Alpha-calcitonin gene-related peptide is protective against pressure overload-induced heart failure

Jianping Li1, Scott P Levick, Donald J DiPette

  • 1Department of Cell Biology & Anatomy, University of South Carolina School of Medicine, 6439 Garners Ferry Rd., Columbia, SC 29209, USA.

Regulatory Peptides
|July 3, 2013
PubMed

Insights

Alpha-calcitonin gene-related peptide (α-CGRP) protects the heart during failure. Its absence worsens cardiac remodeling, dysfunction, and survival in pressure overload heart failure models.

Area of Science:

  • Cardiovascular Research
  • Neuropeptide Signaling
  • Heart Failure Pathophysiology

Background:

  • Alpha-calcitonin gene-related peptide (α-CGRP) is known to protect against hypertension and ischemia/reperfusion injury.
  • Its role in heart failure, particularly in response to pressure overload, remains less understood.

Purpose of the Study:

  • To investigate the cardioprotective role of α-CGRP in pressure overload-induced heart failure.
  • To determine if the absence of α-CGRP exacerbates cardiac remodeling, dysfunction, and mortality.

Main Methods:

  • Utilized male α-CGRP knockout (KO) and wild-type (WT) mice subjected to transverse aortic constriction (TAC) or sham surgery.
  • Assessed survival rates, cardiac α-CGRP content, echocardiographic parameters, lung/body weight ratios, cardiac mass, fibrosis, inflammation, cell death, and angiogenesis over 28 days.

Main Results:

  • α-CGRP knockout mice exhibited significantly lower survival rates following TAC compared to WT mice.
  • Absence of α-CGRP led to greater adverse cardiac remodeling, dysfunction, increased lung/body weight ratios, and elevated left ventricular mass.
  • Markedly increased cardiac fibrosis, inflammation, and cell death, alongside attenuated angiogenesis, were observed in TAC α-CGRP KO mice.

Conclusions:

  • α-CGRP plays a crucial protective role in mitigating adverse effects during pressure overload-induced heart failure.
  • The protective mechanisms may involve the reduction of cardiac inflammation, cell death, and fibrosis.

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