Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, MA.
Broad Institute of Massachusetts Institute of Technology and Harvard University, Cambridge, MA.
Blood. 2023 Jan 26;141(4):369-379. doi: 10.1182/blood.2021014669.
Single-cell analysis has emerged over the past decade as a transformative technology informative for the systematic analysis of complex cell populations such as in cancers and the tumor immune microenvironment. The methodologic and analytical advancements in this realm have evolved rapidly, scaling from but a few cells at its outset to the current capabilities of processing and analyzing hundreds of thousands of individual cells at a time. The types of profiling attainable at individual cell resolution now range from genetic and transcriptomic characterization and extend to epigenomic and spatial analysis. Additionally, the increasing ability to achieve multiomic integration of these data layers now yields ever richer insights into diverse molecular disease subtypes and the patterns of cellular circuitry on a per-cancer basis. Over the years, chronic lymphocytic leukemia (CLL) consistently has been at the forefront of genomic investigation, given the ready accessibility of pure leukemia cells and immune cells from circulating blood of patients with this disease. Herein, we review the recent forays into the application of single-cell analysis to CLL, which are already revealing a new understanding of the natural progression of CLL, the impact of novel therapies, and the interactions with coevolving nonmalignant immune cell populations. As we emerge from the end of the beginning of this technologic revolution, CLL stands poised to reap the benefits of single-cell analysis from the standpoints of uncovering fresh fundamental biological knowledge and of providing a path to devising regimens of personalized diagnosis, treatment, and monitoring.
单细胞分析在过去十年中已经成为一种变革性的技术,可用于系统分析复杂的细胞群体,如癌症和肿瘤免疫微环境。该领域的方法学和分析进展迅速,从最初只能处理少数几个细胞发展到现在一次能够处理和分析数十万个单细胞。目前,在单细胞分辨率下可实现的分析类型从遗传和转录组特征分析扩展到表观基因组和空间分析。此外,这些数据层的多组学整合能力不断提高,使我们能够更深入地了解不同的分子疾病亚型以及基于每个肿瘤的细胞电路模式。多年来,慢性淋巴细胞白血病(CLL)一直处于基因组研究的前沿,因为从患有这种疾病的患者的循环血液中很容易获得纯白血病细胞和免疫细胞。本文综述了单细胞分析在 CLL 中的最新应用,这些应用已经揭示了对 CLL 自然进展、新型疗法的影响以及与共进化的非恶性免疫细胞群体相互作用的新认识。随着我们从这项技术革命的开始走向结束,CLL 有望从揭示新的基本生物学知识和为制定个性化诊断、治疗和监测方案提供途径的角度受益于单细胞分析。