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首页> 外文期刊>The Journal of Experimental Biology >Metabolite diffusion in giant muscle fibers of the spiny lobster Panulirus argus
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Metabolite diffusion in giant muscle fibers of the spiny lobster Panulirus argus

机译:刺龙虾Panulirus argus巨肌纤维中的代谢物扩散

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The time- and orientation-dependence of metabolite diffusion in giant muscle fibers of the lobster Panulirus argus was examined using P-31- and H-1-pulsed-field gradient nuclear magnetic resonance. The P-31 resonance for arginine phosphate and the H-1 resonances for betaine, arginine/arginine phosphate and -CH2/-CH groups were suitable for measurement of the apparent diffusion coefficient, D. Diffusion was measured axially, D-parallel to, and radially, D-perpendicular to, in fibers over diffusion times of 20 to 300 ms. Diffusion was strongly anisotropic, and D-parallel to was higher than D-perpendicular to at all times. Radial diffusion decreased with time until a steady-state value was reached at a diffusion time of approximate to100 ms. Changes in D-perpendicular to occurred over a time scale that was consistent with previous measurements from fish and mammalian muscle, indicating that diffusion is hindered by the same types of barriers in these diverse muscle types. The time dependence indicated that the sarcoplasmic reticulum is the principal intracellular structure that inhibits mobility in an orientation-dependent manner in skeletal muscle. The abdominal muscles in P. argus are used for anaerobic, burst contractions during an escape maneuver. The fact that these muscle fibers have diameters that may exceed hundreds of microns in diameter, and nearly all of the mitochondria are localized near the sarcolemmal membrane, suggests that barriers that hinder radial diffusion of ATP equivalents may ultimately limit the rate of post-contractile recovery.
机译:使用P-31和H-1脉冲场梯度核磁共振检查了龙虾Panulirus argus巨型肌纤维中代谢物扩散的时间和方向依赖性。磷酸精氨酸的P-31共振和甜菜碱,精氨酸/精氨酸磷酸酯和-CH2 / -CH基团的H-1共振适用于表观扩散系数D的测量。轴向测量扩散,D平行于,在20到300毫秒的扩散时间内,在纤维上呈D形垂直,在径向上呈D形。扩散具有强烈的各向异性,并且始终平行于D平行于D。径向扩散随时间减小,直到在大约100 ms的扩散时间达到稳态值为止。垂直于D的变化发生在与先前从鱼类和哺乳动物肌肉获得的测量值一致的时间范围内,表明在这些不同的肌肉类型中,相同类型的障碍物阻碍了扩散。时间依赖性表明,肌浆网是主要的细胞内结构,其以依赖于方向的方式抑制骨骼肌的运动。阿格鲁斯体育锻炼中的腹部肌肉在逃跑过程中用于厌氧性爆发性收缩。这些肌肉纤维的直径可能超过数百微米,并且几乎所有线粒体都位于肌膜附近,这一事实表明,阻碍ATP当量径向扩散的障碍可能最终限制了收缩后恢复的速度。 。

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