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P2X7受体参与大鼠海马体中神经递质释放的调节。

Involvement of P2X7 receptors in the regulation of neurotransmitter release in the rat hippocampus.

作者信息

Sperlágh Beáta, Köfalvi Attila, Deuchars Jim, Atkinson Lucy, Milligan Carol J, Buckley Noel J, Vizi E Sylvester

机构信息

Institute of Experimental Medicine, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

J Neurochem. 2002 Jun;81(6):1196-211. doi: 10.1046/j.1471-4159.2002.00920.x.

DOI:10.1046/j.1471-4159.2002.00920.x
PMID:12068068
Abstract

Although originally cloned from rat brain, the P2X7 receptor has only recently been localized in neurones, and functional responses mediated by these neuronal P2X7 receptors (P2X7 R) are largely unknown. Here we studied the effect of P2X7 R activation on the release of neurotransmitters from superfused rat hippocampal slices. ATP (1-30 mm) and other ATP analogues elicited concentration-dependent [3 H]GABA outflow, with the following rank order of potency: benzoylbenzoylATP (BzATP) > ATP > ADP. PPADS, the non-selective P2-receptor antagonist (3-30 microm), Brilliant blue G (1-100 nm) the P2X7 -selective antagonist and Zn2+ (0.1-30 microm) inhibited, whereas lack of Mg2+ potentiated the response by ATP. In situ hybridization revealed that P2X7 R mRNA is expressed in the neurones of the cell body layers in the hippocampus. P2X7 R immunoreactivity was found in excitatory synaptic terminals in CA1 and CA3 region targeting the dendrites of pyramidal cells and parvalbumin labelled structures. ATP (3-30 microm) and BzATP (0.6-6 microm) elicited concentration-dependent [14 C]glutamate efflux, and blockade of the kainate receptor-mediated transmission by CNQX (10-100 microm) and gadolinium (100 microm), decreased ATP evoked [3 H]GABA efflux. The Na+ channel blocker TTX (1 microm), low temperature (12 degrees C), and the GABA uptake blocker nipecotic acid (1 mm) prevented ATP-induced [3 H]GABA efflux. Brilliant blue G and PPADS also reduced electrical field stimulation-induced [3 H]GABA efflux. In conclusion, P2X7 Rs are localized to the excitatory terminals in the hippocampus, and their activation regulates the release of glutamate and GABA from themselves and from their target cells.

摘要

尽管P2X7受体最初是从大鼠脑中克隆出来的,但直到最近才在神经元中定位,而且这些神经元P2X7受体(P2X7R)介导的功能反应在很大程度上还不清楚。在这里,我们研究了P2X7R激活对灌流大鼠海马切片神经递质释放的影响。ATP(1 - 30 mM)和其他ATP类似物引起浓度依赖性的[3H]GABA流出,其效力顺序如下:苯甲酰苯甲酰ATP(BzATP)> ATP > ADP。非选择性P2受体拮抗剂PPADS(3 - 30 μM)、P2X7选择性拮抗剂亮蓝G(1 - 100 nM)和Zn2 +(0.1 - 30 μM)可抑制,而缺乏Mg2 +则增强ATP的反应。原位杂交显示P2X7R mRNA在海马体胞体层的神经元中表达。在靶向锥体细胞树突和小白蛋白标记结构的CA1和CA3区域的兴奋性突触终末中发现了P2X7R免疫反应性。ATP(3 - 30 μM)和BzATP(0.6 - 6 μM)引起浓度依赖性的[14C]谷氨酸流出,并且CNQX(10 -

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