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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Unloaded shortening velocity in single permeabilized vascular smooth muscle cells is independent of microtubule status.
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Unloaded shortening velocity in single permeabilized vascular smooth muscle cells is independent of microtubule status.

机译:单个透化血管平滑肌细胞中的空载缩短速度与微管状态无关。

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Microtubules may influence smooth muscle contraction either via involvement in signal transduction processes or by serving as an internal load that opposes contraction. To test the latter hypothesis, microtubule distribution and the unloaded shortening velocity were investigated in freshly isolated single vascular smooth muscle cells (VSMCs) treated with microtubule modulating drugs. Immunocytochemical studies showed that microtubules run mainly longitudinally in relaxed VSMCs. They are oriented more obliquely, almost transversely to the long axis of the cells after contraction, suggesting that microtubules are compressed during shortening, and thus might impart an internal passive load. Quantitative immunocytochemical analysis revealed that, relative to the control group, colchicine (15 microM) decreased the microtubule density by 40% while taxol (10 microM) increased the microtubule density by 46%. However, alteration of microtubule polymerization status by these microtubule-modulating drugs did not have a significant effect on unloaded shortening velocity in alpha-toxin permeabilized VSMCs under maximal activating conditions or submaximal activating conditions (about 36% of maximal velocity). These results suggest that microtubules do not present an appreciable internal load to dampen single VSMCs shortening in the present experimental system, and that their influence on smooth muscle contraction is primarily via signal transduction mechanisms.
机译:微管可能通过参与信号转导过程或通过充当对抗收缩的内部负荷来影响平滑肌收缩。为了检验后一种假设,在用微管调节药物治疗的新鲜分离的单个血管平滑肌细胞(VSMC)中研究了微管分布和空载缩短速度。免疫细胞化学研究表明,微管主要在松弛的VSMC中纵向延伸。它们在收缩后更倾斜地定向,几乎垂直于细胞的长轴,这表明微管在缩短过程中被压缩,因此可能会产生内部被动载荷。定量免疫细胞化学分析显示,相对于对照组,秋水仙碱(15 microM)使微管密度降低40%,而紫杉醇(10 microM)使微管密度提高46%。但是,在最大激活条件或次最大激活条件下(最大速度的约36%),这些微管调节药物对微管聚合状态的改变对α-毒素渗透的VSMC中的空载缩短速度没有显着影响。这些结果表明,在本实验系统中,微管并未表现出明显的内部负荷以抑制单个VSMC的缩短,并且它们对平滑肌收缩的影响主要是通过信号转导机制。

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