Péréon Y, Khammari A, Noireaud J
Laboratoire de Physiopathologie et Pharmacologie Cellulaire et Moléculaire, Hópital G.R. Laënnec, Nantes, France.
Acta Physiol Scand. 1996 Nov;158(3):287-94. doi: 10.1046/j.1365-201X.1996.526290000.x.
The effects of perchlorate (6-40 mM) on contractile properties and depolarization-contraction coupling of diaphragm have been tested in muscle fibre bundles from 8 to 12-week-old mdx and control mice. Twitch contractile properties were affected by perchlorate to a similar extent in mdx and control muscles. In the absence of perchlorate, voltage-dependent parameters of both activation and inactivation were similar in mdx and control muscles. In both mdx and control muscles, perchlorate induced a shift of activation and inactivation curves toward more negative potentials. However, mdx diaphragm fibres were less sensitive to perchlorate in the low range of concentrations (6-12 mM). These results are unlikely to be due to a possible effect of the lack of dystrophin on the excitation-contraction coupling voltage sensor or ryanodine receptor. However, necrosis and regeneration occur in mdx mouse diaphragm and it is postulated that the presence of a high proportion of not fully mature fibres could contribute to the reduced sensitivity of mdx diaphragm fibres to perchlorate.
在8至12周龄的mdx小鼠和对照小鼠的肌纤维束中,测试了高氯酸盐(6 - 40 mM)对膈肌收缩特性和去极化-收缩偶联的影响。高氯酸盐对mdx肌肉和对照肌肉的抽搐收缩特性的影响程度相似。在没有高氯酸盐的情况下,mdx肌肉和对照肌肉中激活和失活的电压依赖性参数相似。在mdx肌肉和对照肌肉中,高氯酸盐均导致激活和失活曲线向更负的电位移动。然而,在低浓度范围(6 - 12 mM)内,mdx膈肌纤维对高氯酸盐的敏感性较低。这些结果不太可能归因于肌营养不良蛋白缺乏对兴奋-收缩偶联电压传感器或兰尼碱受体的可能影响。然而,mdx小鼠膈肌中会发生坏死和再生,据推测,高比例未完全成熟的纤维的存在可能导致mdx膈肌纤维对高氯酸盐的敏感性降低。