Study2025Open access

Time-restricted feeding protects against septic liver injury by reshaping gut microbiota and metabolite 3-hydroxybutyrate

Hu JJ, Deng F, Sun QS, Xiong QM, Min Y, Feng SY, Lin ZB, Chen PH, Hu Z, Wu L, Chen XF, Xie S, Liu WF, Li C, Liu KX

Gut microbes · 24 citations

How it was studied

Design
Animal study (classified by our AI screen)
Studied in
People, plus animal or lab work
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
University or hospital
Southern Medical University
University or hospital
Nanfang Hospital

Based on 2 listed funder(s) and full-text disclosure statement.

Publication

Published
2025-04-13 · Gut Microbes · vol. 17 · issue 1 · p. 2486515
Publisher
Landes Bioscience
Cited
27 citations · more than 99% of similar papers · 14.4× the field average
Impact
Top 10% most cited in its field
References
66 works
Access
Open access (journal) · CC-BY
Research areas
Diet and metabolism studies · Dietary Effects on Health · Gut microbiota and health
Keywords
Biology, Metabolite, Gut flora, Microbiology, Probiotic, Liver injury, Metabolome, Bacteria, Immunology, Pharmacology, Biochemistry, Genetics
MeSH
liver, animals, mice, inbred c57bl, mice, knockout, humans, mice, sepsis, liver diseases, disease models, animal, 3-hydroxybutyric acid, male, gastrointestinal microbiome

15 authors

From CN

  • Jingjuan HuNanfang Hospital; Southern Medical University
  • Fan DengNanfang Hospital; Southern Medical University
  • Qi‐Shun SunNanfang Hospital; Southern Medical University
  • Qingming XiongNanfang Hospital; First People's Hospital of Foshan; Southern Medical University
  • Yue MinNanfang Hospital; Southern Medical University
  • Siyuan FengNanfang Hospital; Southern Medical University

Abstract

Liver injury is an independent risk factor for multiple organ dysfunction and high mortality in patients with sepsis. However, the pathological mechanisms and therapeutic strategies for sepsis-associated liver injury have not been fully elucidated. Time-restricted feeding (TRF) is a promising dietary regime, but its role in septic liver injury remains unknown. Using 16S rRNA gene sequencing, Q200 targeted metabolomics, transcriptomics, germ-free mice, Hmgcs2/Lpin1 gene knockout mice, and Aml12 cells experiments, we revealed that TRF can mitigate septic liver injury by modulating the gut microbiota, particularly by increasing Lactobacillus murinus (L. murinus) abundance, which was significantly reduced in septic mice. Further study revealed that live L. murinus could markedly elevate serum levels of metabolite 3-hydroxybutyrate (3-HB) and alleviate sepsis-related injury, while the knockout of the key enzyme for 3-HB synthesis (3-hydroxy-3-methylglutaryl-CoA synthase 2, Hmgcs2) in the liver negated this protective effect. Additionally, serum 3-HB levels were significantly positively correlated with L. murinus abundance and negatively correlated with liver injury indicators in septic patients, demonstrating a strong predictive value for septic liver injury (AUC = 0.8429). Mechanistically, 3-HB significantly inhibited hepatocyte ferroptosis by activating the PI3K/AKT/mTOR/LPIN1 pathway, reducing ACSL4, MDA, LPO, and Fe2+ levels. This study demonstrates that TRF reduces septic liver injury by modulating gut microbiota to increase L. murinus, which elevates 3-HB to activate PI3K/AKT/mTOR/LPIN1 and inhibit hepatocyte ferroptosis. Overall, this study elucidates the protective mechanism of TRF against septic liver injury and identifies 3-HB as a potential therapeutic target and predictive biomarker, thereby providing new insights into the clinical management and diagnosis of septic liver injury.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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