BGI Research, Shenzhen, 518083, China.
College of Life Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
Small Methods. 2023 Nov;7(11):e2300730. doi: 10.1002/smtd.202300730. Epub 2023 Sep 15.
Cell-cell interaction is one of the major modalities for transmitting information between cells and activating the effects of functional cells. However, the construction of high-throughput analysis technologies from cell omics focusing on the impact of interactions of functional cells on targets has been relatively unexplored. Here, they propose a droplet-based microfluidic platform for cell-cell interaction sequencing (c-c-seq) and screening in vitro to address this challenge. A class of interacting cells is pre-labeled using cell molecular tags, and additional single-cell sequencing reagents are introduced to quickly form functional droplet mixes. Lastly, gene expression analysis is used to deduce the impact of the interaction, while molecular sequence tracing identifies the type of interaction. Research into the active effect between antigen-presenting cells and T cells, one of the most common cell-to-cell interactions, is crucial for the advancement of cancer therapy, particularly T cell receptor-engineered T cell therapy. As it allows for high throughput, this platform is superior to well plates as a research platform for cell-to-cell interactions. When combined with the next generation of sequencing, the platform may be able to more accurately evaluate interactions between epitopes and receptors and verify their functional relevance.
细胞间相互作用是细胞间信息传递和激活功能细胞效应的主要方式之一。然而,从关注功能细胞对靶标的相互作用的细胞组学角度出发,构建高通量分析技术仍然相对未被探索。在这里,他们提出了一种基于液滴的微流控细胞间相互作用测序(c-c-seq)和体外筛选平台,以解决这一挑战。使用细胞分子标签预先标记一类相互作用的细胞,并引入额外的单细胞测序试剂,以快速形成功能液滴混合物。最后,通过基因表达分析来推断相互作用的影响,而分子序列追踪则确定相互作用的类型。研究抗原呈递细胞与 T 细胞之间的活性效应,这是最常见的细胞间相互作用之一,对于癌症治疗,特别是 T 细胞受体工程化 T 细胞治疗的发展至关重要。由于该平台具有高通量的特点,因此作为细胞间相互作用的研究平台,它优于培养板。当与下一代测序技术结合使用时,该平台可能能够更准确地评估表位和受体之间的相互作用,并验证其功能相关性。