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Deletion of miRNA-22 Induces Cardiac Hypertrophy in Females but Attenuates Obesogenic Diet-Mediated Metabolic Disorders.

Authors :
de Oliveira Silva T
Lino CA
Buzatto VC
Asprino PF
Lu YW
Lima VM
Fonseca RIB
Jensen L
Murata GM
Filho SV
Ribeiro MAC
Donato JJ
Ferreira JCB
Rodrigues AC
Irigoyen MC
Barreto-Chaves MLM
Huang ZP
Galante PAF
Wang DZ
Diniz GP
Source :
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology [Cell Physiol Biochem] 2020 Dec 01; Vol. 54 (6), pp. 1199-1217.
Publication Year :
2020

Abstract

Background/aims: Obesity is a risk factor associated with cardiometabolic complications. Recently, we reported that miRNA-22 deletion attenuated high-fat diet-induced adiposity and prevented dyslipidemia without affecting cardiac hypertrophy in male mice. In this study, we examined the impact of miRNA-22 in obesogenic diet-induced cardiovascular and metabolic disorders in females.<br />Methods: Wild type (WT) and miRNA-22 knockout (miRNA-22 KO) females were fed a control or an obesogenic diet. Body weight gain, adiposity, glucose tolerance, insulin tolerance, and plasma levels of total cholesterol and triglycerides were measured. Cardiac and white adipose tissue remodeling was assessed by histological analyses. Echocardiography was used to evaluate cardiac function and morphology. RNA-sequencing analysis was employed to characterize mRNA expression profiles in female hearts.<br />Results: Loss of miRNA-22 attenuated body weight gain, adiposity, and prevented obesogenic diet-induced insulin resistance and dyslipidemia in females. WT obese females developed cardiac hypertrophy. Interestingly, miRNA-22 KO females displayed cardiac hypertrophy without left ventricular dysfunction and myocardial fibrosis. Both miRNA-22 deletion and obesogenic diet changed mRNA expression profiles in female hearts. Enrichment analysis revealed that genes associated with regulation of the force of heart contraction, protein folding and fatty acid oxidation were enriched in hearts of WT obese females. In addition, genes related to thyroid hormone responses, heart growth and PI3K signaling were enriched in hearts of miRNA-22 KO females. Interestingly, miRNA-22 KO obese females exhibited reduced mRNA levels of Yap1, Egfr and Tgfbr1 compared to their respective controls.<br />Conclusion: This study reveals that miRNA-22 deletion induces cardiac hypertrophy in females without affecting myocardial function. In addition, our findings suggest miRNA-22 as a potential therapeutic target to treat obesity-related metabolic disorders in females.<br />Competing Interests: The authors declare that they have no conflict of interest.<br /> (© Copyright by the Author(s). Published by Cell Physiol Biochem Press.)

Details

Language :
English
ISSN :
1421-9778
Volume :
54
Issue :
6
Database :
MEDLINE
Journal :
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology
Publication Type :
Academic Journal
Accession number :
33252886
Full Text :
https://doi.org/10.33594/000000309