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首页> 外文期刊>Basic Research in Cardiology >K201 (JTV-519) alters the spatiotemporal properties of diastolic Ca2+ release and the associated diastolic contraction during β-adrenergic stimulation in rat ventricular cardiomyocytes
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K201 (JTV-519) alters the spatiotemporal properties of diastolic Ca2+ release and the associated diastolic contraction during β-adrenergic stimulation in rat ventricular cardiomyocytes

机译:K201(JTV-519)改变大鼠心室心肌细胞在β-肾上腺素刺激过程中舒张性Ca 2 + 释放的时空特性及相关的舒张收缩

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摘要

K201 has previously been shown to reduce diastolic contractions in vivo during β-adrenergic stimulation and elevated extracellular calcium concentration ([Ca2+]o). The present study characterised the effect of K201 on electrically stimulated and spontaneous diastolic sarcoplasmic reticulum (SR)-mediated Ca2+ release and contractile events in isolated rat cardiomyocytes during β-adrenergic stimulation and elevated [Ca2+]o. Parallel experiments using confocal microscopy examined spontaneous diastolic Ca2+ release events at an enhanced spatiotemporal resolution. 1.0 μmol/L K201 in the presence of 150 nmol/L isoproterenol (ISO) and 4.75 mmol/L [Ca2+]o significantly decreased the amplitude of diastolic contractions to ~16% of control levels. The stimulated free Ca2+ transient amplitude was significantly reduced, but stimulated cell shortening was not significantly altered. When intracellular buffering was taken into account, K201 led to an increase in action potential-induced SR Ca2+ release. Myofilament sensitivity to Ca2+ was not changed by K201. Confocal microscopy revealed diastolic events composed of multiple Ca2+ waves (2–3) originating at various points along the cardiomyocyte length during each diastolic period. 1.0 μmol/L K201 significantly reduced the (a) frequency of diastolic events and (b) initiation points/diastolic interval in the remaining diastolic events to 61% and 71% of control levels respectively. 1.0 μmol/L K201 can reduce the probability of spontaneous diastolic Ca2+ release and their associated contractions which may limit the propensity for the contractile dysfunction observed in vivo.
机译:先前已证明K201可以降低β-肾上腺素刺激期间体内的舒张收缩,并增加细胞外钙浓度([Ca 2 + ] o )。本研究的特征是K201对电刺激和自发性舒张肌浆网(SR)介导的β-肾上腺素刺激期间离体大鼠心肌细胞Ca 2 + 释放和收缩事件的影响> 2 + ] o 。使用共聚焦显微镜的并行实验以增强的时空分辨率检查了自发性舒张期Ca 2 + 的释放事件。在150 nmol / L异丙肾上腺素(ISO)和4.75 mmol / L [Ca 2 + ] o 的存在下,1.0μmol/ L K201可以显着降低舒张压收缩幅度至控制水平的〜16%。刺激的游离Ca 2 + 的瞬时幅度明显降低,但刺激的细胞缩短没有明显改变。考虑细胞内缓冲作用,K201导致动作电位诱导的SR Ca 2 + 释放增加。 K201没有改变肌丝对Ca 2 + 的敏感性。共聚焦显微镜检查发现舒张期事件由多个Ca 2 + 波(2–3)组成,这些波起源于每个舒张期沿心肌细胞长度的不同点。 1.0μmol/ L K201可将(a)舒张事件的发生频率和(b)其余舒张事件中的起始点/舒张间隔分别降低至对照水平的61%和71%。 1.0μmol/ L K201可降低舒张性Ca 2 + 的自发释放及其相关的收缩,这可能会限制体内观察到的收缩功能障碍的倾向。

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