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用于单细胞研究的拉曼细胞分选

Raman cell sorting for single-cell research.

作者信息

Tang Xusheng, Wu Qingyi, Shang Lindong, Liu Kunxiang, Ge Yan, Liang Peng, Li Bei

机构信息

Key Laboratory of Optical System Advanced Manufacturing Technology, Chinese Academy of Sciences, State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Front Bioeng Biotechnol. 2024 May 20;12:1389143. doi: 10.3389/fbioe.2024.1389143. eCollection 2024.

Abstract

Cells constitute the fundamental units of living organisms. Investigating individual differences at the single-cell level facilitates an understanding of cell differentiation, development, gene expression, and cellular characteristics, unveiling the underlying laws governing life activities in depth. In recent years, the integration of single-cell manipulation and recognition technologies into detection and sorting systems has emerged as a powerful tool for advancing single-cell research. Raman cell sorting technology has garnered attention owing to its non-labeling, non-destructive detection features and the capability to analyze samples containing water. In addition, this technology can provide live cells for subsequent genomics analysis and gene sequencing. This paper emphasizes the importance of single-cell research, describes the single-cell research methods that currently exist, including single-cell manipulation and single-cell identification techniques, and highlights the advantages of Raman spectroscopy in the field of single-cell analysis by comparing it with the fluorescence-activated cell sorting (FACS) technique. It describes various existing Raman cell sorting techniques and introduces their respective advantages and disadvantages. The above techniques were compared and analyzed, considering a variety of factors. The current bottlenecks include weak single-cell spontaneous Raman signals and the requirement for a prolonged total cell exposure time, significantly constraining Raman cell sorting technology's detection speed, efficiency, and throughput. This paper provides an overview of current methods for enhancing weak spontaneous Raman signals and their associated advantages and disadvantages. Finally, the paper outlines the detailed information related to the Raman cell sorting technology mentioned in this paper and discusses the development trends and direction of Raman cell sorting.

摘要

细胞构成了生物体的基本单位。在单细胞水平上研究个体差异有助于理解细胞分化、发育、基因表达和细胞特性,深入揭示生命活动的潜在规律。近年来,将单细胞操作和识别技术集成到检测和分选系统中已成为推动单细胞研究的有力工具。拉曼细胞分选技术因其非标记、非破坏性检测特点以及分析含水样品的能力而受到关注。此外,该技术可为后续的基因组分析和基因测序提供活细胞。本文强调了单细胞研究的重要性,描述了目前存在的单细胞研究方法,包括单细胞操作和单细胞识别技术,并通过与荧光激活细胞分选(FACS)技术比较,突出了拉曼光谱在单细胞分析领域的优势。它描述了现有的各种拉曼细胞分选技术,并介绍了它们各自的优缺点。考虑到各种因素,对上述技术进行了比较和分析。当前的瓶颈包括单细胞自发拉曼信号较弱以及对细胞总暴露时间的要求较长,这显著限制了拉曼细胞分选技术的检测速度、效率和通量。本文概述了当前增强弱自发拉曼信号的方法及其相关的优缺点。最后,本文概述了本文中提到的拉曼细胞分选技术的详细信息,并讨论了拉曼细胞分选的发展趋势和方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb26/11145634/c20840a3c2f3/fbioe-12-1389143-g001.jpg

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