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Protective effect of empagliflozin against palmitate-induced lipotoxicity through AMPK in H9c2 cells.


ABSTRACT: Sodium-glucose cotransporter 2 (SGLT2) inhibitors have recently emerged as novel cardioprotective agents. However, their direct impact on cardiomyocyte injury is yet to be studied. In this work, we investigate the underlying molecular mechanisms of empagliflozin (EMPA), an SGLT2 inhibitor, in mitigating palmitate (PA)-induced cardiomyocyte injury in H9c2 cells. We found that EMPA significantly attenuated PA-induced impairments in insulin sensitivity, ER stress, inflammatory cytokine gene expression, and cellular apoptosis. Additionally, EMPA elevated AMP levels, activated the AMPK pathway, and increased carnitine palmitoyl transferase1 (CPT1) gene expression, which collectively enhanced fatty acid oxidation and reduced stress signals. This study reveals a novel mechanism of EMPA's protective effects against PA-induced cardiomyocyte injury, providing new therapeutic insights into EMPA as a cardioprotective agent.

SUBMITTER: Song MW 

PROVIDER: S-EPMC10728651 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Protective effect of empagliflozin against palmitate-induced lipotoxicity through AMPK in H9c2 cells.

Song Min-Woo MW   Cui Wenhao W   Lee Chang-Gun CG   Cui Rihua R   Son Young Ho YH   Kim Young Ha YH   Kim Yujin Y   Kim Hae Jin HJ   Choi Sung-E SE   Kang Yup Y   Kim Tae Ho TH   Jeon Ja Young JY   Lee Kwan-Woo KW  

Frontiers in pharmacology 20231205


Sodium-glucose cotransporter 2 (SGLT2) inhibitors have recently emerged as novel cardioprotective agents. However, their direct impact on cardiomyocyte injury is yet to be studied. In this work, we investigate the underlying molecular mechanisms of empagliflozin (EMPA), an SGLT2 inhibitor, in mitigating palmitate (PA)-induced cardiomyocyte injury in H9c2 cells. We found that EMPA significantly attenuated PA-induced impairments in insulin sensitivity, ER stress, inflammatory cytokine gene express  ...[more]

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