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March 12, 2026Biology3 citationsOpen Access

Age-Dependent Alterations in Intestinal Barrier Function: Involvement of Microbiota and TLR4 Signaling

YXYakun XingXZXingyu ZhaoXLXinyu Li

Key Points

  • The research aims to explore how aging affects intestinal barrier function and the role of TLR4 signaling in this process.
  • Utilized C57BL/6J and TLR4 knockout mice at various developmental stages.
  • Conducted histology, microbiome profiling, short-chain fatty acid analysis, cytokine quantification, and transcriptomics.
  • Assessed ex vivo responses to pro-inflammatory cytokines.
  • Pups showed an immature colonic structure and a simple microbiota composition.
  • Adults achieved maximum microbiota diversity and SCFA levels.
  • Older mice exhibited increased pro-inflammatory cytokines and decreased diversity in specific bacterial groups.
  • Functional decline was not observed in TLR4 knockout mice, highlighting TLR4's role.

Abstract

The intestinal barrier undergoes profound changes with age, impacting local immunity and systemic health, yet the mechanisms coordinating immune and microbial dynamics across the lifespan remain incompletely understood. Toll-like receptor 4 (TLR4) serves as a key mediator of host–microbiota interactions. This study investigated age-related changes in barrier function and the role of TLR4 using C57BL/6J and TLR4 knockout (TLR4−/−) mice across key developmental stages: pups (postnatal day 9), adults (2–4 months), middle-aged (7–9 months), and old (16–19 months). Through a multi-layered approach integrating histology, microbiome profiling, short-chain fatty acid (SCFA) analysis, cytokine quantification, ex vivo functional assays, and transcriptomics, we identified a multi-phase process of intestinal remodeling. Pup-P9 mice exhibited immature colonic structure, a simple microbiota dominated by Firmicutes and Proteobacteria, and undetectable acetic acid level. Adults reached peak diversity and SCFA concentrations, marked by a rise in Bacteroidota and the emergence of Akkermansia. In middle and old age, pro-inflammatory cytokines (IL-1β, IL-6, and TNF-α) increased, Bacteroidota declined while Firmicutes, Actinobacteria, and Turicibacter expanded, and aged colons showed blunted ex vivo responses to IL-1β. This age-associated functional decline phenotype was absent in TLR4−/− mice, supporting the involvement of TLR4 signaling. Transcriptomics further revealed biphasic PI3K/Akt activation in both pups-P9 and old mice. Together, these findings suggest a systemic rewiring of host metabolic and immune signaling pathways in response to an aging microbiota, highlighting this dynamic, lifespan-wide microbiota–host signaling axis as a potential intervention target.

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Cite This Study

Xing et al. (2026) studied this question.

synapsesocial.com/papers/69b257bf96eeacc4fcec6b72https://doi.org/10.3390/biology15050441
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