首页> 外文期刊>Journal of Muscle Research and Cell Motility >Alterations in triad ultrastructure following repetitive stimulation and intracellular changes associated with exercise in amphibian skeletal muscle
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Alterations in triad ultrastructure following repetitive stimulation and intracellular changes associated with exercise in amphibian skeletal muscle

机译:两栖动物骨骼肌反复刺激后三联征超微结构的改变以及与运动有关的细胞内变化

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This study used Rana temporaria sartorius muscles to examine the effect of fatiguing electrical stimulation on the gap between the T-tubular and sarcoplasmic reticular membranes (T-SR distance) and the T-tubule diameter and compared this with corresponding effects on resting fibres exposed to a range of extracellular conditions that each replicate one of the major changes associated with muscular activity: membrane depolarisation, isotonic volume increase, acidification and intracellular lactate accumulation. Following each treatment, muscles were immersed in isotonic fixative solution and processed for transmission electron microscopy (TEM). Mean T-SR distances were estimated from orthogonal intercepts to provide estimates of diffusion distances between T and SR membranes and T-tubule diameter was estimated by measuring its shortest axis in the sampled J-SR complexes. Measurements from muscles fatigued by low frequency intermittent stimulation showed significant (P 0.05) reversible increases in both T-SR distance and T-tubule diameter from 15.97 ± 0.37 nm to 20.15 ± 0.56 nm and from 15.44 ± 0.60 nm to 22.26 ± 0.84 nm (n = 40, 30) respectively. Exposure to increasing concentrations of extracellular [K+] in the absence of Cl? to produce membrane depolarisation without accompanying cell swelling reduced T-SR distance and increased T-tubule diameter, whilst comparable increases in [K+]e in the presence of Cl? suggested that isotonic cell swelling has the opposite effect. Acidification alone, produced by NH4Cl addition and withdrawal, also decreased T-SR distance and T-tubule diameter. A similar reduction in T-SR distance occurred following exposure to extracellular Na-lactate where such acidification was accompanied by elevations of intracellular lactate, but these conditions produced a significant swelling of T-tubules attributable to movement of lactate from the cell into the T-tubules. This study thus confirms previous reports of significant increases in T-SR distance and T-tubule diameter following stimulation. However, of membrane depolarisation, isotonic cell swelling, intracellular acidification and lactate accumulation, only isotonic cell swelling increases T-SR distance whilst membrane depolarisation and intracellular lactate likely contribute to the observed increases in T-tubule diameter.
机译:这项研究使用了Rana temporaria sartorius肌肉来研究疲劳电刺激对T管和肌浆网状膜之间的间隙(T-SR距离)和T管直径的影响,并将其与暴露于静息纤维的相应影响进行比较。一系列细胞外条件,每个条件都复制与肌肉活动有关的主要变化之一:膜去极化,等渗体积增加,酸化和细胞内乳酸积累。每次治疗后,将肌肉浸入等渗固定液中并进行透射电子显微镜(TEM)处理。从正交截距估算出平均T-SR距离,以估算T和SR膜之间的扩散距离,并通过测量在采样的J-SR络合物中的最短轴来估算T管直径。对低频间歇刺激疲劳的肌肉进行的测量显示,T-SR距离和T管直径从15.97±0.37 nm到20.15±0.56 nm和从15.44±0.60 nm到22.26±0.84均显着(P 0.05)可逆增加。 nm(n = 40、30)。在没有Cl2 的情况下暴露于浓度增加的细胞外[K + ]会产生膜去极化,而不会伴随细胞肿胀,从而降低T-SR距离并增加T管直径,而[K + < / sup>] e 在存在Cl?的情况下表明等渗细胞膨胀的作用相反。单独添加和撤除NH4 Cl引起的酸化作用也降低了T-SR距离和T管直径。暴露于细胞外乳酸钠后,T-SR距离也发生了类似的减少,这种酸化伴随着细胞内乳酸的升高,但是这些条件导致T管显着肿胀,这归因于乳酸从细胞向T-的运动。小管。因此,这项研究证实了先前报道的刺激后T-SR距离和T管直径显着增加的报道。但是,在膜去极化,等渗细胞肿胀,细胞内酸化和乳酸积累的情况下,只有等渗细胞肿胀会增加T-SR距离,而膜去极化和细胞内乳酸可能会导致观察到的T管直径增加。

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