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The determinants of transverse tubular volume in resting skeletal muscle

机译:静息骨骼肌中横管体积的决定因素

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The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with contraction deep within the fibre. Exercise, pathology and the composition of the extracellular fluid (ECF) can alter t-system volume (t-volume). T-volume changes are thought to contribute to fatigue, rhabdomyolysis and disruption of excitation-contraction coupling. However, mechanisms that underlie t-volume changes are poorly understood. A multicompartment, history-independent computer model of rat skeletal muscle was developed to define the minimum conditions for t-volume stability. It was found that the t-system tends to swell due to net ionic fluxes from the ECF across the access resistance. However, a stable t-volume is possible when this is offset by a net efflux from the t-system to the cell and thence to the ECF, forming a net ion cycle ECFt-systemsarcoplasmECF that ultimately depends on Na+/K+-ATPase activity. Membrane properties that maximize this circuit flux decrease t-volume, including P-Na(t)>P-Na(s), P-K(t)
机译:骨骼肌的横向管状(t)系统将肌膜电刺激与纤维内深处的收缩耦合在一起。运动,病理学和细胞外液(ECF)的成分会改变t系统体积(t体积)。 T量的变化被认为会导致疲劳,横纹肌溶解和兴奋收缩耦合的破坏。但是,对t量变化的基础机制了解得很少。建立了多室,独立于历史的大鼠骨骼肌计算机模型,以定义t体积稳定性的最低条件。发现由于来自ECF的整个访问电阻的净离子通量,t系统趋于膨胀。但是,当从t系统到细胞并从那里到ECF的净流出抵消了稳定的t体积时,就形成了最终取决于Na + / K + -ATPase活性的净离子循环ECFt-systemsarcoplasmECF。使该电路通量最大化的膜特性会降低t体积,包括P-Na(t)> P-Na(s),PK(t)

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