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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >The effects of hydrogen peroxide on intracellular calcium handling and contractility in the rat ventricular myocyte.
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The effects of hydrogen peroxide on intracellular calcium handling and contractility in the rat ventricular myocyte.

机译:过氧化氢对大鼠心室肌细胞内钙离子处理和收缩力的影响。

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Elevations in reactive oxygen species are implicated in many disease states and cause systolic and diastolic myocardial dysfunction. To understand the underlying cellular dysfunction, we characterised the effects of HO on [Ca(2+)](i) handling and contractility in the rat ventricular myocyte. This was achieved using patch clamping, [Ca(2+)](i) measurement using Fluo-3, video edge detection and confocal microscopy. All experiments were performed at 37 degrees C. 200 muM HO resulted in a 44% decrease in the [Ca(2+)](i) transient amplitude, a 30% increase in diastolic [Ca(2+)](i) and an 18% decrease in the rate of systolic Ca(2+) removal. This was associated with a 61% reduction in systolic shortening, a contracture of 3 mum and a 42% increase in relaxation time respectively. The decrease in the [Ca(2+)](i) transient amplitude could be explained by a 27% decrease in SR Ca(2+) content. This, in turn results from a 22% decrease of SERCA activity. The decreased SR Ca(2+) content also provides a mechanism for a reduction in [Ca(2+)](i) spark frequency with no evidence for a Ca(2+) independent modification of ryanodine receptor open probability. We conclude that decreased SERCA activity is the major factor responsible for the changes of the systolic [Ca(2+)](i) transient.
机译:活性氧物种的升高与许多疾病状态有关,并导致收缩和舒张心肌功能障碍。为了了解潜在的细胞功能障碍,我们表征了HO对大鼠心室肌细胞中[Ca(2 +)](i)处理和收缩的影响。这是通过使用膜片钳,使用Fluo-3的[Ca(2 +)](i)测量,视频边缘检测和共聚焦显微镜来实现的。所有实验均在37摄氏度下进行。200μMHO导致[Ca(2 +)](i)瞬态振幅降低44%,舒张性[Ca(2 +)](i)和30%升高收缩期Ca(2+)去除率降低18%。这分别与收缩期缩短减少61%,挛缩3毫米和放松时间增加42%有关。 [Ca(2 +)](i)瞬态幅度的降低可以用SR Ca(2+)含量降低27%来解释。反过来,这是由于SERCA活性降低了22%。减少的SR Ca(2+)含量还提供了一种减少[Ca(2 +)](i)火花频率的机制,而没有证据表明ryanodine受体的打开概率独立于Ca(2+)。我们得出的结论是,SERCA活性降低是导致收缩期[Ca(2 +)](i)瞬变变化的主要因素。

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