Kato S, Ogasawara T, Osa T
J Gen Physiol. 1982 Aug;80(2):257-77. doi: 10.1085/jgp.80.2.257.
The potassium contracture in the longitudinal muscle of estrogen-treated rat uterus was kinetically investigated. The rates of tension development after Ca addition and relaxation after Ca removal were measured under the high-potassium depolarization. Both rates decreased with an increase in preparation thickness. The relaxation rate had only a slight dependence on temperature. On the contrary, both relaxation and contraction rates in a contraction induced by an electrical stimulation strongly depended on temperature, but not on preparation size. These results suggest that the Ca diffusion process in the extracellular space is the rate-limiting step in relaxation of Ca-dependent contracture under potassium depolarization. The diffusion model, in which the effect of the unstirred layer was considered, could quantitatively explain the experimental results. The apparent diffusion coefficient in the muscle sheet was estimated to be approximately 3 x 10(-7) cm2/s. The difference from that in aqueous solution is discussed.
对雌激素处理的大鼠子宫纵肌中的钾挛缩进行了动力学研究。在高钾去极化条件下,测量了添加钙后张力发展的速率以及去除钙后松弛的速率。这两个速率均随标本厚度的增加而降低。松弛速率仅对温度有轻微的依赖性。相反,电刺激诱导的收缩中的松弛和收缩速率均强烈依赖于温度,而不依赖于标本大小。这些结果表明,细胞外空间中的钙扩散过程是钾去极化下钙依赖性挛缩松弛的限速步骤。考虑了未搅拌层效应的扩散模型可以定量地解释实验结果。肌肉片中的表观扩散系数估计约为3×10(-7) cm2/s。并讨论了其与水溶液中扩散系数的差异。