Janssen Research & Development, LLC, Spring House, Pennsylvania, United States of America.
Brody School of Medicine, East Carolina University, Greenville, North Carolina, United States of America.
PLoS One. 2018 May 31;13(5):e0198156. doi: 10.1371/journal.pone.0198156. eCollection 2018.
Roux-en-Y gastric bypass (RYGB) is an effective way to lose weight and reverse type 2 diabetes. We profiled the metabolome of 18 obese patients (nine euglycemic and nine diabetics) that underwent RYGB surgery and seven lean subjects. Plasma samples from the obese patients were collected before the surgery and one week and three months after the surgery. We analyzed the metabolome in association to five hormones (Adiponectin, Insulin, Ghrelin, Leptin, and Resistin), four peptide hormones (GIP, Glucagon, GLP1, and PYY), and two cytokines (IL-6 and TNF). PCA showed samples cluster by surgery time and many microbially driven metabolites (indoles in particular) correlated with the three months after the surgery. Network analysis of metabolites revealed a connection between carbohydrate (mannosamine and glucosamine) and glyoxylate and confirms glyoxylate association to diabetes. Only leptin and IL-6 had a significant association with the measured metabolites. Leptin decreased immediately after RYGB (before significant weight loss), whereas IL-6 showed no consistent response to RYGB. Moreover, leptin associated with tryptophan in support of the possible role of leptin in the regulation of serotonin synthesis pathways in the gut. These results suggest a potential link between gastric leptin and microbial-derived metabolites in the context of obesity and diabetes.
胃旁路术(RYGB)是一种有效的减肥和逆转 2 型糖尿病的方法。我们对 18 名接受 RYGB 手术的肥胖患者(9 名血糖正常和 9 名糖尿病患者)和 7 名瘦受试者的代谢组进行了分析。在手术前、手术后一周和三个月,采集肥胖患者的血浆样本。我们分析了与 5 种激素(脂联素、胰岛素、Ghrelin、瘦素和抵抗素)、4 种肽类激素(GIP、胰高血糖素、GLP1 和 PYY)和 2 种细胞因子(IL-6 和 TNF)相关的代谢组学。PCA 显示样本按手术时间聚类,许多微生物驱动的代谢物(特别是吲哚)与手术后三个月相关。代谢物网络分析显示碳水化合物(甘露糖胺和葡萄糖胺)与乙醛酸之间存在联系,并证实乙醛酸与糖尿病有关。只有瘦素和 IL-6 与测量的代谢物有显著关联。RYGB 后瘦素立即下降(在显著减肥之前),而 IL-6 对 RYGB 没有一致的反应。此外,瘦素与色氨酸相关,支持瘦素在肠道中 5-羟色氨酸合成途径调节中的可能作用。这些结果表明,在肥胖和糖尿病的背景下,胃泌素和微生物衍生的代谢物之间可能存在联系。