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AKAP1 in Renal Patients with AHF to Reduce Ferroptosis of Cardiomyocyte. | LitMetric

AKAP1 in Renal Patients with AHF to Reduce Ferroptosis of Cardiomyocyte.

Heart Surg Forum

Department of Endocrine, The First People's Hospital of Yongkang, 321390 Yongkang, Zhejiang, China.

Published: January 2024

AI Article Synopsis

  • The study explored the role of AKAP1 in renal patients suffering from acute heart failure (AHF) and its mechanisms of action.
  • AKAP1 mRNA levels were found to be lower in these patients, correlating negatively with certain collagen markers, and also decreased over time in mouse models of AHF.
  • The findings suggest that increasing AKAP1 expression can help combat oxidative stress and ferroptosis while also reducing the ubiquitination of NDUFS1, pointing to AKAP1 as a potential therapeutic target for AHF.

Article Abstract

Background: This study mainly investigated the mechanism and effects of AKAP1 in renal patients with acute heart failure (AHF).

Methods: Patients with renal patients with AHF and normal volunteers were collected. The left anterior descending arteries (LAD) of mice were ligated to induce myocardial infarction.

Results: AKAP1 messenger RNA (mRNA) expression was found to be down-regulated in renal patients with AHF. The serum levels of AKAP1 mRNA expression were negatively correlated with collagen I/III in patients. AKAP1 mRNA and protein expression in the heart tissue of mice with AHF were also found to be down-regulated in a time-dependent manner. Short hairpin (Sh)-AKAP1 promotes AHF in a mouse model. AKAP1 up-regulation reduces reactive oxygen species (ROS)-induced oxidative stress in an In Vitro model. AKAP1 up-regulation also reduces ROS-induced lipid peroxidation ferroptosis in an In Vitro model. AKAP1 induces NDUFS1 expression to increase GPX4 activity levels. AKAP1 protein interlinked with the NDUFS1 protein. Up-regulation of the AKAP1 gene reduced NDUFS1 ubiquitination, while down-regulation of the AKAP1 gene increased NDUFS1 ubiquitination in a model. In vivo imaging showed that the sh-AKAP1 virus reduced NDUFS1 expression in the heart of a mouse model.

Conclusions: AKAP1 reduced ROS-induced lipid peroxidation ferroptosis through the inhibition of ubiquitination of NDUFS by mitochondrial damage in model of renal patients with AHF, suggest a novel target for AHF treatment.

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Source
http://dx.doi.org/10.59958/hsf.5717DOI Listing

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