Spontaneous and propagated contractions in rat cardiac trabeculae.
Open Access
- 1 May 1989
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 93 (5) , 943-961
- https://doi.org/10.1085/jgp.93.5.943
Abstract
Sarcomere length measurement by microscopic and laser diffraction techniques in trabeculae of rat heart, superfused with Krebs-Henseleit solution at 21 degrees C, showed spontaneous local sarcomere shortening after electrically stimulated twitches. The contractions originated in a region of several hundred micrometers throughout the width of the muscle close to the end of the preparation that was damaged by dissection. The contractions propagated at a constant velocity along the trabeculae. The velocity of propagation increased from 0 to 10 mm/s in proportion to the number of stimuli (3-30) in a train of electrically evoked twitches at 2 Hz and at an external calcium ion concentration ([Ca++]o) of 1.5 mM. At a constant number of stimuli (n), the velocity of propagation increased from 0 to 15 mm/s with [Ca++]o increasing from 1 to 7 mM. In addition, increase of n and [Ca++]o led to an increase of the extent of local sarcomere shortening during the spontaneous contractions, and the occurrence of multiple contractions. Spontaneous contractions with much internal shortening and a high velocity of propagation frequently induced spontaneous synchronized contractions and eventually arrhythmias. Propagation of spontaneous contractions at low and variable velocity is consistent with the hypothesis that calcium leakage into damaged cells causes spontaneous calcium release from the overloaded sarcoplasmic reticulum in the damaged cells. This process propagates as a result of diffusion of calcium into adjacent cells, which triggers calcium release from their sarcoplasmic reticulum. We postulate that the propagation velocity depends on the intracellular calcium ion concentration, with increases with n and [Ca++]o.This publication has 36 references indexed in Scilit:
- A model of propagating calcium-induced calcium release mediated by calcium diffusion.The Journal of general physiology, 1989
- Role of Ca2+ channel in development of tension in heart muscleJournal of Molecular and Cellular Cardiology, 1987
- Cellular and Subcellular Heterogeneity of [Ca 2+ ] i in Single Heart Cells Revealed by Fura-2Science, 1987
- Single adult rabbit and rat cardiac myocytes retain the Ca2+- and species-dependent systolic and diastolic contractile properties of intact muscle.The Journal of general physiology, 1986
- Active Shortening Retards the Decline of the Intracellular Calcium Transient in Mammalian Heart MuscleScience, 1983
- Scattered-light intensity fluctuations in diastolic rat cardiac muscle caused by spontaneous Ca++-dependent cellular mechanical oscillations.The Journal of general physiology, 1983
- The cardiac excitation-contraction cyclePharmacology & Therapeutics, 1982
- Mechanical restitution of the rat papillary muscleActa Physiologica Scandinavica, 1982
- Tension development and sarcomere length in rat cardiac trabeculae. Evidence of length-dependent activation.Circulation Research, 1980
- Excitation-Contraction Coupling of Isolated Cardiac Fibers with Disrupted or Closed Sarcolemmas: CALCIUM-DEPENDENT CYCLIC AND TONIC CONTRACTIONSCirculation Research, 1972