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January 18, 2026Microbial Biotechnology0 citationsOpen Access

Multi‐Omics Analysis Reveals the Potential Preventive Mechanism of Lactobacillus salivarius Li01 Against L‐Arginine‐Induced Acute Pancreatitis in Mice

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JDJiamin DuanJLJing LouFWFeiyu Wang

Key Points

  • The study aims to investigate the preventive effects of Lactobacillus salivarius Li01 against L-arginine-induced acute pancreatitis in mice.
  • Assessed Li01 pretreatment through oral gavage in mice exposed to L-arginine-induced acute pancreatitis.
  • Analyzed gut microbiota composition using 16S rRNA sequencing.
  • Conducted untargeted faecal metabolomics and pancreatic transcriptomics for further insights into mechanisms.
  • Measured pancreatic histopathological damage and serum amylase levels to assess treatment efficacy.
  • Li01 treatment significantly reduced histopathological damage in the pancreas of treated mice.
  • Serum amylase activity was notably decreased in Li01-pretreated mice.
  • Pancreatic transcriptomics revealed modulation of 89 differentially expressed genes related to immune pathways, particularly the TNF-α pathway.
  • Li01 improved gut microbiota diversity, increasing the abundance of beneficial bacteria such as Paramuribaculum.
  • Faecal metabolomics indicated enhanced levels of steroid hormone biosynthesis metabolites, including 17α-estradiol.

Abstract

ABSTRACT Acute pancreatitis (AP) pathogenesis involves gut microbiota dysbiosis. Although Lactobacillus salivarius Li01 (Li01) is a well‐characterised probiotic strain, its specific role in AP via the ‘gut‐pancreas axis’ remains unclear. Li01 pretreatment via oral gavage was assessed in an L‐arginine‐induced AP mouse model. The gut microbiota composition and abundance were analysed via 16S rRNA sequencing, complemented by untargeted faecal metabolomics and pancreatic transcriptomics analyses. Li01 pretreatment significantly alleviated histopathological damage to the pancreas and reduced serum amylase activity in AP model mice. Pancreatic transcriptomic analysis revealed that Li01 modulated the expression of 89 differentially expressed genes (DEGs), thereby impacting key immune‐related signalling pathways, including the TNF‐α signalling pathway. Furthermore, Li01 mitigated gut microbiota dysbiosis in AP mice, notably by increasing the relative abundance of bacteria such as Paramuribaculum . Faecal metabolomics analysis indicated that Li01 intervention significantly increased the levels of metabolites involved in steroid hormone biosynthesis, including 17α‐estradiol. Li01 may alleviate AP by modulating the gut microbiota composition, increasing the relative abundance of bacteria such as Paramuribaculum , and regulating faecal metabolite profiles, particularly those involved in the steroid hormone biosynthesis pathway. These modulations, in turn, appear to influence pancreatic inflammation‐related signalling pathways, including the TNF signalling pathway.

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Cite This Study

Duan et al. (2026) studied this question.

synapsesocial.com/papers/696c7877eb60fb80d1396ac6https://doi.org/10.1111/1751-7915.70300
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