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血管平滑肌的主动张力-长度曲线与其细胞成分相关。

The active tension-length curve of vascular smooth muscle related to its cellular components.

作者信息

Mulvany M J, Warshaw D M

出版信息

J Gen Physiol. 1979 Jul;74(1):85-104. doi: 10.1085/jgp.74.1.85.

Abstract

The active and passive isometric tension-length (internal circumference) relation of vascular smooth muscle has been investigated using a 100-200-micron lumen diameter artery from the rat mesenteric bed. Conditions were established under which maximal activation was obtained at all lengths. Below L0 (the length at which maximum tension, delta T0, was developed) the active tension fell with decreasing length along a line which extrapolated to 0.38 L0; below 1.1 L0 the relation was reversible regardless of the protocol used. Above L0 the active tension fell linearly with increasing length along a line which extrapolated to zero tension at 1.82 L0. At the longer lengths investigated (up to 1.6 L0) the passive tension upon which the active responses were superimposed was as high as 4.4 delta T0. However, measurements of the dynamic characteristics of the preparation (with a time resolution of 2 ms) suggest that the active tension measured is nevertheless a measure of the active properties of the contractile apparatus. Direct light microscopic observation of the effect of length change on the cells within the walls of the preparation showed that changes in vessel length produced, on average, the same percentage change in cell length. Histological examination showed no signs of cell destruction following large extensions. The results suggest that the decrease in tension with extension above L0 is due to changes in the properties of the contractile apparatus, rather than to cellular damage.

摘要

利用大鼠肠系膜床中直径为100 - 200微米的动脉,研究了血管平滑肌的主动和被动等长张力 - 长度(内径)关系。建立了在所有长度下均能获得最大激活的条件。在L0(产生最大张力ΔT0的长度)以下,主动张力随长度减小沿一条外推至0.38L0的直线下降;在1.1L0以下,无论采用何种实验方案,该关系都是可逆的。在L0以上,主动张力随长度增加呈线性下降,沿一条在1.82L0处外推至零张力的直线。在所研究的较长长度(高达1.6L0)下,叠加主动反应的被动张力高达4.4ΔT0。然而,对该标本动态特性的测量(时间分辨率为2毫秒)表明,所测得的主动张力仍然是收缩装置主动特性的一种度量。对标本壁内细胞长度变化影响的直接光学显微镜观察表明,血管长度的变化平均使细胞长度产生相同百分比的变化。组织学检查显示,在大幅伸展后没有细胞破坏的迹象。结果表明,在L0以上伸展时张力降低是由于收缩装置特性的变化,而不是细胞损伤。

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