Author:
Gao Weiqi,Yan Ya,Guan Zhaobo,Zhang Jingmin,Chen Weihong
Abstract
ObjectiveThe primary objective of this study is to investigate the mechanism by which Bacillus coagulans TBC169 accelerates intestinal function recovery in patients who have undergone gynecological laparoscopic surgery, using metabolomics and gut microbiota analysis.MethodsA total of 20 subjects were selected and randomly divided into two groups: the intervention group (n = 10) receiving Bacillus coagulans TBC169 Tablets (6 pills, 1.05 × 108 CFU), and the control group (n = 10) receiving placebos (6 pills). After the initial postoperative defecation, fecal samples were collected from each subject to analyze their gut microbiota and metabolic profiles by high-throughput 16S rRNA gene sequencing analysis and untargeted metabonomic.ResultsThere were no statistically significant differences observed in the α-diversity and β-diversity between the two groups; however, in the intervention group, there was a significant reduction in the relative abundance of unclassified_Enterobacteriaceae at the genus level. Furthermore, the control group showed increased levels of Holdemanella and Enterobacter, whereas the intervention group exhibited elevated levels of Intestinimonas. And administration of Bacillus coagulans TBC169 led to variations in 2 metabolic pathways: D-glutamine and D-glutamate metabolism, and arginine biosynthesis.ConclusionThis study demonstrated that consuming Bacillus coagulans TBC169 after gynecological laparoscopic surgery might inhibit the proliferation of harmful Enterobacteriaceae; mainly influence 2 pathways including D-glutamine and D-glutamate metabolism, and arginine biosynthesis; and regulate metabolites related to immunity and intestinal motility; which can help regulate immune function, maintain intestinal balance, promote intestinal peristalsis, and thus accelerate the recovery of intestinal function.
Reference48 articles.
1. Effect of spore-bearing lactic acid-forming Bacteria (Bacillus coagulans SANK 70258) administration on the intestinal environment, defecation frequency, fecal characteristics and dermal characteristics in humans and rats;Ara;Microb. Ecol. Health Dis.,2002
2. Occurrence and biological activity of palmitoleic acid isomers in phagocytic cells;Astudillo;J. Lipid Res.,2018
3. Impact of diet-modulated butyrate production on intestinal barrier function and inflammation;Bach Knudsen;Nutrients,2018
4. Roles of Palmitoleic acid and its positional isomers, Hypogeic and Sapienic acids, in inflammation, metabolic diseases and Cancer;Bermúdez;Cells,2022
5. Effect of Cis-palmitoleic acid supplementation on inflammation and expression of HNF4γ, HNF4α and IL6 in patients with ulcerative colitis;Bueno-Hernández;Minerva Gastroenterol. Dietol.,2017