<i>Lactobacillus reuteri</i> JCM 1112 ameliorates chronic acrylamide-induced glucose metabolism disorder <i>via</i> the bile acid-TGR5-GLP-1 axis and modulates intestinal oxidative stress in mice.
Food Funct · 2024
Last updated 2026-09-14In a mouse study, chronic low-dose exposure to acrylamide (a food contaminant) increased blood sugar levels and reduced insulin and GLP-1 levels. A probiotic called *Lactobacillus reuteri* JCM 1112 improved blood sugar control, increased insulin and GLP-1 levels, and reduced oxidative stress in the intestines after acrylamide exposure.
AI summary of the abstract below.
| Journal | Food Funct, 2024 |
|---|---|
| Citations | 15 |
| Relative citation ratio | 2.89 |
| NIH percentile | 83 |
| Molecules | — |
Abstract
Acrylamide (AA) is a toxic food contaminant that has been reported to cause glucose metabolism disorders (GMD) at high doses. However, it is unclear whether chronic low-dose AA can induce GMD and whether probiotics can alleviate AA-induced GMD. Here, C57BL/6N mice were orally administered with 5 mg per kg bw AA for 10 weeks, followed by another 3 weeks of glucagon-like peptide-1 (GLP-1) analogue (dulaglutide) treatment. Chronic low-dose AA exposure increased the blood glucose level and decreased serum insulin and GLP-1 levels, whereas dulaglutide treatment decreased the blood glucose level and increased the serum insulin level in AA-exposed mice. Then, mice were administered with AA or AA + INT-777 (Takeda G-protein-coupled receptor 5 (TGR5) agonist) for 10 weeks. INT-777 treatment reversed AA-induced downregulation of ileal TGR5 and proglucagon (PG) gene expression and decreased the serum GLP-1 level. These findings indicated that chronic low-dose AA induced GMD inhibiting the TGR5-GLP-1 axis. Finally, mice were administered with AA for 10 weeks, followed by another 3 weeks of JCM 1112 supplementation. supplementation significantly increased serum glucose, insulin and GLP-1 levels, upregulated ileal TGR5 and PG gene expression, and effectively restored the imbalance of bile acid (BA) metabolism in AA-exposed mice, demonstrating that ameliorates chronic AA-induced GMD the BA-TGR5-GLP-1 axis. In addition, significantly enhanced ileal superoxide dismutase and catalase activities and total antioxidant capacity, thereby preventing chronic AA-induced oxidative stress. Our research provides new insights into the GMD toxicity of chronic low-dose AA and confirms the role of probiotics in alleviating AA-induced GMD.
Verbatim abstract via PubMed 38804210 ↗