NADPH oxidase-dependent redox signaling in human heart failure: relationship between the left and right ventricle

Chiara Nediani1, Elisabetta Borchi, Carla Giordano

  • 1Department of Biochemical Sciences, University of Florence, Viale Morgagni, 50, 50134 Florence, Italy. chiara.nediani@unifi.it

Insights

Increased NADPH oxidase activity drives oxidative stress in both ventricles of failing human hearts, impacting lipid peroxidation and MAPK signaling, suggesting new therapeutic targets for heart failure.

Area of Science:

  • Cardiology
  • Molecular Biology
  • Pathophysiology

Background:

  • Oxidative stress from NADPH oxidase is key in heart failure.
  • Downstream effects and ventricular involvement are not fully understood.

Purpose of the Study:

  • To investigate NADPH oxidase activity and downstream effects in human right and left ventricles.
  • To correlate oxidative stress markers and signaling pathways in heart failure.

Main Methods:

  • Assessed NADPH oxidase superoxide production and p47(phox) translocation.
  • Measured lipid peroxidation (MDA) and mitogen-activated protein kinase (MAPK) activation (ERK1/2, JNK, p38).
  • Correlated findings between right and left ventricles in failing hearts.

Main Results:

  • Failing ventricles showed increased NADPH oxidase activity and p47(phox) translocation.
  • Elevated lipid peroxidation and activation of ERK and p38 MAPKs were observed.
  • Strong correlations existed between left and right ventricular oxidative stress markers and MAPK activation.

Conclusions:

  • Both ventricles are affected by NADPH oxidase-driven oxidative stress in human heart failure.
  • This pathway contributes to ventricular remodeling and disease progression.
  • Identified potential therapeutic targets for heart failure treatment.

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