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Hypochlorite-Modified LDL Induces Arrhythmia and Contractile Dysfunction in Cardiomyocytes.
Koyani, Chintan N; Scheruebel, Susanne; Jin, Ge; Kolesnik, Ewald; Zorn-Pauly, Klaus; Mächler, Heinrich; Hoefler, Gerald; von Lewinski, Dirk; Heinzel, Frank R; Pelzmann, Brigitte; Malle, Ernst.
Afiliación
  • Koyani CN; Division of Molecular Biology and Biochemistry, Gottfried Schatz Research Center, Medical University of Graz, 8010 Graz, Austria.
  • Scheruebel S; Department of Internal Medicine, Division of Cardiology, Medical University of Graz, 8036 Graz, Austria.
  • Jin G; Division of Biophysics, Gottfried Schatz Research Center, Medical University of Graz, 8010 Graz, Austria.
  • Kolesnik E; Department of Internal Medicine, Division of Cardiology, Medical University of Graz, 8036 Graz, Austria.
  • Zorn-Pauly K; The 2nd Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou 325000, China.
  • Mächler H; Department of Internal Medicine, Division of Cardiology, Medical University of Graz, 8036 Graz, Austria.
  • Hoefler G; Division of Biophysics, Gottfried Schatz Research Center, Medical University of Graz, 8010 Graz, Austria.
  • von Lewinski D; Department of Surgery, Division of Cardiac Surgery, Medical University of Graz, 8036 Graz, Austria.
  • Heinzel FR; Diagnostic and Research Center for Molecular BioMedicine, Diagnostic and Research Institute of Pathology, Medical University of Graz, 8010 Graz, Austria.
  • Pelzmann B; Department of Internal Medicine, Division of Cardiology, Medical University of Graz, 8036 Graz, Austria.
  • Malle E; Department of Internal Medicine and Cardiology, Charité-Universitätsmedizin Berlin, Campus Virchow-Klinikum, 13353 Berlin, Germany.
Antioxidants (Basel) ; 11(1)2021 Dec 23.
Article en En | MEDLINE | ID: mdl-35052529
Neutrophil-derived myeloperoxidase (MPO) and its potent oxidant, hypochlorous acid (HOCl), gained attention as important oxidative mediators in cardiac damage and dysfunction. As cardiomyocytes generate low-density lipoprotein (LDL)-like particles, we aimed to identify the footprints of proatherogenic HOCl-LDL, which adversely affects cellular signalling cascades in various cell types, in the human infarcted myocardium. We performed immunohistochemistry for MPO and HOCl-LDL in human myocardial tissue, investigated the impact of HOCl-LDL on electrophysiology and contractility in primary cardiomyocytes, and explored underlying mechanisms in HL-1 cardiomyocytes and human atrial appendages using immunoblot analysis, qPCR, and silencing experiments. HOCl-LDL reduced ICa,L and IK1, and increased INaL, leading to altered action potential characteristics and arrhythmic events including early- and delayed-afterdepolarizations. HOCl-LDL altered the expression and function of CaV1.2, RyR2, NCX1, and SERCA2a, resulting in impaired contractility and Ca2+ homeostasis. Elevated superoxide anion levels and oxidation of CaMKII were mediated via LOX-1 signaling in HL-1 cardiomyocytes. Furthermore, HOCl-LDL-mediated alterations of cardiac contractility and electrophysiology, including arrhythmic events, were ameliorated by the CaMKII inhibitor KN93 and the INaL blocker, ranolazine. This study provides an explanatory framework for the detrimental effects of HOCl-LDL compared to native LDL and cardiac remodeling in patients with high MPO levels during the progression of cardiovascular disease.
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Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Antioxidants (Basel) Año: 2021 Tipo del documento: Article País de afiliación: Austria

Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Antioxidants (Basel) Año: 2021 Tipo del documento: Article País de afiliación: Austria