Williams J F, Potter R D, Hern D L, Mathew B, Deiss W P
J Clin Invest. 1982 Feb;69(2):309-14. doi: 10.1172/jci110454.
Passive stiffness and hydroxyproline content of myocardium hypertrophied by pressure-loading were determined in kittens 2, 8-16, and 24-52 wk after pulmonary artery banding, which initially elevated right ventricular systolic pressure by 10-15 mm Hg. Right ventricular mass increased by approximately 75%, three-quarters of which occurred during the first 2 wk after banding. Passive stiffness was assessed from resting length-tension relations of isometrically contracting isolated right ventricular papillary muscles. Stiffness constants, alpha and beta were determined from the relationship sigma = alpha (e beta epsilon - 1) where sigma = stress and epsilon = Lagrangian strain. Elastic stiffness (d sigma/d epsilon) was derived from: d sigma/d epsilon = beta sigma + beta alpha. Right ventricular hydroxyproline increased in proportion to muscle mass so that hydroxyproline concentration remained unchanged after banding. Both alpha, beta, and elastic stiffness-stress relations were similar to values in nonbanded controls. Thus, we did not observe an increase in passive stiffness or hydroxyproline concentration of pressure-stiffness or hydroxyproline concentration of pressure-induced hypertrophied myocardium in contrast to most previous studies.
在肺动脉束带术后2周、8 - 16周以及24 - 52周的小猫中,测定压力负荷诱导心肌肥厚后的被动僵硬度和羟脯氨酸含量。最初,肺动脉束带使右心室收缩压升高了10 - 15 mmHg。右心室质量增加了约75%,其中四分之三发生在束带后的前2周。通过等长收缩的离体右心室乳头肌的静息长度 - 张力关系评估被动僵硬度。僵硬度常数α和β由关系式σ = α(eβε - 1)确定,其中σ为应力,ε为拉格朗日应变。弹性僵硬度(dσ/dε)由dσ/dε = βσ + βα得出。右心室羟脯氨酸与肌肉质量成比例增加,因此束带后羟脯氨酸浓度保持不变。α、β以及弹性僵硬度 - 应力关系均与未束带对照组的值相似。因此,与大多数先前研究不同,我们未观察到压力诱导的肥厚心肌的被动僵硬度或羟脯氨酸浓度增加。