Service de Gynécologie-Obstétrique, Centre Hospitalier Régional de Meaux, Meaux, France.
J Appl Physiol (1985). 2011 Oct;111(4):1096-105. doi: 10.1152/japplphysiol.00414.2011. Epub 2011 Jul 21.
Mechanical properties of spontaneously contracting isolated nonpregnant human myometrium (NPHM) were investigated throughout the whole continuum of load from zero load up to isometry. This made it possible to assess the three-dimensional tension-velocity-length (T-V-L) relationship characterizing the level of contractility and to determine crossbridge (CB) kinetics of myosin molecular motors. Seventy-seven muscle strips were obtained from hysterectomy in 42 nonpregnant patients. Contraction and relaxation parameters were measured during spontaneous mechanical activity. The isotonic tension-peak velocity (T-V) relationship was hyperbolic in 30 cases and nonhyperbolic in 47 cases. When the T-V relationship was hyperbolic, the Huxley formalism could be used to calculate CB kinetics and CB unitary force. At the whole muscle level and for a given isotonic load level, part of the V-L phase plane showed a common pathway, so that a given instantaneous length corresponded to only one possible instantaneous velocity, independent of time and initial length. At the molecular level, rate constants for CB attachment and detachment were dramatically low, ∼100 times lower than those of striated muscles, and ∼5 to 10 times lower than those of other smooth muscles. The CB unitary force was ∼1.4 ± 0.1 pN. NPHM shared similar basic contractile properties with striated muscles, reflected in the three-dimensional T-V-L relationship characterizing the contractile level. Low CB attachment and detachment rate constants made it possible to generate normal CB unitary force and normal muscle tension in NPHM, even though it contracted extremely slowly compared with other muscles.
本文研究了自发收缩的非妊娠人体子宫平滑肌(NPHM)在零负载至等长范围内的整个负载连续体中的力学性能。这使得评估表征收缩水平的三维张力-速度-长度(T-V-L)关系以及确定肌球蛋白分子马达的交联桥(CB)动力学成为可能。从 42 名非妊娠患者的子宫切除术获得了 77 个肌肉条。在自发机械活动期间测量收缩和松弛参数。在 30 例中,等张张力-峰值速度(T-V)关系呈双曲线,在 47 例中呈非双曲线。当 T-V 关系呈双曲线时,可以使用赫胥黎公式来计算 CB 动力学和 CB 单位力。在整个肌肉水平和给定的等张负荷水平下,V-L 相平面的一部分显示出共同途径,使得给定的瞬时长度仅对应于一个可能的瞬时速度,而与时间和初始长度无关。在分子水平上,CB 附着和脱离的速率常数极低,比横纹肌低约 100 倍,比其他平滑肌低约 5 到 10 倍。CB 单位力约为 1.4±0.1 pN。NPHM 与横纹肌具有相似的基本收缩特性,反映在表征收缩水平的三维 T-V-L 关系中。低 CB 附着和脱离速率常数使得在 NPHM 中能够产生正常的 CB 单位力和正常的肌肉张力,尽管与其他肌肉相比,它的收缩速度非常缓慢。