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Publication : Diet-Induced Obese Mice and Leptin-Deficient <i>Lep<sup>ob/ob</sup></i> Mice Exhibit Increased Circulating GIP Levels Produced by Different Mechanisms.

First Author  Lee E Year  2019
Journal  Int J Mol Sci Volume  20
Issue  18 PubMed ID  31509948
Mgi Jnum  J:292761 Mgi Id  MGI:6435640
Doi  10.3390/ijms20184448 Citation  Lee E, et al. (2019) Diet-Induced Obese Mice and Leptin-Deficient Lep(ob/ob) Mice Exhibit Increased Circulating GIP Levels Produced by Different Mechanisms. Int J Mol Sci 20(18):4448
abstractText  As glucose-dependent insulinotropic polypeptide (GIP) possesses pro-adipogenic action, the suppression of the GIP hypersecretion seen in obesity might represent a novel therapeutic approach to the treatment of obesity. However, the mechanism of GIP hypersecretion remains largely unknown. In the present study, we investigated GIP secretion in two mouse models of obesity: High-fat diet-induced obese (DIO) mice and leptin-deficient Lep(ob/ob) mice. In DIO mice, plasma GIP was increased along with an increase in GIP mRNA expression in the lower small intestine. Despite the robust alteration in the gut microbiome in DIO mice, co-administration of maltose and the alpha-glucosidase inhibitor (alpha-GI) miglitol induced the microbiome-mediated suppression of GIP secretion. The plasma GIP levels of Lep(ob/ob) mice were also elevated and were suppressed by fat transplantation. The GIP mRNA expression in fat tissue was not increased in Lep(ob/ob) mice, while the expression of an interleukin-1 receptor antagonist (IL-1Ra) was increased. Fat transplantation suppressed the expression of IL-1Ra. The plasma IL-1Ra levels were positively correlated with the plasma GIP levels. Accordingly, although circulating GIP levels are increased in both DIO and Lep(ob/ob) mice, the underlying mechanisms differ, and the anti-obesity actions of alpha-GIs and leptin sensitizers may be mediated partly by the suppression of GIP secretion.
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