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用于监测癌症免疫治疗反应的非侵入性生物标志物。

Non-invasive biomarkers for monitoring the immunotherapeutic response to cancer.

作者信息

Nisar Sabah, Bhat Ajaz A, Hashem Sheema, Yadav Santosh K, Rizwan Arshi, Singh Mayank, Bagga Puneet, Macha Muzafar A, Frenneaux Michael P, Reddy Ravinder, Haris Mohammad

机构信息

Functional and Molecular Imaging Laboratory, Cancer Research Department, Sidra Medicine, P.O. Box 26999, Doha, Qatar.

Department of Nephrology, AIIMS, New Delhi, India.

出版信息

J Transl Med. 2020 Dec 9;18(1):471. doi: 10.1186/s12967-020-02656-7.

Abstract

Immunotherapy is an efficient way to cure cancer by modulating the patient's immune response. However, the immunotherapy response is heterogeneous and varies between individual patients and cancer subtypes, reinforcing the need for early benefit predictors. Evaluating the infiltration of immune cells in the tumor and changes in cell-intrinsic tumor characteristics provide potential response markers to treatment. However, this approach requires invasive sampling and may not be suitable for real-time monitoring of treatment response. The recent emergence of quantitative imaging biomarkers provides promising opportunities. In vivo imaging technologies that interrogate T cell responses, metabolic activities, and immune microenvironment could offer a powerful tool to monitor the cancer response to immunotherapy. Advances in imaging techniques to identify tumors' immunological characteristics can help stratify patients who are more likely to respond to immunotherapy. This review discusses the metabolic events that occur during T cell activation and differentiation, anti-cancer immunotherapy-induced T cell responses, focusing on non-invasive imaging techniques to monitor T cell metabolism in the search for novel biomarkers of response to cancer immunotherapy.

摘要

免疫疗法是通过调节患者的免疫反应来治愈癌症的一种有效方法。然而,免疫疗法的反应具有异质性,在个体患者和癌症亚型之间存在差异,这进一步凸显了对早期疗效预测指标的需求。评估肿瘤中免疫细胞的浸润情况以及细胞内在肿瘤特征的变化可提供潜在的治疗反应标志物。然而,这种方法需要进行侵入性采样,可能不适用于治疗反应的实时监测。最近出现的定量成像生物标志物提供了有前景的机会。能够检测T细胞反应、代谢活性和免疫微环境的体内成像技术可为监测癌症对免疫疗法的反应提供强大工具。识别肿瘤免疫特征的成像技术进展有助于对更可能对免疫疗法产生反应的患者进行分层。本综述讨论了T细胞激活和分化过程中发生的代谢事件、抗癌免疫疗法诱导的T细胞反应,重点关注用于监测T细胞代谢以寻找癌症免疫疗法反应新生物标志物的非侵入性成像技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b35a/7727217/78c27e358b39/12967_2020_2656_Fig1_HTML.jpg

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