首页> 美国卫生研究院文献>Metabolites >The Importance of Objective Stool Classification in Fecal 1H-NMR Metabolomics: Exponential Increase in Stool Crosslinking Is Mirrored in Systemic Inflammation and Associated to Fecal Acetate and Methionine
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The Importance of Objective Stool Classification in Fecal 1H-NMR Metabolomics: Exponential Increase in Stool Crosslinking Is Mirrored in Systemic Inflammation and Associated to Fecal Acetate and Methionine

机译:客观粪便分类在粪便1H-NMR代谢组学中的重要性:粪便交联的指数增加在全身炎症中镜像与粪便和甲硫氨酸相关联

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摘要

Past studies strongly connected stool consistency—as measured by Bristol Stool Scale (BSS)—with microbial gene richness and intestinal inflammation, colonic transit time and metabolome characteristics that are of clinical relevance in numerous gastro intestinal conditions. While retention time, defecation rate, BSS but not water activity have been shown to account for BSS-associated inflammatory effects, the potential correlation with the strength of a gel in the context of intestinal forces, abrasion, mucus imprinting, fecal pore clogging remains unexplored as a shaping factor for intestinal inflammation and has yet to be determined. Our study introduced a minimal pressure approach (MP) by probe indentation as measure of stool material crosslinking in fecal samples. Results reported here were obtained from 170 samples collected in two independent projects, including males and females, covering a wide span of moisture contents and BSS. MP values increased exponentially with increasing consistency (i.e., lower BSS) and enabled stratification of samples exhibiting mixed BSS classes. A trade-off between lowest MP and highest dry matter content delineated the span of intermediate healthy density of gel crosslinks. The crossectional transects identified fecal surface layers with exceptionally high MP and of <5 mm thickness followed by internal structures with an order of magnitude lower MP, characteristic of healthy stool consistency. The MP and BSS values reported in this study were coupled to reanalysis of the PlanHab data and fecal 1H-NMR metabolomes reported before. The exponential association between stool consistency and MP determined in this study was mirrored in the elevated intestinal and also systemic inflammation and other detrimental physiological deconditioning effects observed in the PlanHab participants reported before. The MP approach described in this study can be used to better understand fecal hardness and its relationships to human health as it provides a simple, fine scale and objective stool classification approach for the characterization of the exact sampling locations in future microbiome and metabolome studies.
机译:过去的研究强烈连接粪便一致 - 按照Bristol Stool Scale(BSS)测量 - 与微生物基因丰富和肠炎,结肠过境时间和代谢特征在许多胃肠条件下具有临床相关性。在保留时间,排便率,BSS但不存在水性活性的同时考虑了BSS相关的炎症作用,而在肠势力,磨损,粘液印记中凝胶的强度潜在的相关性,粪便孔隙堵塞仍未开发作为肠炎症的成型因素,尚未确定。我们的研究通过探针压痕作为粪便样品中粪便材料交联的测量来引入最小的压力方法(MP)。这里报告的结果是从在两个独立项目中收集的170个样本获得,包括雄性和女性,覆盖各种水分含量和BSS。 MP值随着越来越长的一致性(即,下BSS)和表现出混合BSS类的样本分层而导致呈指数增强。最低MP与最高干物质含量之间的折衷描绘了凝胶交联的中间健康密度的跨度。横视横断转换识别出具有极高MP的粪便表面层和<5mm的厚度,然后是具有幅度下级的内部结构,其特性保持健康粪便稠度。本研究报告的MP和BSS值与计划数据和之前报告的粪便1H-NMR代谢物的再分析偶联。在本研究中确定的粪便一致性和MP之间的指数关联在肠道肠道中镜像在升高的肠道中,并且在以前报告的计划参与者中观察到的系统性炎症和其他有害的生理学过度效应。本研究中描述的MP方法可用于更好地理解粪便硬度及其与人类健康的关系,因为它提供了一种简单,精细和客观的大便分类方法,用于在未来的微生物组和代谢研究中表征精确的采样位置。

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