Gillebert T C, Raes D F
Department of Physiology and Medicine, University of Antwerp, Belgium.
Am J Physiol. 1994 Nov;267(5 Pt 2):H1872-9. doi: 10.1152/ajpheart.1994.267.5.H1872.
It is widely believed that preload does not influence isometric relaxation and left ventricular pressure fall. Preload, however, alters cross-bridge interaction and intracellular Ca2+ handling. We therefore evaluated the effects of preload reduction on peak length-tension relation and on physiologically sequences isometric force decline. 1) Acute preload reduction resulted in a shift to the left of the peak length-tension relation, an earlier onset of force decline, and an increased rate of initial force decline. 2) Prolonged preload reduction was compared with acute preload reduction and resulted in an unchanged peak length-tension relation, a delayed onset of force decline, and a decreased initial rate of force decline. 3) Prolonged preload reduction was compared with baseline and resulted in a shift to the left of the peak length-tension relation, without predictable effects on timing or rate of force decline. Our hypothesis is that the findings reflected both changes in troponin C affinity for Ca2+ and altered Ca2+ reuptake by the sarcoplasmic reticulum.
人们普遍认为,前负荷不影响等长舒张和左心室压力下降。然而,前负荷会改变横桥相互作用和细胞内钙离子处理。因此,我们评估了降低前负荷对峰值长度-张力关系以及生理序列等长力下降的影响。1)急性降低前负荷导致峰值长度-张力关系向左偏移,力下降提前开始,初始力下降速率增加。2)将长期降低前负荷与急性降低前负荷进行比较,结果是峰值长度-张力关系不变,力下降延迟开始,初始力下降速率降低。3)将长期降低前负荷与基线进行比较,结果是峰值长度-张力关系向左偏移,对力下降的时间或速率没有可预测的影响。我们的假设是,这些发现反映了肌钙蛋白C对钙离子亲和力的变化以及肌浆网钙离子再摄取的改变。