Cytosolic calcium transients from the beating mammalian heart.
- 1 November 1987
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 84 (21), 7793-7797
- https://doi.org/10.1073/pnas.84.21.7793
Abstract
To elucidate the role of cytosolic calcium, [Ca2+]i, in the physiology of the normal and ischemic heart, we have developed a method for recording [Ca2+]i transients from the epicardial surface of the rabbit ventricle after arterial perfusion with the cell-permeant cytosolic calcium indicator indo-1 AM. Hearts were illuminated at 360 nm, and fluorescence was recorded simultaneously at 400 and 550 nm. The F400/F550 fluorescence ratio was calculated by an analog circuit that allowed cancelation of small movement artifacts that were present at single wavelengths. Clear [Ca2+]i transients were present in the F400/F550 signal and were remarkable for their slow decay. Slow decay of the transients was not due to buffering of [Ca2+]i by indo-1, since there was no associated impairment of contraction or relaxation. The peak amplitude of the [Ca2+]i transients was increased by ouabain, adrenaline, postextrasystolic potentiation, and acetylcholine. The extent to which the transients decayed diminished with shortening of the interbeat interval, but decay of the transients could be further diminished by acetylcholine or caffeine. A major advantage of the intact heart over isolated myocytes is the ability to measure changes in [Ca2+]i during ischemia. Ischemia produced a marked increase in both peak systolic and end-diastolic [Ca2+]i, which was most rapid during the first 30 sec, and approached a plateau value after 90 sec. This increase in [Ca2+]i was associated with a characteristic broadening of the peak of the transient. The increase in [Ca2+]i during ischemia is consistent with a proposed causative role of [Ca2+]i in mediating early electrophysiological abnormalities.This publication has 33 references indexed in Scilit:
- The kinetics of calcium binding to fura‐2 and indo‐1FEBS Letters, 1987
- Contraction in voltage-clamped, internally perfused single heart cells.The Journal of general physiology, 1986
- Alterations in intracellular calcium activity and contractility of isolated perfused rabbit hearts by ionophores and adrenergic agentsBiochemical and Biophysical Research Communications, 1986
- Measuring cytosolic free calcium concentration in endothelial cells with indo-1: The pitfall of using the ratio of two fluorescence intensities recorded at different wavelengthsCell Calcium, 1986
- Rate dependence of ischaemic myocardial depolarisation: evidence for a novel membrane currentCardiovascular Research, 1986
- Measurement of electrically-induced Ca2+ transients in quin2-loaded cardiac myocytesJournal of Molecular and Cellular Cardiology, 1986
- Do caffeine and metabolic inhibitors increase free calcium in the heart? Interpretation of conflicting intracellular calcium measurementsJournal of Molecular and Cellular Cardiology, 1985
- Calcium Transients During Excitation-Contraction Coupling in Mammalian Heart: Aequorin Signals of Canine Purkinje FibersScience, 1980
- A metabolic control mechanism for calcium ion influx that may protect the ventricular myocardial cellThe American Journal of Cardiology, 1976
- Calcium metabolism and active tension in mechanically disaggregated heart muscleJournal of Molecular and Cellular Cardiology, 1974