Effects of complex probiotics on intestinal function and its regulatory mechanism in patients with constipation.

Benef Microbes

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-Products, Institute of Food Science, 74561Zhejiang Academy of Agricultural Sciences, 298 Desheng Middle Road, Hangzhou 310021, China P.R.

Published: October 2024

AI Article Synopsis

  • Chronic constipation is a complex disorder with limited treatment options that can negatively affect patients' quality of life; probiotics show potential in alleviating symptoms but their mechanisms are not fully understood.
  • A study using a single-blind, randomized, placebo-controlled trial explored how Lactobacillus powder from probiotic products impacted defecation habits and the gut microbiota of chronic constipation patients.
  • Results indicated that probiotic treatment altered gut microbiota composition, increasing beneficial bacteria like Bifidobacterium, improving symptoms, and linked various metabolites to metabolic pathways related to bile acid and amino acid metabolism.

Article Abstract

Chronic constipation is a multi-symptomatic, multifactorial, and heterogeneous gastrointestinal disorder. Current pharmacological treatments for chronic constipation are limited and might negatively impact the patients' quality of life. Although probiotics have been shown to improve constipation symptoms, their specific regulatory mechanisms remain unclear. This study sought to explore how probiotic complexes may affect chronic constipation by improving patients' defecation habits. Furthermore, microbial profiles and non-targeted metabolites were assessed to explore the metabolic pathways involved in the improvement of constipation by probiotics. Patients with chronic constipation were treated using a single-blind, randomised, placebo-controlled trial design. The experimental group was administered Lactobacillus powder prepared from 15 probiotic products, and maltodextrin was used as a placebo. Samples were collected twice daily for 4 weeks, and faecal samples were analysed using 16S rRNA sequencing and untargeted metabolic histology. Probiotic treatment changed the makeup of the gut microbiota, enhanced the quantity of Bifidobacterium and Lactobacillus, and markedly reduced clinical symptoms. The 16S rRNA analysis revealed that the abundance of Bifidobacterium and Prevotella increased while that of Thickettsia declined. Moreover, there was a decrease in the abundance of Faecalibacterium and Roseburia. Non-targeted metabolomics analysis identified several differential metabolites, including succinic acid, fumaric acid, cholesterol, xanthurenic acid, 3-alpha,7-alpha-trihydroxy-5beta-cholestan-26-oic, and N-methyltryptamine. KEGG analysis showed that these metabolites were mainly associated with metabolic pathways such as primary bile acid biosynthesis, tryptophan metabolism, alanine, aspartate and glutamate metabolism, phenylalanine metabolism, cholesterol metabolism, and propanoate metabolism. In this study, gut microbiome and non-targeted metabolome analyses were performed on collected faecal samples to compare characteristic microorganisms and differential metabolites to provide new insights and references for probiotic intervention in constipation. Trial registered at chictr.org.cn under number: ChiCTR2200056274.

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Source
http://dx.doi.org/10.1163/18762891-bja00039DOI Listing

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