首页> 外文期刊>The Journal of Physiology >Effects of Mg(2+) and SR luminal Ca(2+) on caffeine-induced Ca(2+) release in skeletal muscle from humans susceptible to malignant hyperthermia.
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Effects of Mg(2+) and SR luminal Ca(2+) on caffeine-induced Ca(2+) release in skeletal muscle from humans susceptible to malignant hyperthermia.

机译:Mg(2+)和SR腔Ca(2+)对咖啡因诱导的骨骼肌中Ca(2+)释放的影响,这些骨骼肌从易患恶性高热的人群中释放出来。

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Regulation of the ryanodine receptor (RYR) by Mg(2+) and SR luminal Ca(2+) was studied in mechanically skinned malignant hyperthermia susceptible (MHS) and non-susceptible (MHN) fibres from human vastus medialis. Preparations were perfused with solutions mimicking the intracellular milieu and changes in [Ca(2+)] were detected using fura-2 fluorescence. At 1 mM cytosolic Mg(2+), MHS fibres had a higher sensitivity to caffeine (2-40 mM) than MHN fibres. The inhibitory effect of Mg(2+) on caffeine-induced Ca(2+) release was studied by increasing [Mg(2+)] of the solution containing 40 mM caffeine. Increasing [Mg(2+)] from 1 to 3 mM reduced the amplitude of the caffeine-induced Ca(2+) transient by 77 +/- 7.4 % (n = 8) in MHN fibres. However, the caffeine-induced Ca(2+) transient decreased by only 24 +/- 8.1 % (n = 9) in MHS fibres. In MHN fibres, reducing the Ca(2+) loading period from 4 to 1 min (at 1 mM Mg(2+)) decreased the fraction of the total sarcoplasmic reticulum (SR) Ca(2+) content released in response to 40 mM caffeine by 90.4 +/- 6.2 % (n = 6). However, in MHS fibres the response was reduced by only 31.2 +/- 17.4 % (n = 6) under similar conditions. These results suggest that human malignant hyperthermia (MH) is associated with reduced inhibition of the RYR by (i) cytosolic Mg(2+) and (ii) SR Ca(2+) depletion. Both of these effects may contribute to increased sensitivity of the RYR to caffeine and volatile anaesthetics.
机译:Mg(2+)和SR腔Ca(2+)对ryanodine受体(RYR)的调节已在机械剥皮的恶性高热易感性(MHS)和不易感性(MHN)的人类大肠内侧纤维中进行了研究。用模拟细胞内环境的溶液灌注制剂,并使用fura-2荧光检测[Ca(2+)]的变化。在1 mM的胞质Mg(2+)下,MHS纤维对咖啡因(2-40 mM)的敏感性比MHN纤维高。通过增加包含40 mM咖啡因的溶液的[Mg(2+)],研究了Mg(2+)对咖啡因诱导的Ca(2+)释放的抑制作用。将[Mg(2+)]从1 mM增加到MHN纤维中,咖啡因诱导的Ca(2+)瞬变幅度降低了77 +/- 7.4%(n = 8)。但是,在MHS纤维中,咖啡因诱导的Ca(2+)瞬变仅下降了24 +/- 8.1%(n = 9)。在MHN纤维中,将Ca(2+)的加载时间从4分钟减少到1分钟(在1 mM Mg(2+)处)减少了响应40释放的总肌质网(SR)Ca(2+)含量的一部分。 mM咖啡因含量为90.4 +/- 6.2%(n = 6)。但是,在类似条件下,MHS光纤的响应仅降低了31.2 +/- 17.4%(n = 6)。这些结果表明,人类恶性体温过高(MH)与(i)胞质Mg(2+)和(ii)SR Ca(2+)耗尽对RYR的抑制作用降低。这两种作用都可能导致RYR对咖啡因和挥发性麻醉剂的敏感性增加。

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