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Effects of tetracaine on sarcoplasmic calcium release in mammalian skeletal muscle fibres

机译:丁卡因对哺乳动物骨骼肌纤维中肌浆钙释放的影响

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摘要

class="enumerated" style="list-style-type:decimal">Single muscle fibres were dissociated enzymatically from the extensor digitorum communis muscle of rats. The fibres were mounted into a double Vaseline gap experimental chamber and the events in excitation-contraction coupling were studied under voltage clamp conditions in the presence and absence of the local anaesthetic tetracaine.Changes in intracellular calcium concentration ([Ca2+]i) were monitored using the calcium sensitive dyes antipyrylazo III and fura-2 and the rate of calcium release (Rrel) from the sarcoplasmic reticulum (SR) was calculated. Tetracaine decreased the maximal attained [Ca2+]i and suppressed, in a dose-dependent manner, both the early peak and the steady level of Rrel in the voltage range examined.The concentration dependence of the effects on the two kinetic components of Rrel were almost identical with a half-effective concentration (K50) of 70 and 71 μm and a Hill coefficient (nH) of 2.7 and 2.3 for the peak and the steady level, respectively. Furthermore, the drug did not alter the peak to steady level ratio up to a concentration (50 μm) that caused a 35 ± 5% reduction in calcium release. Higher concentrations did suppress the ratio but the degree of suppression was voltage independent.Tetracaine (50 μm) neither influenced the total available intramembrane charge nor altered its membrane potential dependence. It shifted the transfer function, the normalized SR permeability versus normalized charge to the right, indicating that similar charge transfer caused a smaller increase in SR permeability.To explore the site of action of tetracaine further the ryanodine receptor (RyR) calcium release channel of the SR was purified and reconstituted into planar lipid bilayers. The reconstituted channel had a conductance of 511 ± 14 pS (n = 8) in symmetric 250 mm KCl that was not affected by tetracaine. Tetracaine decreased the open probability of the channel in a concentration-dependent manner with K50 = 68 μm and nH = 1.5.These experiments show that tetracaine suppresses SR calcium release in enzymatic isolated mammalian skeletal muscle fibres. This effect is due, presumably, to the decreased open probability of the RyR in the presence of the drug. Since both the inactivating peak and the steady level of Rrel were equally affected by tetracaine, our observations suggest that there is a tight coupling between these kinetic components of SR calcium release in mammalian skeletal muscle.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 从大鼠的指趾伸肌酶解单肌纤维。将纤维安装在双Vaseline间隙实验室中,在存在和不存在局麻药丁卡因的条件下,在电压钳条件下研究激发-收缩耦合的事件。 细胞内钙浓度的变化([使用钙敏感染料抗pyrylalazo III和fura-2监测Ca 2+,并计算从肌质网(SR)释放钙的速率(Rrel)。在检查的电压范围内,四卡因降低了最大可达到的[Ca 2 + ] i,并以剂量​​依赖的方式抑制了Rrel的早期峰值和稳定水平。
  • 对Rrel的两个动力学成分的浓度依赖性几乎相同,其峰值和稳定水平的半有效浓度(K50)为70和71μm,希尔系数(nH)为2.7和2.3,分别。此外,该药物在达到浓度(50μm)时不会改变峰-稳定水平比,导致钙释放降低35±5%。较高的浓度确实抑制了该比率,但抑制的程度与电压无关。 四卡因(50μm)既不影响总可用膜内电荷,也不改变其膜电位依赖性。它将转移函数,归一化SR渗透性与归一化电荷向右移动,表明相似的电荷转移导致SR渗透性的增加较小。 探索丁卡因的作用部位进一步是ryanodine受体( SR的RyR)钙释放通道被纯化并重建为平面脂质双层。重构的通道在不受丁卡因影响的对称250 mm KCl中的电导为511±14 pS(n = 8)。在浓度为K50 = 68μm,nH = 1.5的情况下,四卡因降低了通道的开放可能性。 这些实验表明,丁卡因抑制了酶促分离的哺乳动物骨骼肌纤维中SR钙的释放。据推测,该作用归因于在药物存在下RyR的开放可能性降低。由于丁卡因对Rrel的失活峰和稳定水平均具有相同的影响,因此我们的观察表明,哺乳动物骨骼肌中SR钙释放的这些动力学成分之间存在紧密的耦合。
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