Single-cell and spatial analyses of cancer cells: toward elucidating the molecular mechanisms of clonal evolution and drug resistance acquisition.

IF 5 3区 医学 Q2 IMMUNOLOGY
Satoi Nagasawa, Yukie Kashima, Ayako Suzuki, Yutaka Suzuki
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引用次数: 15

Abstract

Even within a single type of cancer, cells of various types exist and play interrelated roles. Each of the individual cells resides in a distinct microenvironment and behaves differently. Such heterogeneity is the most cumbersome nature of cancers, which is occasionally uncountable when effective prevention or total elimination of cancers is attempted. To understand the heterogeneous nature of each cell, the use of conventional methods for the analysis of "bulk" cells is insufficient. Although some methods are high-throughput and compressive regarding the genes being detected, the obtained data would be from the cell mass, and the average of a large number of the component cells would no longer be measured. Single-cell analysis, which has developed rapidly in recent years, is causing a drastic change. Genome, transcriptome, and epigenome analyses at single-cell resolution currently target cancer cells, cancer-associated fibroblasts, endothelial cells of vessels, and circulating and infiltrating immune cells. In fact, surprisingly diverse features of clonal evolution of cancer cells, during the development of cancer or acquisition of drug resistance, accompanied by corresponding gene expression changes in the circumstantial stromal cells, appeared in recent single-cell analyses. Based on the obtained novel insights, better optimal drug selection and new drug administration sequences were started. Even a remaining concern of the single cell analyses is being addressed. Until very recently, it was impossible to obtain positional information of cells in cancer via single-cell analysis because such information is lost during preparation of single-cell suspensions. A new method, collectively called spatial transcriptome (ST) analysis, has been developed and rapidly applied to various clinical specimens. In this review, we first outline the recent achievements of single-cell cancer analysis in analyzing the molecular basis underlying the acquisition of drug resistance, particularly focusing on the latest anti-epidermal growth factor receptor tyrosine kinase inhibitor, osimertinib. Further, we review the currently available ST analysis methods and introduce our recent attempts regarding the respective topics.

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癌细胞的单细胞和空间分析:阐明克隆进化和耐药获得的分子机制。
即使在单一类型的癌症中,也存在各种类型的细胞并发挥相互关联的作用。每个单独的细胞都生活在不同的微环境中,行为也不同。这种异质性是癌症最麻烦的性质,当试图有效预防或完全消除癌症时,它有时是不可计数的。要了解每个细胞的异质性,使用传统方法分析“散装”细胞是不够的。虽然有些方法对于被检测的基因是高通量和压缩的,但所获得的数据将来自细胞团,并且不再测量大量组成细胞的平均值。单细胞分析近年来发展迅速,引起了巨大的变化。目前,单细胞分辨率下的基因组、转录组和表观基因组分析的目标是癌细胞、癌症相关成纤维细胞、血管内皮细胞、循环和浸润性免疫细胞。事实上,在最近的单细胞分析中,癌细胞克隆进化的惊人多样性特征,在癌症的发展或获得耐药性的过程中,伴随着环境基质细胞中相应的基因表达变化。基于获得的新见解,开始更好的优化药物选择和新的给药顺序。甚至单细胞分析的一个遗留问题也得到了解决。直到最近,还不可能通过单细胞分析获得癌症细胞的位置信息,因为这些信息在制备单细胞悬浮液的过程中会丢失。一种新的方法,统称为空间转录组(ST)分析,已经发展并迅速应用于各种临床标本。在这篇综述中,我们首先概述了单细胞肿瘤分析在分析耐药获得的分子基础方面的最新成就,特别关注最新的抗表皮生长因子受体酪氨酸激酶抑制剂奥希替尼。此外,我们回顾了目前可用的ST分析方法,并介绍了我们最近关于各自主题的尝试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
11.10
自引率
1.20%
发文量
45
审稿时长
11 weeks
期刊介绍: Inflammation and Regeneration is the official journal of the Japanese Society of Inflammation and Regeneration (JSIR). This journal provides an open access forum which covers a wide range of scientific topics in the basic and clinical researches on inflammation and regenerative medicine. It also covers investigations of infectious diseases, including COVID-19 and other emerging infectious diseases, which involve the inflammatory responses. Inflammation and Regeneration publishes papers in the following categories: research article, note, rapid communication, case report, review and clinical drug evaluation.
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