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首页> 外文期刊>Cancer immunology, immunotherapy : >Run for your life: an integrated virtual tissue platform for incorporating exercise oncology into immunotherapy
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Run for your life: an integrated virtual tissue platform for incorporating exercise oncology into immunotherapy

机译:为您的生活运行:一个集成的虚拟组织平台,用于将锻炼肿瘤纳入免疫疗法

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摘要

The purpose of this paper is to introduce a novel in silico platform for simulating early-stage solid tumor growth and anti-tumor immune response. We present the model, test the sensitivity and robustness of its parameters, and calibrate it with clinical data from exercise oncology experiments which offer a natural biological backdrop for modulation of anti-tumor immune response. We then perform two virtual experiments with the model that demonstrate its usefulness in guiding pre-clinical and clinical studies of immunotherapy. The first virtual experiment describes the intricate dynamics in the tumor microenvironment between the tumor and the infiltrating immune cells. Such dynamics is difficult to probe during a pre-clinical study as it requires significant redundancy in lab animals and is prohibitively time-consuming and labor-intensive. The result is a series of spatiotemporal snapshots of the tumor and its microenvironment that can serve as a platform to test mechanistic hypotheses on the role and dynamics of different immune cells in anti-tumor immune response. The second virtual experiment shows how dosage and/or frequency of immunotherapy drugs can be optimized based on the aerobic fitness of the patient, so that possible adverse side effects of the treatment can be minimized.
机译:本论文的目的是介绍一种新型的模拟早期实体瘤生长和抗肿瘤免疫反应的硅平台。我们介绍了该模型,测试了其参数的敏感性和鲁棒性,并用运动肿瘤学实验的临床数据对其进行了校准,这些实验为调节抗肿瘤免疫反应提供了自然的生物学背景。然后,我们用该模型进行了两个虚拟实验,证明其在指导免疫治疗的临床前和临床研究方面的有效性。第一个虚拟实验描述了肿瘤微环境中肿瘤和浸润性免疫细胞之间的复杂动力学。在临床前研究期间,这种动力学很难探测,因为它需要在实验室动物中大量冗余,并且耗费大量时间和劳动。结果是肿瘤及其微环境的一系列时空快照,可以作为一个平台来测试关于不同免疫细胞在抗肿瘤免疫反应中的作用和动力学的机制假说。第二个虚拟实验展示了如何根据患者的有氧适应能力优化免疫治疗药物的剂量和/或频率,从而将治疗可能产生的副作用降至最低。

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