用光学镊子测量T细胞与靶肿瘤细胞的相互作用动力学。

4区 生物学 Q4 Biochemistry, Genetics and Molecular Biology
Methods in cell biology Pub Date : 2025-01-01 Epub Date: 2024-11-08 DOI:10.1016/bs.mcb.2024.09.002
Edison Gerena, Sophie Goyard, Nicolas Inacio, Jerko Ljubetic, Amandine Schneider, Sinan Haliyo, Thierry Rose
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引用次数: 0

摘要

T细胞粘附动力学是细胞-细胞探索过程中靶细胞识别和免疫突触形成的有力指标,通过特定的细胞间分子相互作用促进细胞通信和激活。各种技术已经被用来记录这些结合动力学,这预示了免疫突触形成的动力学。本文利用光学镊子在单细胞水平上研究了人白血病T淋巴细胞系(CEM)与小鼠肥大细胞系(P815)作为肿瘤细胞模型的粘附动力学。P815 FcγRII受体被小鼠抗人CD3免疫球蛋白G (OKT3)饱和,通过T细胞CD3成核形成构建突触的TCR复合物,启动T细胞-P815相互作用。研究人员开发了一些方法来评估将T细胞和肿瘤细胞之间的接触转变为稳定的相互作用所需的时间,从而启动突触的形成。在培养条件下,用光镊操作单个T细胞,肿瘤细胞粘附在玻璃表面。研究了三种粘附情况,分别是对两个细胞的同一区域进行重复接触,对T细胞的同一区域但肿瘤细胞表面的不同区域进行重复接触,或在肿瘤细胞表面滚动T细胞。通过这些方法,我们观察到,在抗cd3 OKT3存在的情况下,T细胞固定前CEM与P815的中位接触时间从46s减少到1.3s,中位滚动距离从50μm减少到1.8μm。T细胞粘附速度测定可用于测量其缺乏早期反应,识别参与细胞粘附的分子,或筛选潜在的调节剂。本文描述的基于光镊操作研究T细胞/靶细胞相互作用的技术和定量方法,可以推广到T细胞/树突状细胞、细胞毒性T细胞/靶细胞、T细胞/巨噬细胞、T细胞/B细胞、NK细胞/靶细胞、免疫细胞/感染细胞等所有类型的免疫或病毒学突触。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measuring interaction kinetics between T cells and their target tumor cells with optical tweezers.

T cell adhesion kinetics are a powerful indicator of target cell recognition during the cell-cell exploration process and formation of the immunological synapse facilitating cell communication and activation through specific intercellular molecular interactions. Various techniques have been used to document these binding kinetics, which foreshadow the dynamics of immunological synapse formation. Here, optical tweezers were used for studying at the level of single cells, the adhesion kinetics of human leukemia T lymphocyte cell line (CEM) to mouse mast cell line (P815) used as a tumor cell model. The P815 FcγRII receptors were saturated with the mouse anti-human CD3ɛ immunoglobulin G (OKT3) for initiating the T cell-P815 interaction through the engagement of the T cell CD3 nucleating the TCR complex formation structuring the synapse. Methods were developed to assess the time required to turn a contact between a T cell and a tumor cell into a stable interaction, and thus initiate the synapse formation. Single T cells were manipulated with the optical tweezers while the tumor cells were adhered to the glass surface under culture conditions. Three adhesions scenario were investigated by exerting either repetitive contacts engaging the same area of the two cells, repetitive contacts engaging the same area of the T cell but different areas on the tumor cell surface, or rolling the T cell over the tumor cell surface. With these methods, we observed that the median time of contact of CEM on P815 decreased in the presence of anti-CD3 OKT3 from 46s to 1.3s and the median rolling distance decreased from 50μm to 1.8μm prior the T cell immobilization. T cell adhesion speed assays can be used for measuring their lack of early response, identifying molecules involved in cell adhesion, or screening potential modulators. The techniques and quantitative methods, described here for studying T cell/target cell interaction based on manipulations using optical tweezers, can be generalized to all types of immunological or virological synapses as between T cell/dendritic cell, cytotoxic T cell/target, T cell/macrophage, T cell/B cell, NK cell/target, immune cell/infected cell and others.

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来源期刊
Methods in cell biology
Methods in cell biology 生物-细胞生物学
CiteScore
3.10
自引率
0.00%
发文量
125
审稿时长
3 months
期刊介绍: For over fifty years, Methods in Cell Biology has helped researchers answer the question "What method should I use to study this cell biology problem?" Edited by leaders in the field, each thematic volume provides proven, state-of-art techniques, along with relevant historical background and theory, to aid researchers in efficient design and effective implementation of experimental methodologies. Over its many years of publication, Methods in Cell Biology has built up a deep library of biological methods to study model developmental organisms, organelles and cell systems, as well as comprehensive coverage of microscopy and other analytical approaches.
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