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市場調査レポート
商品コード
1561066
シングルセル解析の市場規模、シェア、成長分析、タイプ別、用途別、地域別 - 産業予測、2024年~2031年Single Cell Analysis Market Size, Share, Growth Analysis, By Type(Flow Cytometry, Next-Generation Sequencing ), By Application(Research Applications, Clinical Applications), By Region - Industry Forecast 2024-2031 |
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シングルセル解析の市場規模、シェア、成長分析、タイプ別、用途別、地域別 - 産業予測、2024年~2031年 |
出版日: 2024年09月18日
発行: SkyQuest
ページ情報: 英文 157 Pages
納期: 3~5営業日
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シングルセル解析の世界市場規模は、2022年に32億米ドルと評価され、2023年の36億3,000万米ドルから2031年には100億米ドルに成長し、予測期間中(2024-2031年)のCAGRは13.50%で成長する見通しです。
シングルセル解析の世界市場は力強い成長を遂げており、近い将来さらに拡大すると見られています。この分野は、がん研究、免疫学、神経科学、幹細胞生物学など、さまざまな研究分野で重要性を増しています。この成長の主な原動力は、個別化医療に対する需要の高まりです。ゲノミクスと分子生物学の進歩は、組織や生物体内の個々の細胞が、さまざまな異なる特徴や反応を示す可能性があることを浮き彫りにしました。この認識は、標的治療や精密医療へのシフトを後押ししており、シングルセルを解析することで、個々の患者に治療をカスタマイズするための重要な洞察が得られます。個々の細胞を調べる能力は、疾患特異的なバイオマーカーの同定、疾患の進行の理解、効果的な治療法の開発に役立っています。その結果、シングルセル解析技術とソリューションに対する市場の需要が高まっています。フローサイトメトリー、次世代シークエンシング、マスサイトメトリー、シングルセルPCRなどの技術は、細胞の特性や機能の高分解能分析を可能にすることでこの分野に変革をもたらし、市場拡大にさらに拍車をかけています。
Global Single Cell Analysis Market size was valued at USD 3.20 billion in 2022 and is poised to grow from USD 3.63 billion in 2023 to USD 10.00 billion by 2031, growing at a CAGR of 13.50% during the forecast period (2024-2031).
The global market for single-cell analysis is experiencing robust growth and is set for further expansion in the near future. This field is becoming increasingly significant across various research areas including cancer research, immunology, neuroscience, and stem cell biology. A major driver of this growth is the rising demand for personalized medicine. Advances in genomics and molecular biology have highlighted that individual cells within a tissue or organism can display a range of distinct characteristics and responses. This realization is pushing the shift towards targeted therapies and precision medicine, where analyzing single cells provides critical insights for customizing treatments to individual patients. The ability to examine individual cells has been instrumental in identifying disease-specific biomarkers, understanding disease progression, and developing effective therapies. As a result, there is a growing market demand for single-cell analysis technologies and solutions. Techniques such as flow cytometry, next-generation sequencing, mass cytometry, and single-cell PCR have transformed the field by enabling high-resolution analysis of cellular characteristics and functions, further fueling market expansion.
Top-down and bottom-up approaches were used to estimate and validate the size of the Global Single Cell Analysis market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.
Global Single Cell Analysis Market Segmental Analysis
Global Single Cell Analysis Market is segmented by Product, Cell Type, Technique, Application, End User, and region. Based on Product, the market is segmented into Consumables, and Instruments. Based on Cell Type, the market is segmented into Human Cells, Animal Cells, and Microbial Cells. Based on Technique, the market is segmented into Flow Cytometry, Next-Generation Sequencing, Polymerase Chain Reaction, Microscopy, Mass Spectrometry, and Other Techniques. Based on Application, the market is segmented into Research Applications, Medical Applications. Based on End User, the market is segmented into Academic & Research Laboratories, Biotechnology & Pharmaceutical Companies, Hospitals & Diagnostic Laboratories, Cell Banks & IVF Centers. Based on region, the market is segmented into North America, Europe, Asia Pacific, Latin America and Middle East & and Africa.
Drivers of the Global Single Cell Analysis Market
Stem cell biology is undergoing a major research boost due to the promising therapeutic potential of stem cells. Single-cell analysis is crucial in this field as it allows for the detailed characterization and manipulation of stem cells at the individual cell level. This approach enables researchers to identify and isolate specific stem cell populations, monitor their differentiation processes, and assess their functional attributes. As interest in stem cell biology grows, there is an increasing demand for sophisticated single-cell analysis tools and technologies to support these advancements.
Restraints in the Global Single Cell Analysis Market
Single-cell analysis faces significant challenges due to its inherent complexity and high costs. The techniques involved often demand specialized equipment, skilled operators, and meticulously defined workflows, which can complicate their implementation. This complexity can limit the widespread adoption of single-cell analysis, especially in resource-constrained environments where advanced infrastructure and expertise are scarce. Additionally, the financial burden associated with acquiring and maintaining the necessary equipment and reagents for single-cell analysis can be prohibitive for smaller research labs and institutions. These cost and complexity issues create barriers that need to be addressed to make single-cell analysis more accessible and affordable across diverse research settings.
Market Trends of the Global Single Cell Analysis Market
A notable trend in the single-cell analysis market is the growing adoption of spatial transcriptomics. This advanced technique enables researchers to visualize and analyze gene expression patterns across entire tissues, providing valuable insights into cellular organization. By mapping gene activity in situ, spatial transcriptomics helps identify various cell types and subtypes, as well as elucidate cellular interactions within their native environments. This approach enhances our understanding of tissue architecture and cellular dynamics, offering a deeper perspective on how cells communicate and function collectively. As a result, spatial transcriptomics is becoming increasingly integral to research efforts aimed at unraveling complex biological processes and disease mechanisms.