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一种多元、定量的检测方法,可以体外分离原代人 T 细胞功能的关键动力学参数。

A multivariate, quantitative assay that disentangles key kinetic parameters of primary human T cell function in vitro.

机构信息

Discovery Research, A2 Biotherapeutics, Inc., Agoura Hills, California, United States of America.

出版信息

PLoS One. 2020 Nov 9;15(11):e0241421. doi: 10.1371/journal.pone.0241421. eCollection 2020.

Abstract

Cell therapy is poised to play a larger role in medicine, most notably for immuno-oncology. Despite the recent success of CAR-T therapeutics in the treatment of blood tumors and the rapid progress toward improved versions of both CAR- and TCR-Ts, important analytical aspects of preclinical development and manufacturing of engineered T cells remain immature. One limiting factor is the absence of robust multivariate assays to disentangle key parameters related to function of engineered effector cells, especially in the peptide-MHC (pMHC) target realm, the natural ligand for TCRs. Here we describe an imaging-based primary T cell assay that addresses several of these limitations. To our knowledge, this assay is the first quantitative, high-content assay that separates the key functional parameters of time- and antigen-dependent T cell proliferation from cytotoxicity. We show that the assay sheds light on relevant biology of CAR- and TCR-T cells, including response kinetics and the influence of effector:target ratio.

摘要

细胞疗法有望在医学中发挥更大的作用,尤其是在免疫肿瘤学方面。尽管最近嵌合抗原受体 T 细胞(CAR-T)疗法在血液肿瘤的治疗中取得了成功,并且朝着改进 CAR-T 和 TCR-T 的方向取得了快速进展,但工程 T 细胞的临床前开发和制造的重要分析方面仍然不成熟。一个限制因素是缺乏强大的多变量分析来区分与工程效应细胞功能相关的关键参数,特别是在肽-MHC(pMHC)靶标领域,即 TCR 的天然配体。在这里,我们描述了一种基于成像的原代 T 细胞检测方法,该方法解决了其中的几个限制。据我们所知,该检测方法是第一个能够分离时间和抗原依赖性 T 细胞增殖与细胞毒性等关键功能参数的定量高内涵检测方法。我们表明,该检测方法揭示了 CAR-T 和 TCR-T 细胞的相关生物学特性,包括反应动力学和效应物与靶标比值的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d30/7652339/2f3e260af441/pone.0241421.g001.jpg

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