Hultgren P B, Hamrell B B
Basic Res Cardiol. 1986 Sep-Oct;81(5):508-16. doi: 10.1007/BF01907757.
Studies of skeletal muscle suggest that the ratio of stiffness to tension will increase in the presence of a slower rate of crossbridge head rotation from the attached perpendicular state (non-force generating) to the attached 45 degree angle state (force generating). Maximum shortening velocity is depressed proportionate with adenosinetriphosphatase activity in pressure overload cardiac hypertrophy. The maximum rate of isometric force generation also is less than normal but active isometric force levels are normal. The myosin isoenzymes of hypertrophied heart muscle are shifted to predominantly slower than normal types. Among a number of possibilities, the overall rate of crossbridge cycling may be less than normal and crossbridge head rotation may be slower. We reasoned that a greater than normal ratio of active elastic stiffness to total tension development in hypertrophy would be suggestive of an alteration from normal in crossbridge dynamics. We studied right ventricular septal papillary muscles from normal rabbits and from rabbits with hypertrophy induced by pulmonary artery constriction. A high level of mechanical activation was obtained by tetanizing the muscles in solutions containing caffeine. Small (less than or equal to 2% muscle length) and rapid (0.8 ms) length perturbations were applied to the preparations with a servo-controlled motor. Active elastic stiffness was estimated from the linear relationship of minimum (for releases) or maximum (for stretches) tension reached during a length change with muscle length change (strain). Although total tetanic tension development was normal in the hypertrophied muscles (p greater than 0.1), active elastic stiffness was greater than normal in hypertrophy (p less than 0.025).(ABSTRACT TRUNCATED AT 250 WORDS)
骨骼肌研究表明,在肌球蛋白横桥头部从附着的垂直状态(不产生力)旋转至附着的45度角状态(产生力)的速率较慢时,刚度与张力的比值会增加。在压力超负荷性心肌肥大中,最大缩短速度随三磷酸腺苷酶活性成比例降低。等长力产生的最大速率也低于正常水平,但主动等长力水平正常。肥大心肌的肌球蛋白同工酶主要转变为比正常类型更慢的类型。在多种可能性中,横桥循环的总体速率可能低于正常水平,且横桥头部旋转可能较慢。我们推断,肥大时主动弹性刚度与总张力发展的比值大于正常水平,这表明横桥动力学与正常情况有所改变。我们研究了正常家兔以及由肺动脉缩窄诱导产生肥大的家兔的右心室间隔乳头肌。通过在含咖啡因的溶液中对肌肉进行强直刺激来获得高水平的机械激活。用伺服控制电机对标本施加小幅度(小于或等于肌肉长度的2%)且快速(0.8毫秒)的长度扰动。根据长度变化期间达到的最小(对于释放)或最大(对于拉伸)张力与肌肉长度变化(应变)的线性关系来估计主动弹性刚度。尽管肥大肌肉的总强直张力发展正常(p>0.1),但肥大时主动弹性刚度大于正常水平(p<0.025)。(摘要截短于250字)