Neuregulin-1 attenuated doxorubicin-induced decrease in cardiac troponins

Yun Bian1, Maoyun Sun, Marcy Silver

  • 1Cardiovascular Research, Caritas St. Elizabeth's Medical Center, 736 Cambridge St. CBR3, Boston, MA 02135, USA.

Insights

Neuregulin-1 (NRG1) protects against doxorubicin (Dox)-induced heart failure by maintaining cardiac troponin levels. This protection involves the NRG1-erbB2 pathway, which increases protein synthesis and reduces degradation, thereby preserving heart function.

Area of Science:

  • Cardiology
  • Molecular Biology
  • Pharmacology

Background:

  • Doxorubicin (Dox) is a potent chemotherapy agent with known cardiotoxicity.
  • Neuregulin-1 (NRG1) shows potential for treating Dox-induced heart failure.
  • NRG1 activates the erbB2 receptor, which is overexpressed in some cancers, necessitating a clear understanding of its cardioprotective mechanisms.

Purpose of the Study:

  • To elucidate the molecular mechanisms by which NRG1, via erbB2 signaling, protects the heart against Dox-induced cardiotoxicity.
  • To investigate the effects of NRG1 on cardiac troponin levels and related signaling pathways in the context of Dox treatment.

Main Methods:

  • NRG1 was administered to Dox-treated mice and isolated neonatal rat ventricular myocytes (NRVM).
  • Cardiac function and survival were assessed in mice.
  • Western blot analysis was used to measure cardiac troponins (cTnI, cTnT, cTnC) and phosphorylated Akt.
  • Caspase activation and protein degradation pathways (ubiquitinylation, proteasome) were analyzed in NRVM.

Main Results:

  • NRG1 significantly improved survival and cardiac function in Dox-treated mice.
  • NRG1 preserved cardiac troponin levels (cTnI, cTnT, cTnC) and maintained Akt phosphorylation in Dox-treated hearts.
  • NRG1 reduced Dox-induced decreases in troponin mRNA and protein in NRVM.
  • Inhibition of the erbB2-PI3K-Akt-mTOR pathway blocked NRG1's protective effects.
  • NRG1 inhibited Dox-induced caspase activation and proteasome degradation of troponins.

Conclusions:

  • NRG1 attenuates Dox-induced cardiac troponin reduction by enhancing transcription/translation and inhibiting caspase-mediated degradation and proteasome degradation.
  • The cardioprotective effects of NRG1 are mediated through the erbB2-PI3K-Akt pathway.
  • NRG1 represents a promising therapeutic strategy to mitigate Dox-induced cardiotoxicity.