An Xingyue, Varadarajan Navin
Department of Chemical and Biomolecular Engineering, University of Houston, Houston, TX 77204, USA.
Curr Opin Chem Eng. 2018 Mar;19:142-152. doi: 10.1016/j.coche.2018.01.003. Epub 2018 Mar 6.
Immunotherapy relies on the reinvigoration of immune system to combat diseases and has transformed the landscape of cancer treatments. Clinical trials using immune checkpoint inhibitors (ICI), and adoptive transfer of genetically modified T cells have demonstrated durable remissions in subsets of cancer patients. A comprehensive understanding of the polyfunctionality of T lymphocytes in ICI or adoptive cell transfer (ACT), at single-cell resolution, will quantify T-cell properties that are essential for therapeutic benefit. We briefly highlight several emerging integrated single-cell technologies focusing on the profiling of multiple properties/functionalities of T cells. We envision that these tools have the potential to provide valuable experimental and clinical insights on T-cell biology, and eventually pave the road for the discovery of surrogate T-cell biomarkers for immunotherapy.
免疫疗法依靠重振免疫系统来对抗疾病,已经改变了癌症治疗的格局。使用免疫检查点抑制剂(ICI)的临床试验以及基因改造T细胞的过继性转移已在部分癌症患者中显示出持久的缓解效果。在单细胞分辨率下全面了解ICI或过继性细胞转移(ACT)中T淋巴细胞的多功能性,将量化对治疗益处至关重要的T细胞特性。我们简要介绍几种新兴的整合单细胞技术,这些技术专注于T细胞多种特性/功能的分析。我们设想,这些工具有可能为T细胞生物学提供有价值的实验和临床见解,并最终为发现免疫疗法的替代T细胞生物标志物铺平道路。