训练有素的先天免疫对粘膜癌的作用

IF 5.7 2区 医学 Q1 VIROLOGY
Tao Wang , Yanling Wang , Jinjing Zhang , Yushi Yao
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引用次数: 0

摘要

粘膜组织是原发性和转移性癌症的常发目标。这凸显了粘膜部位先天性和适应性抗癌免疫的重要性。训练有素的先天性免疫(TII)是一个新兴概念,其定义是先天性白细胞在受到先前刺激后很长时间内反应性增强,从而诱发长时间的表观遗传、转录和代谢变化。训练有素的先天性白细胞由于缺乏抗原特异性,在大多数情况下可对异源靶点做出反应。新出现的实验和临床数据表明,某些微生物或其产物可诱导粘膜相关先天性白细胞产生TII,从而在预防和治疗中产生异源抗肿瘤先天性免疫。在这篇小型综述中,我们总结了有关 TII 在粘膜癌症中重要性的最新研究成果。我们还试图提出几个关键问题,这些问题对于我们进一步了解 TII 在粘膜癌中的作用以及 TII 作为抗癌策略的潜在应用至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of trained innate immunity against mucosal cancer

Mucosal tissues are frequent targets of both primary and metastatic cancers. This has highlighted the significance of both innate and adaptive anti-cancer immunity at mucosal sites. Trained innate immunity (TII) is an emerging concept defined as enhanced reactivity of innate leukocytes long after a previous stimulation that induces prolonged epigenetic, transcriptional, and metabolic changes. Trained innate leukocytes can respond to heterologous targets due to their lacking of antigen-specificity in most cases. Emerging experimental and clinical data suggest that certain microbes or their products induce TII in mucosal-associated innate leukocytes which endows heterologous anti-tumor innate immunity, in both prophylactic and therapeutic scenarios. In this mini-review, we summarize updated findings on the significance of TII in mucosal cancers. We also attempt to raise a few key questions critical to our further understanding on the roles of TII in mucosal cancers, and to the potential application of TII as anti-cancer strategy.

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来源期刊
CiteScore
11.80
自引率
5.10%
发文量
76
审稿时长
83 days
期刊介绍: Current Opinion in Virology (COVIRO) is a systematic review journal that aims to provide specialists with a unique and educational platform to keep up to date with the expanding volume of information published in the field of virology. It publishes 6 issues per year covering the following 11 sections, each of which is reviewed once a year: Emerging viruses: interspecies transmission; Viral immunology; Viral pathogenesis; Preventive and therapeutic vaccines; Antiviral strategies; Virus structure and expression; Animal models for viral diseases; Engineering for viral resistance; Viruses and cancer; Virus vector interactions. There is also a section that changes every year to reflect hot topics in the field.
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