Elevated cardiac hemoglobin expression is associated with a pro-oxidative and inflammatory environment in primary mitral regurgitation

Primary mitral regurgitation (PMR) is associated with oxidative and inflammatory myocardial damage. We reported greater exosome hemoglobin (Hb) in pericardial fluid (PCF) versus plasma, suggesting a cardiac source of Hb. Test the hypothesis that Hb is produced in the PMR heart and is associated with...

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Veröffentlicht in:Free radical biology & medicine 2023-11, Vol.208, p.126-133
Hauptverfasser: Manzoor, Shajer, Kane, Mariame Selma, Grenett, Maximiliano, Oh, Joo-Yeun, Pat, Betty, Lewis, Clifton, Davies, James E., Steele, Chad, Patel, Rakesh P., Dell’Italia, Louis J.
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Sprache:eng
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Zusammenfassung:Primary mitral regurgitation (PMR) is associated with oxidative and inflammatory myocardial damage. We reported greater exosome hemoglobin (Hb) in pericardial fluid (PCF) versus plasma, suggesting a cardiac source of Hb. Test the hypothesis that Hb is produced in the PMR heart and is associated with increased inflammation. Hb gene expression for subunits alpha (HBA) and beta (HBB) was assessed in right atria (RA), left atria (LA) and left ventricular (LV) tissue from donor hearts (n = 10) and PMR patient biopsies at surgery (n = 11). PMR patients (n = 22) had PCF and blood collected for macrophage markers, pro-inflammatory cytokines, and matrix metalloproteinases (MMPs). In-situ hybridization for HBA mRNA and immunohistochemistry for Hb-alpha (Hbα) and Hb-beta (Hbβ) protein was performed on PMR tissue. HBA and HBB genes are significantly increased (>4-fold) in RA, LA, and LV in PMR vs. normal hearts. In PMR tissue, HBA mRNA is expressed in both LV cardiomyocytes and interstitial cells by in-situ hybridization; however, Hbα and Hbβ protein is only expressed in interstitial cells by immunohistochemistry. PCF oxyHb is significantly increased over plasma along with low ratios (
ISSN:0891-5849
1873-4596
DOI:10.1016/j.freeradbiomed.2023.08.007