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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Supersensitivity of P2X receptors in cerebrocortical cell cultures after in vitro ischemia.
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Supersensitivity of P2X receptors in cerebrocortical cell cultures after in vitro ischemia.

机译:体外缺血后脑皮质细胞培养物中P2X受体的超敏性。

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摘要

Neuronally enriched primary cerebrocortical cultures were exposed to glucose-free medium saturated with argon (in vitro ischemia) instead of oxygen (normoxia). Ischemia did not alter P2X7 receptor mRNA, although serum deprivation clearly increased it. Accordingly, P2X7 receptor immunoreactivity (IR) of microtubuline-associated protein 2 (MAP2)-IR neurons or of glial fibrillary acidic protein (GFAP)-IR astrocytes was not affected; serum deprivation augmented the P2X7 receptor IR only in the astrocytic, but not the neuronal cell population. However, ischemia markedly increased the ATP- and 2'-3'-O-(4-benzoylbenzoyl)-adenosine 5'-triphosphate (BzATP)-induced release of previously incorporated [3H]GABA. Both Brilliant Blue G and oxidized ATP inhibited the release of [3H]GABA caused by ATP application; the Brilliant Blue G-sensitive, P2X7 receptor-mediated fraction, was much larger after ischemia than after normoxia. Whereas ischemic stimulation failed to alter the amplitude of ATP- and BzATP-induced small inward currents recorded from a subset of non-pyramidal neurons, BzATP caused a more pronounced increase in the frequency of miniature inhibitory postsynaptic currents (mIPSCs) after ischemia than after normoxia. Brilliant Blue G almost abolished the effect of BzATP in normoxic neurons. Since neither the amplitude of mIPSCs nor that of the muscimol-induced inward currents was affected by BzATP, it is assumed that BzATP acts at presynaptic P2X7 receptors. Finally, P2X7 receptors did not enhance the intracellular free Ca2+ concentration either in proximal dendrites or in astrocytes, irrespective of the normoxic or ischemic pre-incubation conditions. Hence, facilitatory P2X7 receptors may be situated at the axon terminals of GABAergic non-pyramidal neurons. When compared with normoxia, ischemia appears to markedly increase P2X7 receptor-mediated GABA release, which may limit the severity of the ischemic damage. At the same time we did not find an accompanying enhancement of P2X7 mRNA or protein expression, suggesting that receptors may become hypersensitive because of an increased efficiency of their transduction pathways.
机译:将富含神经元的原始脑皮质培养物暴露于充满氩气的无葡萄糖培养基(体外缺血),而不是氧气(正常氧)。缺血并没有改变P2X7受体的mRNA,尽管血清剥夺明显增加了它。因此,微管相关蛋白2(MAP2)-IR神经元或神经胶质原纤维酸性蛋白(GFAP)-IR星形胶质细胞的P2X7受体免疫反应(IR)不受影响;血清剥夺仅在星形胶质细胞中增加P2X7受体IR,而在神经元细胞群体中不增加。但是,局部缺血明显增加了ATP和2'-3'-O-(4-苯甲酰基苯甲酰基)-腺苷5'-三磷酸(BzATP)诱导的先前并入的[3H] GABA的释放。亮蓝G和氧化的ATP均抑制ATP施加引起的[3H] GABA的释放;亮蓝G敏感,P2X7受体介导的分数,缺血后比常氧后大得多。缺血性刺激未能改变从非锥体神经元子集记录的ATP和BzATP诱导的小内向电流的幅度,而BzATP引起的缺血后微型抑制性突触后电流(mIPSC)的频率比常氧后明显增加。 。灿烂的蓝G几乎消除了BzATP在常氧神经元中的作用。由于mIPSCs的幅度和muscimol诱导的内向电流均不受BzATP的影响,因此可以假定BzATP作用于突触前P2X7受体。最后,无论常氧或缺血预培养条件如何,P2X7受体都不会提高近端树突状细胞或星形胶质细胞中细胞内游离Ca2 +的浓度。因此,促进性P2X7受体可能位于GABA能的非锥体神经元的轴突末端。与常氧相比,缺血似乎显着增加了P2X7受体介导的GABA释放,这可能会限制缺血性损伤的严重程度。同时,我们没有发现伴随的P2X7 mRNA或蛋白质表达的增强,这表明受体可能由于其转导途径效率的提高而变得过敏。

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