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The fecal metabolome is associated with gestational diabetes mellitus
Authors:Shufen Liang  Ziqi Hou  Xue Li  Juan Wang  Lijun Cai  Runping Zhang  Jianguo Li
Affiliation:The Second Hospital of Shanxi Medical University, No. 382, Wuyi Road, Taiyuan 030001 PR China, Fax: +86 139 34569344, +86 139 34569344 ; The Second Clinical Medical College of Shanxi Medical University, No. 382, Wuyi Road, Taiyuan 030001 PR China ; Children''s Hospital of Shanxi, Women Health Center of Shanxi, Taiyuan 030001 PR China ; Institutes of Biomedical Sciences, Shanxi University, No. 92 Wucheng Road, Taiyuan 030006 PR China, Fax: +86 351 7018958, +86 351 7018958
Abstract:Dysbiosis of gut microbiota has been linked to gestational diabetes mellitus (GDM), and grows as a resource for GDM biomarkers. However, the contributions of gut microbiota to GDM remain incompletely understood. Metabolites are key messengers in the interactions between gut microbiota and the host. Metabolomics is emerging as an essential tool in exploring the contributions of gut microbiota to diseases. In this study, we performed 1H-NMR based metabolomics on the feces of 62 pregnant women, including 31 women with GDM, and 31 women as the non-diabetes (NDM) control. Using Principle Component Analysis (PCA) and Orthogonal Projection to Latent Structures Discrimination Analysis (OPLS-DA), we observed clear cluster separation of the fecal metabolome between women with GDM and the NDM control. We further applied several feature selection methods to find five fecal metabolites contributing to the cluster separation of the fecal metabolome. These five metabolites, namely dibutyl decanedioate, N-acetylgalactosamine-4-sulphate, homocysteine, l-malic acid, and butanone, were significantly correlated with the clinical indices of GDM. Metabolite enrichment and pathway analysis on the five metabolites suggested that the fecal citrate cycle and sulfur metabolism were correlated with GDM. The results of this study demonstrated that disorders in the fecal metabolome are associated with GDM.

Fecal metabolome could separate women with GDM from the non-diabetic control.
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