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March 1, 2021Diabetes and Vascular Disease Research16 citationsOpen Access

Glucose-dependent insulinotropic polypeptide inhibits cardiac hypertrophy and fibrosis in diabetic mice via suppression of TGF-β2

MHMunenori HiromuraYMYusaku MoriMTMichishige Terasaki

Structured PICO

Does GIP prevent cardiac hypertrophy and fibrosis in a diabetic mouse model?

P
Population
Diabetic db/db mice (BKS.Cg-+Leprdb/+Leprdb/Jcl) at 7 weeks of age, n=18 (6 non-DM, 6 DM-vehicle, 6 DM-GIP). In vitro experiments used cardiomyocytes isolated from neonatal ICR mice.
I
Intervention
Glucose-dependent insulinotropic polypeptide (GIP) 50 nmol/kg/day continuously infused via osmotic pumps implanted under dorsal skin for 6 weeks (in vivo). [D-Ala2]-GIP 300 nM (in vitro).
C
Comparator
Vehicle continuously infused via osmotic pumps for 6 weeks. Diet-restricted db/db mice were used as non-diabetic (non-DM) controls.
O
Outcome
Cardiac hypertrophy (assessed by left ventricular wall thickness, cardiomyocyte sizes, and β-Mhc mRNA levels) and interstitial fibrosis (assessed by fibrotic area and Tgf-β2 mRNA levels) at 6 weeks.surrogate

GIP infusion inhibits cardiac hypertrophy and fibrosis in a diabetic mouse model by suppressing TGF-β2 and oxidative stress, suggesting a potential therapeutic target for diabetic cardiomyopathy.

Limitations

  • Could not evaluate the effect of GIP on cardiac function by echocardiography due to technical issues

Abstract

Diabetic cardiomyopathy is associated with an increased risk for heart failure and death in patients with diabetes. We investigated here whether and how GIP attenuated cardiac hypertrophy and fibrosis in diabetic mice with obesity. Diabetic db/db mice at 7 weeks old were infused with vehicle or GIP (50 nmol/kg/day) for 6 weeks, and hearts were collected for histological and RT-PCR analyzes. Cardiomyocytes isolated from neonatal mice were incubated with or without 300 nM D-Ala2-GIP, 30 mM glucose, or 100 μg/mL advanced glycation end products (AGEs) for RT-PCR and lucigenin assays. Compared with non-diabetic mice, diabetic mice exhibited larger left ventricle wall thickness and cardiomyocyte sizes and more fibrotic areas in association with up-regulation of myosin heavy chain β (β-Mhc) and transforming growth factor-beta2 (Tgf-β2) mRNA levels, all of which were inhibited by GIP infusion. High glucose increased NADPH oxidase-driven superoxide generation and up-regulated β-Mhc, Tgf-β2, and receptor for AGEs mRNA levels in cardiomyocytes, and augmented the AGE-induced β-Mhc gene expression. D-Ala2-GIP attenuated all of the deleterious effects of high glucose and/or AGEs on cardiomyocytes. Our present findings suggest that GIP could inhibit cardiac hypertrophy and fibrosis in diabetic mice via suppression of TGF-β2.

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Cite This Study

Hiromura et al. (2021) studied this question.

synapsesocial.com/papers/6a7e58dcfdf6e9f1664d8f42https://doi.org/10.1177/1479164121999034
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