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Hypoxia increases the release of salmon cardiac peptide (sCP) from the heart of rainbow trout (Oncorhynchus mykiss) under constant mechanical load in vitro

机译:缺氧增加了体外恒定机械负荷下虹鳟(Oncorhynchus mykiss)心脏中鲑鱼心脏肽(sCP)的释放

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摘要

Our aim was to study the effects of hypoxia on the release of salmon cardiac peptide (sCP) from an isolated heart ventricle of trout during a constant mechanical load. Trout heart ventricles were studied in vitro. The ventricle was placed in an organ bath at 12 A degrees C in which a constant mechanical load could be imposed on the ventricle while buffer solution was circulating. Ventricles were field-stimulated with a supramaximal voltage pulse at a rate of about 0.3 s(-1). Samples of 1 ml were collected at an interval of 10 min for 200 min from the organ bath and assessed with a radioimmunoassay for sCP. After a control period of 20 min, ventricles were exposed to hypoxia produced with N-2 gassing (n = 9) or to hypoxia with 20 mM BDM, a nonselective myosin ATPase inhibitor locking cross-bridges in a pre-power-stroke state inhibiting force production with normal electrical activity (n = 10). In this model and setup, hypoxia stimulated the release of sCP, but the interindividual variation in the response was large. At the end of hypoxia exposure, the concentration of sCP in the organ bath was about sixfold higher than at the start of the exposure (P < 0.05, one-way ANOVA for repeated measurements, followed by Dunnett's multiple comparison test). When BDM was introduced into the bath, the ventricle still secreted sCP but the hypoxic response was smaller than in the experiments without BDM. In the trout heart ventricle, there is a hypoxia-sensitive component in the release mechanism of sCP which is independent of contraction.
机译:我们的目的是研究在恒定的机械负荷下低氧对鳟鱼离体心脏心室中鲑鱼心脏肽(sCP)释放的影响。鳟鱼心室进行了体外研究。将心室置于12 A的器官浴中,在缓冲液循环的同时,可以对心室施加恒定的机械负荷。用最大电压脉冲以约0.3 s(-1)的速度对心室进行刺激。从器官浴中以10分钟为间隔的200分钟收集1 ml的样品,并用放射免疫法评估sCP。在20分钟的控制时间后,心室暴露于N-2充气产生的缺氧(n = 9)或20 mM BDM引起的缺氧,一种非选择性的肌球蛋白ATPase抑制剂将过桥锁定在卒中前状态抑制以正常的电活动(n = 10)产生力。在这种模型和设置中,低氧刺激了sCP的释放,但是个体间的反应差异很大。在低氧暴露结束时,器官浴中的sCP浓度比暴露开始时高约六倍(P <0.05,单向ANOVA用于重复测量,然后进行Dunnett多重比较测试)。当将BDM引入浴中时,心室仍分泌sCP,但缺氧反应比没有BDM的实验小。在鳟鱼的心室中,sCP的释放机制中存在缺氧敏感成分,与收缩无关。

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