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高通量免疫遗传学在癌症精准医学中的应用。

High-Throughput immunogenetics for precision medicine in cancer.

机构信息

Centre for Research and Technology Hellas, Institute of Applied Biosciences, Thessaloniki, Greece; Department of Biology, School of Science, National and Kapodistrian University of Athens, Athens, Greece.

Centre for Research and Technology Hellas, Institute of Applied Biosciences, Thessaloniki, Greece; Department of Genetics and Molecular Biology, Faculty of Biology, Aristotle University of Thessaloniki, Thessaloniki, Greece.

出版信息

Semin Cancer Biol. 2022 Sep;84:80-88. doi: 10.1016/j.semcancer.2021.10.009. Epub 2021 Oct 30.

Abstract

Cancer is characterized by an extremely complex biological background, which hinders personalized therapeutic interventions. Precision medicine promises to overcome this obstacle through integrating information from different 'subsystems', including the host, the external environment, the tumor itself and the tumor micro-environment. Immunogenetics is an essential tool that allows dissecting both lymphoid cancer ontogeny at both a cell-intrinsic and a cell-extrinsic level, i.e. through characterizing micro-environmental interactions, with a view to precision medicine. This is particularly thanks to the introduction of powerful, high-throughput approaches i.e. next generation sequencing, which allow the comprehensive characterization of immune repertoires. Indeed, NGS immunogenetic analysis (Immune-seq) has emerged as key to both understanding cancer pathogenesis and improving the accuracy of clinical decision making in oncology. Immune-seq has applications in lymphoid malignancies, assisting in the diagnosis e.g. through differentiating from reactive conditions, as well as in disease monitoring through accurate assessment of minimal residual disease. Moreover, Immune-seq facilitates the study of T cell receptor clonal dynamics in critical clinical contexts, including transplantation as well as innovative immunotherapy for solid cancers. The clinical utility of Immune-seq represents the focus of the present contribution, where we highlight what can be achieved but also what must be addressed in order to maximally realize the promise of Immune-seq in precision medicine in cancer.

摘要

癌症的特征是极其复杂的生物学背景,这阻碍了个性化的治疗干预。精准医学有望通过整合来自不同“子系统”的信息来克服这一障碍,包括宿主、外部环境、肿瘤本身和肿瘤微环境。免疫遗传学是一种必不可少的工具,它允许从内在和外在水平上对淋巴肿瘤发生进行剖析,即通过描述微环境相互作用,从而实现精准医学。这主要得益于强大的高通量方法的引入,例如下一代测序,它允许全面描述免疫库。事实上,NGS 免疫遗传学分析(免疫测序)已成为理解癌症发病机制和提高肿瘤学临床决策准确性的关键。免疫测序在淋巴恶性肿瘤中有应用,例如通过与反应性疾病区分来辅助诊断,以及通过准确评估微小残留疾病来进行疾病监测。此外,免疫测序有助于在关键临床环境中研究 T 细胞受体克隆动力学,包括移植以及针对实体癌的创新免疫疗法。免疫测序的临床应用是本研究的重点,我们强调了可以实现的目标,以及为了最大限度地实现免疫测序在癌症精准医学中的承诺而必须解决的问题。

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