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首页> 外文期刊>Brain research. Molecular brain research >Activation of ATP-sensitive potassium channels prevents the cleavage of cytosolic mu-calpain and abrogates the elevation of nuclear c-Fos and c-Jun expressions after hypoxic-ischemia in neonatal rat brain.
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Activation of ATP-sensitive potassium channels prevents the cleavage of cytosolic mu-calpain and abrogates the elevation of nuclear c-Fos and c-Jun expressions after hypoxic-ischemia in neonatal rat brain.

机译:ATP敏感性钾通道的激活可防止新生鼠脑缺氧缺血后胞质mu-calpain的裂解,并消除核c-Fos和c-Jun表达的升高。

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The purpose of this study was to determine whether activation of ATP-sensitive K+ (KATP) channels with diazoxide (DIZ) is able to prevent the cleavage of cytosolic mu-calpain and abrogate the elevation of nuclear c-Fos and c-Jun protein (c-Fos, c-Jun) expressions after hypoxic-ischemia (HI) in brain. The model of hypoxic-ischemic brain injury (HIBI) was made in the 7-day-old Sprague-Dawley (SD) rats by left carotid arterial ligation and hypoxia (8% oxygen). DIZ was injected into the left lateral ventricle (5 microl, 1 mg/ml) before or post-hypoxic-ischemia (HI) insults. Western blot and computer image processing were used to detect the integrated density of nuclear c-Fos and c-Jun at 4 h and cleavage of cytosolic mu-calpain at 24 h after HI insults from cerebral cortical and hippocampal samples. Compared with HI controls (c-Fos=30.37+/-7.39 from cortical samples, 58.61+/-3.64 from hippocampal samples; c-Jun=52.48+/-14.23 from cortical samples, 35.55+/-4.73 from hippocampal samples), there was a significant down-regulation of c-Fos and c-Jun expressions from cortical and hippocampal samples in rats treated with DIZ before (c-Fos=11.10+/-4.64 from cortical samples, 4.82+/-3.38 from hippocampal samples; c-Jun=19.01+/-5.29 from cortical samples, 35.55+/-4.73 from hippocampal samples) or post- (c-Fos=18.81+/-7.93 from cortical samples, 11.33+/-7.05 from hippocampal samples; c-Jun=24.64+/-10.01 from cortical samples, 19.75+/-3.47 from hippocampal samples) HI insults. Furthermore, the ratio of 76 kD/80 kD of mu-calpain was down-regulated from cortical and hippocampal samples in rats treated with DIZ before or post-HI insults, demonstrating a significant difference compared with that observed in HI controls. Finally, the increase in DNA fragments caused by the HI injury was decreased or eliminated by the treatment with DIZ. These data suggests that activation of KATP channels by DIZ reduces the degree of mu-calpain proteolysis, and c-Fos and c-Jun expressions in immature brain may contribute to the neuroprotection of K(ATP) channel openers against HIBI.
机译:这项研究的目的是确定用二氮嗪(DIZ)激活ATP敏感的K +(KATP)通道是否能够阻止胞质mu-calpain的裂解并消除核c-Fos和c-Jun蛋白的升高(缺氧缺血(HI)后脑中的c-Fos,c-Jun)表达。在7天大的Sprague-Dawley(SD)大鼠中,通过左颈动脉结扎和缺氧(8%氧气)建立了缺氧缺血性脑损伤(HIBI)模型。在缺氧缺血(HI)损伤之前或之后,将DIZ注射到左外侧脑室(5 microl,1 mg / ml)。 HI损伤脑皮质和海马样本后,在4 h时使用Western blot和计算机图像处理技术检测核c-Fos和c-Jun的整合密度,并在24 h时检测胞质mu-calpain的裂解。与HI对照相比(皮质样品的c-Fos = 30.37 +/- 7.39,海马样品的c-Fos = 58.61 +/- 3.64;皮质样品的c-Jun = 52.48 +/- 14.23,海马样品的c-Jun = 52.48 +/- 14.23),在用DIZ处理的大鼠中,皮质和海马样品的c-Fos和c-Jun表达显着下调(皮质样品的c-Fos = 11.10 +/- 4.64,海马样品的4.82 +/- 3.38;皮质样品的c-Jun = 19.01 +/- 5.29,海马样品的c-Jun = 19.01 / + /-5.23)或之后(皮质样品的c-Fos = 18.81 +/- 7.93,海马样品的11.33 +/- 7.05; c-从皮质样品中Jun = 24.64 +/- 10.01,从海马样品中Jun = 24.64 +/- 10.01)HI损伤。此外,在HI损伤之前或之后,用DIZ处理的大鼠的皮质和海马样品中的mu-calpain的比例为76 kD / 80 kD,下调,与HI对照相比,显示出显着差异。最后,由HI损伤引起的DNA片段的增加通过用DIZ处理而减少或消除。这些数据表明DIZ激活KATP通道可降低mu-钙蛋白酶的蛋白水解程度,未成熟脑中c-Fos和c-Jun的表达可能有助于K(ATP)通道开放剂对HIBI的神经保护。

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