Intestinal Alkaline Phosphatase Interaction Gut Model

Abstract High fat Western diet (WD) is known to alter the composition of gut microbiota causing the release of lipopolysaccharide (LPS) (Cani et al. 2007). LPS is a TLR4 ligand, produced by Gram-negative bacteria, and is a potent inducer of various inflammatory cytokines. Inflammation in the gut can promote leaky gut syndrome which results in the translocation of LPS from the gut to circulation. The resulting leakage activates pro-inflammatory cytokines and alters macrophage polarization (Pelegrin and Surprenant 2009). This systemic inflammation can aggravate various diseases such as diabetes, atherosclerosis and chronic liver disease. Intestinal Alkaline Phosphatase (IAP) dephosphorylates LPS and renders it inactive, subsequently reducing leaky gut phenomenon. Informed by mouse model data, we developed an ordinary differential equation model to dynamically model the effect of diet on circulating LPS levels. The model allows for better understanding of systemic risk factors and for exploration of potential treatment using IAP-based interventions.

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Publication Details

Journal
Bulletin of Mathematical Biology
Published
2026-09-28
DOI
https://doi.org/10.1007/s11538-026-01727-y
Primary Topic
Alkaline Phosphatase Research Studies
Type
article
Field-Weighted Citation Impact
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article

Intestinal Alkaline Phosphatase Interaction Gut Model

Rebecca A. Segal, Angela Reynolds, Eric Scott, Siddhartha Ghosh
Bulletin of Mathematical Biology
Alkaline Phosphatase Research Studies
article

Intestinal Alkaline Phosphatase Interaction Gut Model

Rebecca A. Segal, Angela Reynolds, Eric Scott, Siddhartha Ghosh
article en

Abstract

Abstract High fat Western diet (WD) is known to alter the composition of gut microbiota causing the release of lipopolysaccharide (LPS) (Cani et al. 2007). LPS is a TLR4 ligand, produced by Gram-negative bacteria, and is a potent inducer of various inflammatory cytokines. Inflammation in the gut can promote leaky gut syndrome which results in the translocation of LPS from the gut to circulation. The resulting leakage activates pro-inflammatory cytokines and alters macrophage polarization (Pelegrin and Surprenant 2009). This systemic inflammation can aggravate various diseases such as diabetes, atherosclerosis and chronic liver disease. Intestinal Alkaline Phosphatase (IAP) dephosphorylates LPS and renders it inactive, subsequently reducing leaky gut phenomenon. Informed by mouse model data, we developed an ordinary differential equation model to dynamically model the effect of diet on circulating LPS levels. The model allows for better understanding of systemic risk factors and for exploration of potential treatment using IAP-based interventions.

Bulletin of Mathematical BiologyVol. 88(10)
Good health and well-being
Openalex Percentile: Top 12%
Alkaline Phosphatase Research Studies
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