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市場調査レポート
商品コード
1800762
細胞解析の市場レポート:製品タイプ別、解析タイプ別、手法別、エンドユーザー別、地域別、2025~2033年Cell Analysis Market Report by Product, Analysis Type, Techniques, End-User, and Region 2025-2033 |
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細胞解析の市場レポート:製品タイプ別、解析タイプ別、手法別、エンドユーザー別、地域別、2025~2033年 |
出版日: 2025年08月01日
発行: IMARC
ページ情報: 英文 139 Pages
納期: 2~3営業日
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世界の細胞解析の市場規模は2024年に222億米ドルに達しました。今後、IMARC Groupは、同市場が2033年までに412億米ドルに達し、2025~2033年にかけて7.1%の成長率(CAGR)を示すと予測しています。個別化医療へのシフト、世界のがん患者の増加、細胞解析における人工知能と機械学習の統合の拡大などが、市場成長の触媒となっています。
がん患者数の増加
世界中でがん患者数が増加していることが、主に市場成長の原動力となっています。がん研究における細胞解析ツールや技術により、腫瘍細胞の遺伝子変異、タンパク質発現プロファイル、腫瘍微小環境内での細胞間相互作用など、腫瘍細胞の正確な特性解析が可能になります。がん患者の増加は細胞解析市場シェアの触媒となっています。例えば、米国がん協会(American Cancer Society)の2022年最新情報によると、米国では2022年に約191万8,030人の新規がん患者が発生したと推定されています。さらに、肺がんと乳がんは、最も一般的ながんの2つです。カナダがん協会(CCS)によると、2020年には、約2万9,800人のカナダ人が肺がんと診断され、新規がん患者全体の13%を占めました。また約2万1,200人のカナダ人が肺がんで死亡すると予想され、これは2020年の全がん死亡者の25%を占めました。このことは、効果的でより高度ながん治療に対するニーズが高まっていることを示しています。このように、効果的かつ持続的ながん治療に対する需要の高まりは、市場全体に有利な成長機会を提供すると予想されます。
新規分子の開発増加
様々な感染症の流行は、新規分子やワクチンの開発を促し、細胞解析市場の収益を増大させています。細胞解析ツールは、研究者が潜在的な薬剤候補の有効性、安全性、作用機序を評価できるようにすることで、創薬開発において重要な役割を果たしています。さらに、様々な製薬会社やバイオテクノロジー企業は、新薬や改良薬を導入するために、細胞解析技術やツールへの依存度を高めています。例えば、米国議会予算局が発表したデータによると、2021年、製薬業界は2020年の研究開発に世界全体で約2,000億米ドルを費やしたのに対し、2019年には8,300万米ドルを費やしたことが確認されています。同様に、Danaher Corporationは2020年に13億4,800万米ドルを研究開発に投資したのに対し、2021年には17億4,200万米ドルを投資しました。さらに、Bio-Rad Laboratories Inc.は、2020年の8億30万米ドルに対し、2021年には8億7,960万米ドルを投資しています。このように、企業による研究開発投資の増加は、革新的な細胞解析技術を採用する企業の能力をさらに高め、細胞解析市場の成長を促進しています。
戦略的提携と買収の増加
細胞解析の新しい手法やツール、技術を開発するために、さまざまな主要企業がパートナーシップや提携を結んでいます。例えば、2022年8月、受賞歴のあるCellDrop Automated Cell CounterのメーカーであるDeNovix Inc.は、分離した核と損傷のない細胞を破片から区別できる2つの核カウント専用アプリを開発しました。CellDropシリーズは、画像ベースの自動セルカウンターのラインです。システムには、ライブプレビューと結果の即時レビューのための高精細7インチタッチスクリーンが含まれています。同様に、2022年11月には、フローサイトメーターから得られたデータを用いて、様々な細胞集団からがん細胞や幹細胞などの希少細胞を迅速に同定できるフローサイトメトリーデータ解析クラウドソリューション「SFA-Life Sciences Cloud Platform」の提供を開始しました。これに加え、Thermo Fisher Scientificは2022年3月、細胞療法の開発を可能にすることを目的とした新しい大容量エレクトロポレーションシステムを発表しました。このような技術革新は、今後数年間の細胞解析市場の需要を強化すると予想されます。
The global cell analysis market size reached USD 22.2 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 41.2 Billion by 2033, exhibiting a growth rate (CAGR) of 7.1% during 2025-2033. The shift towards personalized medicine, increasing cases of cancer across the globe, and growing integration of artificial intelligence and machine learning in cell analysis are some of the key factors, catalyzing the growth of the market.
Growing Burden of Cancer
The rising number of cancer cases across the world is primarily driving the market growth. Cell analysis tools and techniques in cancer research enable precise characterization of tumor cells, including their genetic mutations, protein expression profiles, and cellular interactions within the tumor microenvironment. The growing number of cancer patients is catalyzing the cell analysis market share. For instance, as per an American Cancer Society 2022 update, around 1,918,030 new cancer cases were estimated in the U.S. in 2022. Furthermore, lung cancer and breast cancer are two of the most common cancers found among individuals. The Canadian Cancer Society (CCS) stated that in 2020, nearly 29,800 Canadians were diagnosed with lung cancer, which accounted for 13% of all new cancer cases. About 21,200 Canadians were expected to die from lung cancer, which represented 25% of all cancer deaths in 2020. This indicates an inflating need for effective and more advanced cancer cell analysis. Thus, the increasing demand for effective and lasting cancer treatment is anticipated to offer lucrative growth opportunities to the overall market.
Increasing Development of Novel Molecules
The rising prevalence of various infectious diseases is prompting the development of novel molecules and vaccines, which in turn is augmenting the cell analysis market revenue. Cell analysis tools play a crucial role in drug discovery and development by enabling researchers to assess the efficacy, safety, and mechanism of action of potential drug candidates. Furthermore, various pharmaceutical and biotech firms are increasingly relying on cell analysis techniques and tools to introduce new and improved drugs. For instance, according to the data published by the Congressional Budget Office, in 2021, it was observed that pharmaceutical industries spent nearly USD 200 Billion on research and development in 2020 globally, compared to USD 83 Million in 2019. Similarly, Danaher Corporation invested USD 1,742 Million in its research and development in 2021, as compared to USD 1,348 Million in 2020. In addition, Bio-Rad Laboratories Inc., invested USD 879.6 Million in 2021 as compared to USD 800.3 Million in 2020. Thus, the rising investment in research and development by the companies further increases the capabilities of the company to adopt innovative cell analysis techniques, thereby propelling the cell analysis market growth.
Rising Number of Strategic Collaborations and Acquisitions
Various key market players are forming partnerships and collaborations to develop new and improved cell analysis methods, tools, and techniques. For instance, in August 2022, DeNovix Inc., the manufacturer of the award-winning CellDrop Automated Cell Counter, developed two dedicated nuclei counting apps capable of differentiating isolated nuclei and intact cells from debris. The CellDrop Series is a line of image-based, automated cell counters. Systems include a high-definition 7-inch touchscreen for live preview and instant review of results. Similarly, in November 2022, Sony Corporation launched the SFA - Life Sciences Cloud Platform, a flow cytometry data analysis cloud solution that can quickly identify rare cells, such as cancer cells and stem cells, from a wide variety of cell populations, using data obtained from flow cytometers. In addition to this, in March 2022, Thermo Fisher Scientific introduced a new large-volume electroporation system that is intended to enable the development of cell therapies. Such innovations are expected to bolster the cell analysis market demand in the coming years.
Flow cytometry products exhibit a clear dominance in the market
The cell analysis market report has provided a detailed breakup and analysis of the market based on the product. This includes flow cytometry products, qPCR Products, cell microarrays, microscopes, spectrophotometers, cell counters, HCS systems, and others. According to the report, flow cytometry products exhibit a clear dominance in the market.
Flow cytometry products are pivotal in the cell analysis market, offering precise quantification and characterization of cells based on their physical and chemical properties. Key components include flow cytometers, which analyze cells in fluid suspension using lasers to detect fluorescently labeled cells. Reagents such as fluorescent dyes and antibodies enable specific labeling for biomarker detection, while software facilitates data analysis and visualization. These products are essential in research, clinical diagnostics, and drug discovery, providing insights into cell function, differentiation, and disease mechanisms. Ongoing advancements in technology are enhancing sensitivity, multiplexing capabilities, and automation, expanding the utility of flow cytometry in diverse biomedical applications.
Cell identification analysis type holds the majority of the total market share
The cell analysis market research report has provided a detailed breakup and analysis of the market based on the analysis type. This includes cell identification, cell viability, cell signaling pathways/signal transduction, cell proliferation, cell counting and quality control, cell interaction, target identification and validation, single-cell analysis, and others. According to the report, cell identification analysis type holds the majority of the total market share.
Cell identification in cell analysis involves various techniques to distinguish and classify cells based on their morphological, molecular, or functional characteristics. Methods include microscopy for visual inspection, flow cytometry for quantitative analysis of cell surface markers, and molecular techniques like PCR for genetic profiling. Immunohistochemistry and immunofluorescence enable detection of specific proteins within tissues or cell samples. Advances in single-cell analysis technologies allow for high-resolution characterization of individual cells within heterogeneous populations. Accurate cell identification is crucial in understanding disease mechanisms, assessing treatment responses, and advancing personalized medicine by tailoring therapies based on individual cell profiles.
Molecular approaches represent the largest market share
Molecular approaches in cell analysis focus on studying cellular components at the molecular level to understand biological processes and diseases. Techniques include PCR (Polymerase Chain Reaction) for amplifying and detecting DNA or RNA sequences, Western blotting for protein detection and quantification, and next-generation sequencing (NGS) for comprehensive genomic analysis. These methods enable researchers to investigate gene expression, mutations, protein interactions, and epigenetic modifications within cells. Molecular approaches are vital in biomarker discovery, drug development, and personalized medicine, offering insights into cellular function and disease mechanisms with high sensitivity and specificity. Continued advancements enhance their utility in diverse biomedical research applications.
Pharmaceutical and biotechnology companies and CROs currently account for the majority of the total market share
Pharmaceutical and biotechnology companies develop and commercialize drugs and therapies for medical use. They conduct extensive research and clinical trials to discover new compounds, validate their efficacy and safety, and obtain regulatory approvals. Contract Research Organizations (CROs) support these efforts by providing specialized, such as clinical trial management, data analysis, and regulatory compliance. CROs enable companies to outsource non-core activities, accelerate timelines, and manage costs effectively. Furthermore, the increasing rate of new drug development is also contributing to the segment's growth. For instance, between 2010 and 2019, around 38 new drugs were approved each year, on an average. That is about a 60% increase compared with the previous decade. Drug approvals reached a new peak in 2018, surpassing the record number of approvals of the late 1990s. The cell analysis market statistics by IMARC indicate that together, pharmaceutical/biotech firms and CROs are playing crucial roles in advancing healthcare innovation, bringing new treatments to market, and improving patient outcomes through rigorous scientific research and development.
North America currently dominates the global market
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa. According to the report, North America currently dominates the global market.
The growth of the region can be attributed to the increase in incidences of cancer and rising corporate and government funding in cell-based research. For instance, according to the Canadian Cancer Statistics 2022 Special Report, the number of people living with and after cancer in Canada continued to grow to over 1.5 million people. Additionally, according to another report, 2 in 5 Canadians are expected to be diagnosed with cancer in their lifetime. Approximately 1 in 4 Canadians is expected to die of the disease. Besides this, the presence of major companies, the growing number of product launches, and the strong R&D in biotechnology are further positively impacting the cell analysis market outlook. For instance, in September 2022, Becton, Dickinson, and Company launched BD Research Cloud, a cloud-based software solution designed to streamline the flow cytometry workflow to enable higher-quality experiments with faster time to insight for scientists working across a range of disciplines, including immunology, virology, oncology, and infectious disease monitoring.