Mullish Benjamin H, Osborne Laura S, Marchesi Julian R, McDonald Julie Ak
Division of Integrative Systems Medicine and Digestive Disease, Department of Surgery and Cancer, Faculty of Medicine, Imperial College London, London SW7 2AZ, UK.
Microbiomes, Microbes and Informatics Research Department, School of Biosciences, Cardiff University, Cardiff CF10 3AT, UK.
Ecancermedicalscience. 2018 Sep 5;12:864. doi: 10.3332/ecancer.2018.864. eCollection 2018.
Whilst the interplay between host genetics and the environment plays a pivotal role in the aetiopathogenesis of cancer, there are other key contributors of importance as well. One such factor of central and growing interest is the contribution of the microbiota to cancer. Even though the field is only a few years old, investigation of the 'cancer microbiome' has already led to major advances in knowledge of the basic biology of cancer risk and progression, opened novel avenues for biomarkers and diagnostics, and given a better understanding of mechanisms underlying response to therapy. Recent developments in microbial DNA sequencing techniques (and the bioinformatics required for analysis of these datasets) have allowed much more in-depth profiling of the structure of microbial communities than was previously possible. However, for more complete assessment of the functional implications of microbial changes, there is a growing recognition of the importance of the integration of microbial profiling with other omics modalities, with metabonomics (metabolite profiling) and proteomics (protein profiling) both gaining particular recent attention. In this review, we give an overview of some of the key scientific techniques being used to unravel the role of the cancer microbiome. We have aimed to highlight practical aspects related to sample collection and preparation, choice of the modality of analysis, and examples of where different omics technologies have been complementary to each other to highlight the significance of the cancer microbiome.
虽然宿主遗传学与环境之间的相互作用在癌症的病因发病机制中起着关键作用,但还有其他一些重要的关键因素。其中一个核心且日益受到关注的因素是微生物群对癌症的影响。尽管该领域仅有几年历史,但对“癌症微生物组”的研究已经在癌症风险和进展的基础生物学知识方面取得了重大进展,为生物标志物和诊断开辟了新途径,并更好地理解了治疗反应的潜在机制。微生物DNA测序技术(以及分析这些数据集所需的生物信息学)的最新发展使得对微生物群落结构的分析比以前更加深入。然而,为了更全面地评估微生物变化的功能影响,人们越来越认识到将微生物分析与其他组学方法相结合的重要性,代谢组学(代谢物分析)和蛋白质组学(蛋白质分析)最近都受到了特别关注。在这篇综述中,我们概述了一些用于揭示癌症微生物组作用的关键科学技术。我们旨在强调与样本采集和制备、分析方法选择相关的实际问题,以及不同组学技术相互补充以突出癌症微生物组重要性的实例。