Diastolic dysfunction and abnormality of the Na+/Ca2+ exchanger in single uremic cardiac myocytes

A C McMahon1, R U Naqvi, M J Hurst

  • 1Anthony Raine Research Laboratories, St Bartholomew's and the Royal London School of Medicine, Queen Mary College, University of London, London, UK.

Kidney International
|March 7, 2006
PubMed

Insights

Early kidney impairment in rats causes abnormal heart cell calcium handling. The Na(+)/Ca(2+) exchanger appears to hinder relaxation in uremic heart cells, suggesting a role in uremic cardiomyopathy.

Area of Science:

  • Cardiology
  • Nephrology
  • Cell Physiology

Background:

  • Cardiovascular disease is a leading cause of death in end-stage renal disease patients.
  • A specific "uremic cardiomyopathy" is suspected but not fully understood.

Purpose of the Study:

  • To investigate the function of the Na(+)/Ca(2+) exchanger in cardiac myocytes during early renal impairment.
  • To explore the role of calcium handling abnormalities in the development of uremic cardiomyopathy.

Main Methods:

  • Induction of mild uremia in rats via partial (5/6) nephrectomy.
  • Isolation and functional analysis of ventricular myocytes, including calcium transients and relaxation.
  • Pharmacological inhibition of the Na(+)/Ca(2+) exchanger.

Main Results:

  • Uremic myocytes were hypertrophied with increased diastolic intracellular Ca(2+).
  • Relaxation from cooling contractures was impaired in uremic cells.
  • Inhibition of Na(+)/Ca(2+) exchange abolished relaxation differences, suggesting altered exchanger function in uremia.

Conclusions:

  • Early uremia leads to abnormal myocyte relaxation and calcium handling.
  • The Na(+)/Ca(2+) exchanger may contribute to diastolic dysfunction in uremic cardiomyopathy by operating in reverse mode.
  • Findings support the existence of a distinct "uremic cardiomyopathy".

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