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虹鳟(Oncorhynchus mykiss)心脏心房和心室心肌的收缩特性:温度驯化的影响

Contractile properties of atrial and ventricular myocardium of the heart of rainbow trout oncorhynchus mykiss: effects of thermal acclimation.

作者信息

Aho E, Vornanen M

出版信息

J Exp Biol. 1999 Oct;202 (Pt 19):2663-77. doi: 10.1242/jeb.202.19.2663.

Abstract

Atrial and ventricular myocardium perform different tasks in the pumping work of the vertebrate heart, which are reflected in their contractile properties. Although atrial contraction is assumed to have an important role in the function of fish heart, the contractile properties of atrial and ventricular myocardium have not been directly compared in any fish species. The objective of this study was to clarify any contractile differences in the heart of teleost fish and, in particular, to elucidate the contribution of myofibrillar ATPase and intracellular Ca(2+) stores to the characteristics of atrial and ventricular contraction. Experiments were conducted on thermally acclimated rainbow trout Oncorhynchus mykiss to determine whether the effects of temperature adaptation are the same in atrial and ventricular tissue. It was shown that the rate of isometric contraction is much faster in atrial than in ventricular tissue of the fish heart and that acclimation to cold increases the rate of contraction in both cardiac compartments. The rapid contraction kinetics of the atrial tissue were associated with higher myofibrillar ATPase activity and faster Ca(2+) uptake rate of the sarcoplasmic reticulum (SR) compared with ventricular tissue. Similarly, the faster kinetics of contraction following cold acclimation could be attributed to enhancement of the myofibrillar and/or SR function. The atrio-ventricular and temperature-induced differences were also expressed in the recovery of force from inactivation, i.e. in the mechanical restitution. The refractory period and the rate constant of force restitution were shorter in atrial than in ventricular muscle tissue. Similar differences also existed between the tissues of cold-acclimated (CA, 4 degrees C) and warm-acclimated (WA, 17 degrees C) fish. The fast recovery of force from inactivation in the heart of the CA trout was, at least in part, due to more active SR. Furthermore, it was shown that the force of atrial contraction in the CA trout is sensitive to ryanodine (10 (&mgr;)mol l(-)(1)), a Ca(2+)-release channel blocker of SR, at physiological body temperature (4 degrees C) and at a physiological pacing rate (0.6 Hz). This finding indicates that the Ca(2+) stores of SR contribute to activation of cardiac contraction in the fish heart, and that the SR of fish heart is able to retain its Ca(2+) load at low body temperatures, i.e. the Ca(2+ )release channels of SR are not leaky in the cold. The present data show that in the atrial tissue of CA trout, the SR directly contributes to the cytosolic Ca(2+) and that in the atrium and ventricle of CA trout, the SR significantly accelerates the recovery of contractility from inactivation. The fast recovery from inactivation allows relatively high heart rates and therefore adequate cardiac outputs at low environmental temperatures for the cold-active rainbow trout.

摘要

在脊椎动物心脏的泵血工作中,心房肌和心室肌执行不同的任务,这体现在它们的收缩特性上。虽然心房收缩被认为在鱼类心脏功能中起重要作用,但在任何鱼类中,心房肌和心室肌的收缩特性尚未被直接比较。本研究的目的是阐明硬骨鱼心脏中的收缩差异,特别是阐明肌原纤维ATP酶和细胞内Ca(2+)储备对心房和心室收缩特性的贡献。对热适应的虹鳟鱼(Oncorhynchus mykiss)进行实验,以确定温度适应在心房和心室组织中的影响是否相同。结果表明,鱼心脏心房组织等长收缩速率比心室组织快得多,并且冷适应会增加两个心脏腔室的收缩速率。与心室组织相比,心房组织快速的收缩动力学与更高的肌原纤维ATP酶活性和肌浆网(SR)更快的Ca(2+)摄取速率相关。同样,冷适应后更快的收缩动力学可归因于肌原纤维和/或SR功能的增强。房室和温度诱导的差异也表现在从失活恢复力的过程中,即机械恢复过程中。心房肌组织的不应期和力恢复的速率常数比心室肌组织短。冷适应(CA,4℃)和暖适应(WA,17℃)鱼的组织之间也存在类似差异。CA虹鳟鱼心脏中力从失活状态的快速恢复至少部分归因于更活跃的SR。此外,研究表明,在生理体温(4℃)和生理起搏频率(0.6Hz)下,CA虹鳟鱼心房收缩力对ryanodine(10(&mgr;)mol l(-)(1))敏感,ryanodine是SR的Ca(2+)释放通道阻滞剂。这一发现表明,SR的Ca(2+)储备有助于鱼类心脏收缩的激活,并且鱼类心脏的SR能够在低温下保留其Ca(2+)负荷,即SR的Ca(2+)释放通道在寒冷环境中不会渗漏。目前的数据表明,在CA虹鳟鱼的心房组织中,SR直接有助于胞质Ca(2+),并且在CA虹鳟鱼的心房和心室中,SR显著加速收缩力从失活状态的恢复。从失活状态的快速恢复允许相对较高的心率,因此对于冷适应的虹鳟鱼来说,在低环境温度下有足够的心输出量。

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