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Lactate per se improves the excitability of depolarized rat skeletal muscle by reducing the Cl− conductance

机译:乳酸本身可通过降低Cl-电导率来提高去极化大鼠骨骼肌的兴奋性

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摘要

Studies on rats have shown that lactic acid can improve excitability and function of depolarized muscles. The effect has been related to the ensuing reduction in intracellular pH causing inhibition of muscle fibre Cl channels. However, since several carboxylic acids with structural similarities to lactate can inhibit muscle Cl channels it is possible that lactate per se can increase muscle excitability by exerting a direct effect on these channels. We therefore examined the effects of lactate on the function of intact muscles and skinned fibres together with effects on pH and Cl conductance (Gcl). In muscles where extracellular compound action potentials (M-waves) and tetanic force response to excitation were reduced by (mean ±s.e.m.) 82 ± 4% and 83 ± 2%, respectively, by depolarization with 11 mm extracellular K+, both M-waves and force exhibited an up to 4-fold increase when 20 mm lactate was added. This effect was present already at 5 mm and saturated at 15 mm lactate, and was associated with a 31% reduction in GCl. The effects of lactate were completely blocked by Cl channel inhibition or use of Cl-free solutions. Finally, both experiments where effects of lactate on intracellular pH in intact muscles were mimicked by increased CO2 tension and experiments with skinned fibres showed that the effects of lactate could not be related to reduced intracellular pH. It is concluded that addition of lactate can inhibit ClC-1 Cl channels and increase the excitability and contractile function of depolarized rat muscles via mechanisms not related to a reduction in intracellular pH.
机译:对大鼠的研究表明,乳酸可以改善去极化肌肉的兴奋性和功能。该作用与随后细胞内pH降低引起肌肉纤维Cl -通道的抑制有关。但是,由于几种与乳酸具有结构相似性的羧酸可抑制肌肉Cl -通道,因此乳酸本身可通过直接作用于这些通道而增加肌肉的兴奋性。因此,我们研究了乳酸对完整肌肉和皮肤纤维功能的影响,以及对pH和Cl -电导(Gcl)的影响。在肌肉中,通过用11 mm细胞外K + <去极化,分别使细胞外复合动作电位(M波)和强直力对兴奋的反应分别降低(平均值±sem)82±4%和83±2%。当添加20mm乳酸盐时,M波和力都显示出多达4倍的增加。这种作用已经存在于5mm处并且在15mm乳酸盐处已经饱和,并且与GCl降低31%有关。乳酸的作用被Cl -通道抑制或使用不含Cl -的溶液完全阻断。最后,两个实验都通过增加CO2的张力来模拟乳酸对完整肌肉细胞内pH的影响,而用皮肤纤维进行的实验都表明,乳酸的影响与细胞内pH的降低无关。结论是,添加乳酸可以抑制ClC-1 Cl -通道,并通过与细胞内pH降低无关的机制增加去极化大鼠肌肉的兴奋性和收缩功能。

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