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T Cell Activation Machinery: Form and Function in Natural and Engineered Immune Receptors

机译:T细胞激活机械:天然和工程免疫受体中的形式和功能

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The impressive success of chimeric antigen receptor (CAR)-T cell therapies in treating advanced B-cell malignancies has spurred a frenzy of activity aimed at developing CAR-T therapies for other cancers, particularly solid tumors, and optimizing engineered T cells for maximum clinical benefit in many different disease contexts. A rapidly growing body of design work is examining every modular component of traditional single-chain CARs as well as expanding out into many new and innovative engineered immunoreceptor designs that depart from this template. New approaches to immune cell and receptor engineering are being reported with rapidly increasing frequency, and many recent high-quality reviews (including one in this special issue) provide comprehensive coverage of the history and current state of the art in CAR-T and related cellular immunotherapies. In this review, we step back to examine our current understanding of the structure-function relationships in natural and engineered lymphocyte-activating receptors, with an eye towards evaluating how well the current-generation CAR designs recapitulate the most desirable features of their natural counterparts. We identify key areas that we believe are under-studied and therefore represent opportunities to further improve our grasp of form and function in natural and engineered receptors and to rationally design better therapeutics.
机译:嵌合抗原受体(汽车)-T细胞疗法治疗晚期B细胞恶性肿瘤的令人印象深刻的成功刺激了旨在为其他癌症,特别是实体肿瘤的Car-T疗法开发Car-T疗法的活动,以及优化工程的T细胞以获得最大的临床在许多不同的疾病环境中受益。一种迅速增长的设计工作,正在检查传统单链车辆的每个模块化成分,以及扩展到从此模板出发的许多新的和创新的工程免疫投射设计。报告了频率迅速增加的免疫细胞和受体工程的新方法,以及最近的许多高质量评论(包括这一特别问题中的审查)为Car-T和相关蜂窝相关的历史和当前状态提供全面的覆盖范围免疫治疗。在这篇综述中,我们返回研究我们目前对天然和工程淋巴细胞激活受体中结构功能关系的理解,以评估当前的汽车设计重新承载其自然对应物的最期望的特征。我们识别我们认为正在研究的关键领域,因此代表了进一步改善自然和工程受体中的形式和功能的机会,并合理地设计更好的治疗方法。

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