Weizmannia coagulans JA845 Postbiotics Alleviate Atherosclerosis via TMAO-Related Gut Microbiota Regulation and JAK/STAT3 Pathway Inhibition
Liying Ma, Nan Li, Zijian Zhao, Yujuan Zhao, Ge Yang, Lei Zhao, Shengyu Li

TL;DR
This study shows that JA845 postbiotics reduce atherosclerosis by lowering TMAO and inflammation, and improving gut microbiota and vascular function.
Contribution
JA845 postbiotics are shown to alleviate atherosclerosis via TMAO-related microbiota regulation and JAK/STAT3 pathway inhibition.
Findings
JA845 postbiotics reduced atherosclerotic plaque formation and improved vascular pathology.
Treatment lowered TMAO and inflammatory cytokines while modulating gut microbiota composition.
Postbiotics inhibited JAK/STAT3 signaling and enhanced endothelial function through eNOS activation.
Abstract
Objectives: Postbiotics have been shown to significantly attenuate atherosclerosis development. This study aimed to elucidate the mechanisms underlying this protective effect, focusing on gut microbiota remodeling, reduction of trimethylamine N-oxide (TMAO), and suppression of the TMAO-activated inflammatory pathway. Methods: A high-fat diet (HFD) combined with choline was used to establish an atherosclerosis mouse model. Mice were divided into four groups: control, model, JA845, and Post-JA845 groups. Histological analysis, immunofluorescence staining, inflammatory cytokine detection, 16S rRNA sequencing, metabolomics, and proteomics were used to evaluate the regulatory effects of JA845 postbiotics on gut microbiota composition, TMAO metabolism, and the JAK/STAT3 signaling pathway. Results: Histopathological examination revealed that JA845 postbiotics markedly attenuated…
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Taxonomy
TopicsGut microbiota and health · Helicobacter pylori-related gastroenterology studies · Tryptophan and brain disorders
