我们的扩展微生物群:发酵食品中与人类相关的代谢物和生物学特性

IF 27.7 1区 生物学 Q1 CELL BIOLOGY
Elisa B. Caffrey, Justin L. Sonnenburg, Suzanne Devkota
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引用次数: 0

摘要

发酵是肠道微生物群中微生物新陈代谢的关键模式之一。这一产生能量的过程将多糖和氨基酸等常见大分子转化为多种化学物质,其中许多与微生物-微生物和微生物-宿主之间的相互作用有关。在发酵食品的生产过程中也会发生类似的转化,从而产生大量具有生物活性的代谢物。在食品中,发酵产物可影响食品安全和保存、营养成分的可获得性和可口性,一旦食用,还可能影响免疫和代谢状态、疾病的表现和严重程度。人类信号通路可感知并响应许多目前已知的发酵食品代谢物,但其化学新颖性仍有待确定。在此,我们将讨论发酵食品相关微生物和代谢物的几个方面,包括简明的历史、目前对它们与宿主和宿主驻留微生物相互作用的理解、与商业益生菌的联系,以及未来对人类健康和疾病以及食品可持续性的研究机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Our extended microbiome: The human-relevant metabolites and biology of fermented foods

One of the key modes of microbial metabolism occurring in the gut microbiome is fermentation. This energy-yielding process transforms common macromolecules like polysaccharides and amino acids into a wide variety of chemicals, many of which are relevant to microbe-microbe and microbe-host interactions. Analogous transformations occur during the production of fermented foods, resulting in an abundance of bioactive metabolites. In foods, the products of fermentation can influence food safety and preservation, nutrient availability, and palatability and, once consumed, may impact immune and metabolic status, disease expression, and severity. Human signaling pathways perceive and respond to many of the currently known fermented food metabolites, though expansive chemical novelty remains to be defined. Here we discuss several aspects of fermented food-associated microbes and metabolites, including a condensed history, current understanding of their interactions with hosts and host-resident microbes, connections with commercial probiotics, and opportunities for future research on human health and disease and food sustainability.

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来源期刊
Cell metabolism
Cell metabolism 生物-内分泌学与代谢
CiteScore
48.60
自引率
1.40%
发文量
173
审稿时长
2.5 months
期刊介绍: Cell Metabolism is a top research journal established in 2005 that focuses on publishing original and impactful papers in the field of metabolic research.It covers a wide range of topics including diabetes, obesity, cardiovascular biology, aging and stress responses, circadian biology, and many others. Cell Metabolism aims to contribute to the advancement of metabolic research by providing a platform for the publication and dissemination of high-quality research and thought-provoking articles.
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