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Perturbation of Intestinal Stem Cell Homeostasis and Radiation Enteritis Recovery Via Dietary Titanium Dioxide Nanoparticles

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Journal Cell Prolif
Date 2023 Feb 17
PMID 36798041
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Abstract

Small intestinal health and enteritis incidence are tightly coupled to the homeostasis of intestinal stem cells (ISCs), which are sensitive to dietary alterations. However, little is known about the impact of food additives on ISC pool. Here, we demonstrate that chronic exposure to low-dose TiO NPs, a commonly used food additive, significantly hampers primary human and mouse ISC-derived organoid formation and growth by specifically attenuating Wnt signal transduction. Mechanistically, TiO NPs alter the endocytic trafficking of the Wnt receptor LRP6 and prevent the nuclear entry of β-catenin. Notably, dietary TiO NPs elicit modest chronic stress in healthy intestines and considerably impede the recovery of radiation enteritis by perturbing the homeostasis of ISCs in vivo. Our results identify a health concern of TiO NP exposure on ISC homeostasis and radiation enteritis recovery. These findings suggest extra precaution during the treatment of radiation enteritis and provide new insights into food additive-ISC interaction.

Citing Articles

Validating Enteroid-Derived Monolayers from Murine Gut Organoids for Toxicological Testing of Inorganic Particles: Proof-of-Concept with Food-Grade Titanium Dioxide.

Malaise Y, Casale E, Pettes-Duler A, Cartier C, Gaultier E, Martins Breyner N Int J Mol Sci. 2024; 25(5).

PMID: 38473881 PMC: 10932210. DOI: 10.3390/ijms25052635.


Perturbation of intestinal stem cell homeostasis and radiation enteritis recovery via dietary titanium dioxide nanoparticles.

Zhang L, He Y, Dong L, Liu C, Su L, Guo R Cell Prolif. 2023; 56(8):e13427.

PMID: 36798041 PMC: 10392070. DOI: 10.1111/cpr.13427.

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