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大鼠门静脉平滑肌肥大发育过程中的收缩特性

Contractile properties during development of hypertrophy of the smooth muscle in the rat portal vein.

作者信息

Malmqvist U, Arner A

机构信息

Department of Physiology and Biophysics, University of Lund, Sweden.

出版信息

Acta Physiol Scand. 1988 May;133(1):49-61. doi: 10.1111/j.1748-1716.1988.tb08380.x.

Abstract

Structural and mechanical alterations during hypertrophy of the rat portal vein were investigated. Growth of the vessel was induced by a partial ligature of the vessel causing an increased transmural pressure. Vessel segments from animals kept with ligature for 1, 3, 5 and 7 days, were compared with vessels from sham-operated animals. Maximal active force and vessel cross-sectional area increased with time in the ligated group. On day 7, force and cross-sectional area at the optimal length, were markedly increased in the ligated group (21.1 +/- 1.0 mN, 0.55 +/- 0.04 mm2, n = 9) compared with the control vessels (11.7 +/- 1.0 mN, 0.30 +/- 0.02 mm2, n = 7). Light and electron microscopy of preparations fixed at optimal length showed that the amount of smooth muscle and the cross-sectional area of cell profiles were almost doubled in the ligated group on day 7, consistent with hypertrophy of the smooth muscle. The force per smooth muscle cell area was similar in the two groups (ligated: 132 +/- 15; control: 145 +/- 16 mN mm-2, n = 4-5). The maximal shortening velocity was significantly lower in the hypertrophied group (ligated: 0.28 +/- 0.02; control: 0.41 +/- 0.01 optimal length s-1, n = 6). In chemically skinned preparations, activated by maximal thiophosphorylation of the myosin light chains, force was higher in the ligated group compared to the controls but no difference in maximal shortening velocity was observed. In conclusion, the increased transmural pressure is associated with a rapid increase in the amount of smooth muscle in the portal vein. The mechanical data show that after 7 days the force generating ability of the contractile system has increased in proportion to the smooth muscle cell mass. The unaltered maximal shortening velocity in the skinned hypertrophied preparations suggests that the kinetic properties of the maximally activated contractile system are unaltered. The decreased maximal shortening velocity in the intact hypertrophied preparations may reflect alterations in the excitation-contraction coupling.

摘要

研究了大鼠门静脉肥大过程中的结构和力学改变。通过部分结扎血管以增加跨壁压力来诱导血管生长。将结扎1、3、5和7天的动物的血管段与假手术动物的血管进行比较。结扎组的最大主动力和血管横截面积随时间增加。在第7天,结扎组在最佳长度时的力和横截面积(21.1±1.0 mN,0.55±0.04 mm2,n = 9)与对照血管(11.7±1.0 mN,0.30±0.02 mm2,n = 7)相比显著增加。对固定在最佳长度的标本进行光镜和电镜观察表明,在第7天结扎组的平滑肌量和细胞轮廓横截面积几乎增加了一倍,这与平滑肌肥大一致。两组中每个平滑肌细胞面积的力相似(结扎组:132±15;对照组:145±16 mN mm-2,n = 4 - 5)。肥大组的最大缩短速度显著较低(结扎组:0.28±0.02;对照组:0.41±0.01最佳长度s-1,n = 6)。在化学去表皮标本中,通过肌球蛋白轻链的最大硫代磷酸化激活后,结扎组的力高于对照组,但未观察到最大缩短速度的差异。总之,跨壁压力增加与门静脉平滑肌量的快速增加有关。力学数据表明,7天后收缩系统的力产生能力与平滑肌细胞质量成比例增加。去表皮肥大标本中最大缩短速度未改变表明最大激活收缩系统的动力学特性未改变。完整肥大标本中最大缩短速度降低可能反映了兴奋 - 收缩偶联的改变。

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