Hyperhomocysteinemia regulated SCF expression in cultured cardiomyocytes via modulation of NF-κB activities

Xia Zhao1, Dong Kuang, Yuping Duan

  • 1Institute of Pathology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, 1095 Jiefang Da Dao, Wuhan, 430030, China, yespeony@126.com.

Insights

Hyperhomocysteinemia (HHcy) impacts cardiac stem cell factor (SCF) expression in cardiomyocytes. HHcy at lower concentrations increases SCF via nuclear factor-kappaB (NF-κB), while higher concentrations decrease it, suggesting a dual role in cardiovascular disease risk.

Area of Science:

  • Cardiovascular Biology
  • Molecular Cardiology
  • Stem Cell Biology

Background:

  • Hyperhomocysteinemia (HHcy) is a significant risk factor for coronary artery disease and myocardial infarction.
  • Myocardial stem cell factor (SCF) plays a role in cardiac repair by mediating cardiac stem cell migration.
  • The effect of HHcy on SCF expression in cardiomyocytes remains unclear.

Purpose of the Study:

  • To investigate the impact of HHcy on SCF expression in cultured neonatal rat cardiomyocytes.
  • To elucidate the role of nuclear factor-kappaB (NF-κB) signaling in HHcy-mediated SCF regulation.
  • To understand the concentration-dependent effects of HHcy on cardiomyocyte function.

Main Methods:

  • Primary neonatal rat cardiomyocytes were cultured and treated with varying concentrations of homocysteine (Hcy) (20, 50, 100 μM).
  • SCF expression levels were measured following Hcy treatment.
  • NF-κB activity was assessed, and the effect of an NF-κB inhibitor (N-acetylcysteine) was evaluated.

Main Results:

  • Low to moderate Hcy concentrations (20-50 μM) significantly increased SCF expression, correlating with elevated NF-κB activity.
  • Inhibition of NF-κB activity by N-acetylcysteine attenuated the Hcy-induced increase in SCF.
  • High Hcy concentration (100 μM) markedly decreased SCF expression, accompanied by suppressed NF-κB activity.

Conclusions:

  • HHcy regulates SCF expression in cardiomyocytes in a concentration-dependent manner.
  • NF-κB signaling is a key mediator of HHcy's effect on SCF expression.
  • HHcy may contribute to cardiovascular disease risk through direct detrimental effects on cardiomyocytes, beyond endothelial dysfunction.

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