Uncoupling Protein 2 Drives Myocardial Dysfunction in Murine Models of Septic Shock

Author:

Tang Rong1ORCID,Qi Ping-ping2,Liu Yan-song3,Jia Liu1,Liu Rui-jin3,Wang Si-cong3,Wang Chang-song3,Gao Yang1,Wang Hong-liang1,Yu Kai-jiang45ORCID

Affiliation:

1. Department of Critical Care Medicine, The Second Affiliated Hospital of Harbin Medical University, 246 Xuefu Road, Harbin, 150086, Heilongjiang Province, China

2. Departments of Blood Transfusion, The First Affiliated Hospital of Harbin Medical University, Heilongjiang Province, Harbin, China

3. Department of Critical Care Medicine, The Cancer Hospital of Harbin Medical University, 150 Haping Road, Harbin, 150081, China

4. Institute of Critical Care Medicine, Heilongjiang Academy of Medical Science, 150 Haping Road, Harbin, 150081, China

5. Department of Critical Care Medicine, The First Affiliated Hospital of Harbin Medical University, Harbin 150001, China

Abstract

Cardiac dysfunction is a major component of sepsis-induced multiorgan failure in critical care units. Uncoupling protein 2 (UCP2) involves immune response, regulation of oxidative stress, and maintenance of mitochondrial membrane potential as well as energy production. However, whether and how UCP2 plays roles in the development of septic cardiac dysfunction are largely unknown. Here, intraperitoneal injection of LPS significantly activated UCP2 expression accompanied by a significant decrease of cardiac function and caused a significantly lower survival rate in mice. Of note, knockdown of UCP2 through a cardiotropic adenoassociated viral vector carrying a short hairpin RNA (shRNA) specifically targeting the UCP2 evoked resistance to LPS-triggered septic cardiac dysfunction and lethality in vivo. Moreover, UCP2 deficiency ameliorated the reduced levels of intracellular ATP in the LPS-challenged heart tissues and preserved mitochondrial membrane potential loss in primary adult mouse cardiomyocytes in LPS-challenged animals. Mechanistically, we confirmed that the inhibition of UCP2 promoted autophagy in response to LPS, as shown by an increase in LC3II and a decrease in p62. At last, the autophagy inhibitor 3-MA abolished UCP2 knockdown-afforded cardioprotective effects. Those results indicate that UCP2 drives septic cardiac dysfunction and that the targeted induction of UCP2-mediated autophagy may have important therapeutic potential.

Funder

Nn10 program

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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