Mousa Walaa K, Chehadeh Fadia, Husband Shannon
College of Pharmacy, Al Ain University of Science and Technology, Al Ain, United Arab Emirates.
Department of Biology, Whitman College, Walla Walla, WA, United States.
Front Microbiol. 2022 Feb 3;13:825338. doi: 10.3389/fmicb.2022.825338. eCollection 2022.
Trillions of microbes live within our bodies in a deep symbiotic relationship. Microbial populations vary across body sites, driven by differences in the environment, immunological factors, and interactions between microbial species. Major advances in genome sequencing enable a better understanding of microbiome composition. However, most of the microbial taxa and species of the human microbiome are still unknown. Without revealing the identity of these microbes as a first step, we cannot appreciate their role in human health and diseases. A shift in the microbial balance, termed dysbiosis, is linked to a broad range of diseases from simple colitis and indigestion to cancer and dementia. The last decade has witnessed an explosion in microbiome research that led to a better understanding of the microbiome structure and function. This understanding leads to potential opportunities to develop next-generation microbiome-based drugs and diagnostic biomarkers. However, our understanding is limited given the highly personalized nature of the microbiome and its complex and multidirectional interactions with the host. In this review, we discuss: (1) our current knowledge of microbiome structure and factors that shape the microbial composition, (2) recent associations between microbiome dysbiosis and diseases, and (3) opportunities of new microbiome-based therapeutics. We analyze common themes, promises, gaps, and challenges of the microbiome research.
数以万亿计的微生物以深度共生关系存在于我们体内。微生物种群因身体部位的不同而有所差异,这是由环境、免疫因素以及微生物物种之间的相互作用差异所驱动的。基因组测序的重大进展使人们能够更好地了解微生物组的组成。然而,人类微生物组中的大多数微生物分类群和物种仍然未知。如果不首先揭示这些微生物的身份,我们就无法了解它们在人类健康和疾病中的作用。微生物平衡的改变,即生态失调,与从简单的结肠炎、消化不良到癌症和痴呆症等广泛的疾病有关。过去十年见证了微生物组研究的爆炸式增长,这使人们对微生物组的结构和功能有了更好的理解。这种理解带来了开发下一代基于微生物组的药物和诊断生物标志物的潜在机会。然而,鉴于微生物组的高度个性化性质及其与宿主的复杂多向相互作用,我们的理解仍然有限。在这篇综述中,我们讨论:(1)我们目前对微生物组结构以及塑造微生物组成的因素的了解;(2)微生物组生态失调与疾病之间的最新关联;(3)基于微生物组的新疗法的机会。我们分析了微生物组研究的共同主题、前景、差距和挑战。