Wu Xiangyu, Yang Xin, Dai Yunhan, Zhao Zihan, Zhu Junmeng, Guo Hongqian, Yang Rong
Department of Urology, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, 321 Zhongshan Road, Nanjing, 210008, Jiangsu, China.
Medical School, Nanjing University, Nanjing, China.
Biomark Res. 2024 Sep 27;12(1):110. doi: 10.1186/s40364-024-00643-4.
Cells, as the fundamental units of life, contain multidimensional spatiotemporal information. Single-cell RNA sequencing (scRNA-seq) is revolutionizing biomedical science by analyzing cellular state and intercellular heterogeneity. Undoubtedly, single-cell transcriptomics has emerged as one of the most vibrant research fields today. With the optimization and innovation of single-cell sequencing technologies, the intricate multidimensional details concealed within cells are gradually unveiled. The combination of scRNA-seq and other multi-omics is at the forefront of the single-cell field. This involves simultaneously measuring various omics data within individual cells, expanding our understanding across a broader spectrum of dimensions. Single-cell multi-omics precisely captures the multidimensional aspects of single-cell transcriptomes, immune repertoire, spatial information, temporal information, epitopes, and other omics in diverse spatiotemporal contexts. In addition to depicting the cell atlas of normal or diseased tissues, it also provides a cornerstone for studying cell differentiation and development patterns, disease heterogeneity, drug resistance mechanisms, and treatment strategies. Herein, we review traditional single-cell sequencing technologies and outline the latest advancements in single-cell multi-omics. We summarize the current status and challenges of applying single-cell multi-omics technologies to biological research and clinical applications. Finally, we discuss the limitations and challenges of single-cell multi-omics and potential strategies to address them.
细胞作为生命的基本单位,包含多维时空信息。单细胞RNA测序(scRNA-seq)通过分析细胞状态和细胞间异质性,正在彻底改变生物医学科学。毫无疑问,单细胞转录组学已成为当今最活跃的研究领域之一。随着单细胞测序技术的优化与创新,隐藏在细胞内的复杂多维细节正逐渐被揭示。scRNA-seq与其他多组学的结合处于单细胞领域的前沿。这涉及到在单个细胞内同时测量各种组学数据,在更广泛的维度上拓展我们的认知。单细胞多组学在不同的时空背景下精确捕捉单细胞转录组、免疫组库、空间信息、时间信息、表位及其他组学的多维特征。除了描绘正常或患病组织的细胞图谱外,它还为研究细胞分化和发育模式、疾病异质性、耐药机制及治疗策略提供了基石。在此,我们回顾传统的单细胞测序技术,并概述单细胞多组学的最新进展。我们总结了将单细胞多组学技术应用于生物学研究和临床应用的现状与挑战。最后,我们讨论了单细胞多组学的局限性和挑战以及应对这些挑战的潜在策略。