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干细胞研究中的单细胞技术

Single-cell Technology in Stem Cell Research.

作者信息

Golchin Ali, Shams Forough, Moradi Faezeh, Sadrabadi Amin Ebrahimi, Parviz Shima, Alipour Shahriar, Ranjbarvan Parviz, Hemmati Yaser, Rahnama Maryam, Rasmi Yousef, Aziz Shiva Gholizadeh-Ghaleh

机构信息

Cellular and Molecular Research Center, Cellular and Molecular Medicine Institute, Urmia University of Medical Sciences, Urmia, Iran.

Department of Clinical Biochemistry and Applied Cell Sciences, School of Medicine, Urmia University of Medical Sciences, Urmia, Iran.

出版信息

Curr Stem Cell Res Ther. 2025;20(1):9-32. doi: 10.2174/011574888X265479231127065541.

Abstract

Single-cell technology (SCT), which enables the examination of the fundamental units comprising biological organs, tissues, and cells, has emerged as a powerful tool, particularly in the field of biology, with a profound impact on stem cell research. This innovative technology opens new pathways for acquiring cell-specific data and gaining insights into the molecular pathways governing organ function and biology. SCT is not only frequently used to explore rare and diverse cell types, including stem cells, but it also unveils the intricacies of cellular diversity and dynamics. This perspective, crucial for advancing stem cell research, facilitates non-invasive analyses of molecular dynamics and cellular functions over time. Despite numerous investigations into potential stem cell therapies for genetic disorders, degenerative conditions, and severe injuries, the number of approved stem cell-based treatments remains limited. This limitation is attributed to the various heterogeneities present among stem cell sources, hindering their widespread clinical utilization. Furthermore, stem cell research is intimately connected with cutting-edge technologies, such as microfluidic organoids, CRISPR technology, and cell/tissue engineering. Each strategy developed to overcome the constraints of stem cell research has the potential to significantly impact advanced stem cell therapies. Drawing on the advantages and progress achieved through SCT-based approaches, this study aims to provide an overview of the advancements and concepts associated with the utilization of SCT in stem cell research and its related fields.

摘要

单细胞技术(SCT)能够对构成生物器官、组织和细胞的基本单位进行检测,已成为一种强大的工具,尤其是在生物学领域,对干细胞研究产生了深远影响。这项创新技术为获取细胞特异性数据以及深入了解调控器官功能和生物学的分子途径开辟了新途径。SCT不仅经常用于探索包括干细胞在内的稀有和多样的细胞类型,还揭示了细胞多样性和动态变化的复杂性。这种观点对于推进干细胞研究至关重要,有助于随着时间推移对分子动力学和细胞功能进行非侵入性分析。尽管针对遗传疾病、退行性疾病和严重损伤的潜在干细胞疗法进行了大量研究,但获批的基于干细胞的治疗方法数量仍然有限。这一限制归因于干细胞来源中存在的各种异质性,阻碍了它们在临床上的广泛应用。此外,干细胞研究与微流控类器官、CRISPR技术和细胞/组织工程等前沿技术密切相关。为克服干细胞研究的限制而开发的每一种策略都有可能对先进的干细胞疗法产生重大影响。本研究借鉴基于SCT的方法所取得的优势和进展,旨在概述与SCT在干细胞研究及其相关领域的应用相关的进展和概念。

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