首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Protective effects of sarpogrelate, a 5-HT2A antagonist, against postischemic myocardial dysfunction in guinea-pig hearts
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Protective effects of sarpogrelate, a 5-HT2A antagonist, against postischemic myocardial dysfunction in guinea-pig hearts

机译:5-HT2A拮抗剂沙普格雷酯对豚鼠心脏缺血后心肌功能障碍的保护作用

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摘要

The protective effects of sarpogrelate (SG), a 5-HT2A antagonist, were investigated in perfused guinea-pig Langendorff hearts subjected to ischemia and reperfusion. Changes in cellular levels of high phosphorous energy, NO and Ca2+ in the heart together with simultaneous recordings of left ventricular developed pressure (LVDP) were monitored using an nitric oxide ( NO) electrode, fluorometry and P-31-NMR. The recovery of LVDP from ischemia by reperfusion was 30.1% in the control, while the treatment with SG (5 x 10(-7) M) in pre- and post-ischemia hearts produced a gradual increase to 73.1 and 53.6%, respectively. At the final stage of ischemia, the intracellular concentration of Ca2+ ([Ca2+](i)) and release of NO increased with no twitching and remained at a high steady level. The addition of SG increased the transient NO signal (T-NO) level at the end of ischemia compared with the control, but [Ca2+](i) during ischemia decreased. Meanwhile, mitochondrial Ca2+ uptake on acidification or Ca2+ content changes of the perfusate was suppressed by pre- treatment with SG or the K-ATP channel opener diazoxide, but not the K-ATP channel blocker 5-HD. The myocardial NO elevated with 5-HT in normal Langendorff hearts was suppressed by the treatment with SG. Therefore, the existence of the 5HT(2A) receptor in a Langendorff heart was anticipated. By in vitro EPR, SG was found to directly quench the hydroxy radical. Thus, these findings suggested that the 5-HT2A receptor induced in ischemia - reperfusion plays an important role in the mitochondrial K-ATP channel of hearts in close relation with NO and active oxygen radicals.
机译:沙普格雷酯(SG),一种5-HT2A拮抗剂的保护作用,在遭受缺血和再灌注的豚鼠Langendorff心脏中进行了研究。使用一氧化氮(NO)电极,荧光法和P-31-NMR监测心脏中高磷能,NO和Ca2 +的细胞水平变化以及同时记录左心室发达压力(LVDP)。在对照组中,通过再灌注从缺血中恢复的LVDP为30.1%,而在缺血前和缺血后心脏中用SG(5 x 10(-7)M)治疗分别逐渐增加至73.1和53.6%。在缺血的最后阶段,细胞内Ca2 +([Ca2 +](i))的浓度和NO的释放没有抽动而增加,并保持在较高的稳定水平。与对照组相比,SG的添加在缺血结束时增加了瞬时NO信号(T-NO)的水平,但缺血期间的[Ca2 +](i)降低了。同时,通过用SG或K-ATP通道开放剂二氮嗪(而不是K-ATP通道封闭剂5-HD)预处理,可以抑制线粒体对酸化的Ca2 +吸收或灌注液中Ca2 +含量的变化。 SG治疗可抑制正常Langendorff心脏中5-HT升高的心肌NO。因此,人们预期在Langendorff心脏中存在5HT(2A)受体。通过体外EPR,发现SG直接淬灭了羟基自由基。因此,这些发现表明,在缺血-再灌注中诱导的5-HT 2A受体在心脏的线粒体K-ATP通道中与NO和活性氧自由基密切相关。

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