforms.

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What Drivers Are Propelling the Growth of Cell Processing Instruments Market Forward?
The rising funding in biopharmaceutical research is slated to drive the expansion of the cell processing instruments market. The term biopharmaceutical research pertains to the scientific exploration and creation of therapeutic goods that are either biologically sourced or devised to simulate biological molecules for disease diagnosis, prevention, or treatment. The intensifying investment in this research stems from the escalating need for novel treatment modalities to tackle soaring chronic diseases and unfulfilled medical requirements, consequently sparking more targeted and effective research and development endeavors. Cell processing tools aid biopharmaceutical research by facilitating effective, standardized, and expandable cell manipulation, thereby expediting the creation and manufacturing of sophisticated cell-based treatments. For instance, in December 2024, it was reported by the Switzerland-based non-profit organization, International Federation of Pharmaceutical Manufacturers and Associations, that 50 pharmaceutical corporations invested $167 billion in research and development in 2022. Hence, the escalating funding in biopharmaceutical research acts as a catalyst for growth in the cell processing instruments industry.

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What Long-Term Trends Will Define the Future of the Cell Processing Instruments Market?
Major firms working in the cell processing instrument market are concentrating on creating innovative techniques like multi-channel asynchronous processing to increase the effectiveness and flexibility of cell therapy development. This processing technique allows a system to run multiple independent workflows simultaneously over separate channels, enabling different processes to work in conjunction without waiting for one another to finish. As an example, Singleron Biotechnologies GmbH, a biotechnology company based in Germany, introduced two new devices, Python Junior and Matrix NEO, in June 2023 to improve and standardize single-cell analysis workflow. Python Junior simplifies the dissociation process of solid tissues into high-quality single-cell suspensions using dual independent channels and a combination of mechanical and enzymatic processing. Conversely, the Matrix NEO equipment is designed for high-throughput, fully automated single-cell library preparation with chip priming, cell division, lysis, and nucleic acid capture across four channels. This is meant to support various applications and throughput levels in both research and clinical environments.

What Are the Key Segments in the Cell Processing Instruments Market?
The cell processing instruments market covered in this report is segmented

1) By Type: Cell Counters, Cell Imaging Systems, Flow Cytometers, Cell Separator Systems, Automated Cell Processing Systems, Other Instruments
2) By Application: Cell Isolation Or Separation, Cell Imaging And Counting, Cell Viability And Proliferation, Other Applications
3) By End-Use: Pharmaceutical And Biotechnology Companies, Contract Research Organizations (CROs) And Contract Manufacturing Organizations (CMOs), Academic And Research Institutes, Other End-Uses

Subsegments:
1) By Cell Counters: Manual Cell Counters, Automated Cell Counters, Digital Cell Counters
2) By Cell Imaging Systems: Brightfield Imaging Systems, Fluorescence Imaging Systems, High-Content Imaging Systems, Live Cell Imaging Systems
3) By Flow Cytometers: Analog Flow Cytometers, Digital Flow Cytometers, Benchtop Flow Cytometers, Clinical Flow Cytometers
4) By Cell Separator Systems: Magnetic-Activated Cell Sorting (MACS) Systems, Fluorescence-Activated Cell Sorting (FACS) Systems, Centrifugal Elutriation Systems
5) By Automated Cell Processing Systems: Cell Expansion Systems, Cell Washing And Concentration Systems, Cell Harvesting Systems, Integrated Cell Processing Platforms
6) By Other Instruments: Cell Disruption Systems, Cell Viability Analyzers, Centrifuges For Cell Processing, Cell Freezing And Thawing Systems

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Who Are the Key Players Shaping the Cell Processing Instruments Market's Competitive Landscape?
Major companies operating in the cell processing instruments market are Thermo Fisher Scientific Inc., Danaher Corporation, Merck KGaA, Becton Dickinson and Company, Avantor Inc., Agilent Technologies Inc., Sartorius AG, Revvity Inc., Bio-Rad Laboratories Inc., Eppendorf SE, Tecan Group Ltd., Bio-Techne Corporation, STEMCELL Technologies Inc., Miltenyi Biotec B.V. & Co. KG, Takara Bio Inc., 10x Genomics Inc., Promega Corporation, Esco Lifesciences Group Ltd., NanoCellect Biomedical Inc., and InGeneron Inc.

What Geographic Markets Are Powering Growth in the Cell Processing Instruments Market?
North America was the largest region in the cell processing instruments market in 2024. Asia-Pacific is expected to be the fastest-growing region in the forecast period. The regions covered in the cell processing instruments market report are Asia-Pacific, Western Europe, Eastern Europe, North America, South America, Middle East, Africa.

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4.Consultants & Analysts - To support market entry, expansion strategies, and client advisory work.

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Learn More About The Business Research Company
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