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No confirmation for a causal role of volume-regulated chloride channels in ischemic preconditioning in rabbits.

Abstract
Volume-regulated chloride channels have recently been proposed to be end-effectors in ischemic preconditioning. The present study attempted to confirm this hypothesis by looking both at cardioprotection and channel activity. In isolated rabbit cardiomyocytes, hypo-osmotic stress (167 mosm/l) induced a current with a magnitude of 2-5 pA/pF at 60 mV. That current could be blocked by the selective chloride channel blockers 5-nitro-2-(3-phenylpropylamino) benzoic acid (NPPB) or indanyloxyacetic acid 94 (IAA-94), but only at 100 microM and 1 m M respectively. Lower concentrations were not effective. Because the channel-blocking concentrations were toxic in isolated perfused rabbit hearts, as evidenced by cessation of cardiac contraction and massive infarction, neither agent could be tested against preconditioning's anti-infarct effect. NPPB and IAA-94 at 1 microM and 10 microM, respectively (the doses used in a previous report), did not affect coronary flow, heart rate and developed pressure, and also did not prevent the infarct size reduction of ischemic preconditioning with 5 min global ischemia/10 min reperfusion preceding 30 min of regional ischemia and 120 min of reperfusion [11. 4(+/-3.6) and (11.1(+/-3.7)% infarction of risk area, respectively]. The volume-regulated chloride and organic osmolyte channel blocker 4, 4;-diisothiocyanostilbene-2,2;-disulfonic acid (DIDS) at 100 microM blocked the hypo-osmotically induced current in myocytes, but again could not be used, since it induced total cessation of cardiac contraction and reduced infarct size in non-preconditioned hearts. Our data do not confirm a prior study on a causal role for volume-regulated chloride channels in the protection of ischemic preconditioning. This hypothesis remains to be adequately tested.
AuthorsG Heusch, G S Liu, J Rose, M V Cohen, J M Downey
JournalJournal of molecular and cellular cardiology (J Mol Cell Cardiol) Vol. 32 Issue 12 Pg. 2279-85 (Dec 2000) ISSN: 0022-2828 [Print] England
PMID11113003 (Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
CopyrightCopyright 2000 Academic Press.
Chemical References
  • Chloride Channels
Topics
  • Animals
  • Cells, Cultured
  • Chloride Channels (physiology)
  • Electrophysiology
  • Heart Ventricles (metabolism)
  • Hemodynamics
  • Ischemic Preconditioning
  • Myocardial Infarction (metabolism)
  • Myocardium (cytology)
  • Rabbits

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