Li Hao, Wang Yusong, Zhu Gehua, Ma Qimin, Huang Shengyu, Guo Guanghua, Zhu Feng
Medical Center of Burn Plastic and Wound Repair, The First Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, China.
Department of Burns, The First Affiliated Hospital, Naval Medical University, Shanghai, China.
Front Cell Dev Biol. 2024 Jan 9;11:1336482. doi: 10.3389/fcell.2023.1336482. eCollection 2023.
Single-Cell Sequencing (SCS) technology plays an important role in the field of Mesenchymal Stem Cells (MSCs) research. This paper comprehensively describes the application of SCS technology in the field of MSCs research, including (1) SCS enables more precise MSCs characterization and biomarker definition. (2) SCS reveals the prevalent gene expression heterogeneity among different subclusters within MSCs, which contributes to a more comprehensive understanding of MSCs function and diversity in developmental, regenerative, and pathological contexts. (3) SCS provides insights into the dynamic transcriptional changes experienced by MSCs during differentiation and the complex web of important signaling pathways and regulatory factors controlling key processes within MSCs, including proliferation, differentiation and regulation, and interactions mechanisms. (4) The analytical methods underpinning SCS data are rapidly evolving and converging with the field of histological research to systematically deconstruct the functions and mechanisms of MSCs. This review provides new perspectives for unraveling the biological properties, heterogeneity, differentiation potential, biological functions, and clinical potential of MSCs at the single-cell level.
单细胞测序(SCS)技术在间充质干细胞(MSCs)研究领域发挥着重要作用。本文全面描述了SCS技术在MSCs研究领域的应用,包括:(1)SCS能够更精确地表征MSCs并定义生物标志物。(2)SCS揭示了MSCs不同亚群之间普遍存在的基因表达异质性,这有助于更全面地理解MSCs在发育、再生和病理环境中的功能和多样性。(3)SCS有助于深入了解MSCs在分化过程中经历的动态转录变化,以及控制MSCs内关键过程(包括增殖、分化和调控以及相互作用机制)的重要信号通路和调控因子的复杂网络。(4)支撑SCS数据的分析方法正在迅速发展,并与组织学研究领域相结合,以系统地解构MSCs的功能和机制。本综述为在单细胞水平上揭示MSCs的生物学特性、异质性、分化潜能、生物学功能和临床潜力提供了新的视角。