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首页> 外文期刊>Pain. >Presynaptic low- and high-affinity kainate receptors in nociceptive spinal afferents.
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Presynaptic low- and high-affinity kainate receptors in nociceptive spinal afferents.

机译:伤害性脊髓传入神经突触前的低和高亲和力的海藻酸酯受体。

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Presynaptic ionotropic glutamate receptors are increasingly attributed a role in the modulation of sensory input at the first synapse of dorsal root ganglion (DRG) neurons in the spinal dorsal horn. Central terminals of DRG neurons express AMPA and NMDA receptors whose activation modulates the release of glutamate, the main transmitter at these synapses. Previous work, with an antibody that recognizes all low-affinity kainate receptor subunits (GluR5, 6, 7), provided microscopic evidence of presynaptic kainate receptors in unidentified primary afferent terminals in superficial laminae of the spinal dorsal horn (Hwang SJ, Pagliardini S, Rustioni A, Valtschanoff JG. Presynaptic kainate receptors in primary afferents to the superficial laminae of the rat spinal cord. J Comp Neurol 2001; 436: pp. 275-289). We show here that, although all such subunits may be expressed in these terminals, GluR5 is the subunit most readily detectable at presynaptic sites in sections processed for immunocytochemistry. We alsoshow that the high-affinity kainate receptor subunits KA1 and KA2 are expressed in central terminals of DRG neurons and are co-expressed with low-affinity receptor subunits in the same terminals. Quantitative data show that kainate-expressing DRG neurons are about six times more likely to express the P2X(3) subunit of the purinergic receptor than to express substance P. Thus, nociceptive afferents that express presynaptic kainate receptors are predominantly non-peptidergic, suggesting a role for these receptors in the modulation of neuropathic rather than inflammatory pain.
机译:突触前的离子型谷氨酸受体越来越多地归因于在脊髓背角的背根神经节(DRG)神经元的第一个突触中调节感觉输入的作用。 DRG神经元的中枢末端表达AMPA和NMDA受体,它们的激活调节谷氨酸的释放,谷氨酸是这些突触的主要递质。先前的工作,使用了一种识别所有低亲和力海藻酸酯受体亚基的抗体(GluR5、6、7),提供了脊髓背角浅层中未识别的初级传入末梢突触前海藻酸酯受体的微观证据(Hwang SJ,Pagliardini S, Rustioni A,Valtschanoff JG。大鼠脊髓浅表层初级传入神经突触前的海藻酸酯受体(J Comp Neurol 2001; 436:275-289)。我们在这里显示,尽管所有此类亚基都可能在这些末端表达,但GluR5是在为免疫细胞化学处理的切片中突触前位点最容易检测到的亚基。我们还显示,高亲和力海藻酸酯受体亚基KA1和KA2在DRG神经元的中央末端表达,并与低亲和力亚基受体亚单位在同一末端共表达。定量数据显示,表达海藻酸盐的DRG神经元表达嘌呤能受体的P2X(3)亚基的可能性是表达物质P的六倍。因此,表达突触前海藻酸盐受体的伤害性传入神经主要是非肽能的,提示这些受体在调节神经性而非炎症性疼痛中的作用。

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