Na(+)-Ca2+ exchange influences halothane and caffeine contractures of malignant hyperthermic skeletal muscle.
J. H. Williams, Joseph Ching‐Yuen Lee, Melissa Holland
Abstract
J. H. Williams, Joseph Ching‐Yuen Lee, Melissa Holland
Abstract
These experiments sought to determine the influence of sarcolemmal Na(+)-Ca2+ exchange on halothane and on caffeine contractures of malignant hyperthermic (MH) skeletal muscle. Fiber bundles excised from MH susceptible pigs (Pietrain) were exposed to halothane (3%) and caffeine (0.5-8.0mM) while Na(+)-Ca2+ exchange was inhibited by reducing extracellular Na+ from 100% to 50, 25 and 0% of control. Halothane contracture magnitude was not altered by 50 or 25% Na+ whereas 0% Na+ increased the contractures by 51%. 0 and 25% Na+ increased the magnitude of caffeine contractures (2-8mM) by 53-176%. These results suggest that external Na+ and the Na(+)-Ca2+ exchange mechanism influences contractures of MH skeletal muscle.
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These experiments sought to determine the influence of sarcolemmal Na(+)-Ca2+ exchange on halothane and on caffeine contractures of malignant hyperthermic (MH) skeletal muscle. Fiber bundles excised from MH susceptible pigs (Pietrain) were exposed to halothane (3%) and caffeine (0.5-8.0mM) while Na(+)-Ca2+ exchange was inhibited by reducing extracellular Na+ from 100% to 50, 25 and 0% of control. Halothane contracture magnitude was not altered by 50 or 25% Na+ whereas 0% Na+ increased the contractures by 51%. 0 and 25% Na+ increased the magnitude of caffeine contractures (2-8mM) by 53-176%. These results suggest that external Na+ and the Na(+)-Ca2+ exchange mechanism influences contractures of MH skeletal muscle.
Key concepts: Halothane, Caffeine, Muscle contracture, Contracture, Skeletal muscle, Malignant hyperthermia, Chemistry, Extracellular