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通过计算建模视角理解健康与疾病中T细胞激活的动态过程。

Understanding the Dynamics of T-Cell Activation in Health and Disease Through the Lens of Computational Modeling.

作者信息

Rohrs Jennifer A, Wang Pin, Finley Stacey D

机构信息

University of Southern California, Los Angeles, CA.

出版信息

JCO Clin Cancer Inform. 2019 Jan;3:1-8. doi: 10.1200/CCI.18.00057.

Abstract

T cells in the immune system are activated by binding to foreign peptides (from an external pathogen) or mutant peptide (derived from endogenous proteins) displayed on the surface of a diseased cell. This triggers a series of intracellular signaling pathways, which ultimately dictate the response of the T cell. The insights from computational models have greatly improved our understanding of the mechanisms that control T-cell activation. In this review, we focus on the use of ordinary differential equation-based mechanistic models to study T-cell activation. We highlight several examples that demonstrate the models' utility in answering specific questions related to T-cell activation signaling, from antigen discrimination to the feedback mechanisms that initiate transcription factor activation. In addition, we describe other modeling approaches that can be combined with mechanistic models to bridge time scales and better understand how intracellular signaling events, which occur on the order of seconds to minutes, influence phenotypic responses of T-cell activation, which occur on the order of hours to days. Overall, through concrete examples, we emphasize how computational modeling can be used to enable the rational design and optimization of immunotherapies.

摘要

免疫系统中的T细胞通过与患病细胞表面展示的外来肽(来自外部病原体)或突变肽(源自内源性蛋白质)结合而被激活。这会触发一系列细胞内信号通路,最终决定T细胞的反应。计算模型的见解极大地增进了我们对控制T细胞激活机制的理解。在本综述中,我们专注于使用基于常微分方程的机制模型来研究T细胞激活。我们重点介绍了几个例子,这些例子展示了模型在回答与T细胞激活信号相关的特定问题方面的效用,从抗原识别到启动转录因子激活的反馈机制。此外,我们描述了其他建模方法,这些方法可以与机制模型相结合,以跨越时间尺度,并更好地理解发生在几秒到几分钟内的细胞内信号事件如何影响发生在几小时到几天内的T细胞激活的表型反应。总体而言,通过具体例子,我们强调了计算建模如何可用于实现免疫疗法的合理设计和优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b00a/6874032/7c118ffe6484/CCI.18.00057f1.jpg

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