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大鼠背根神经节肽能伤害感受器对α7烟碱型乙酰胆碱受体的功能表达及轴突运输

Functional expression and axonal transport of α7 nAChRs by peptidergic nociceptors of rat dorsal root ganglion.

作者信息

Shelukhina Irina, Paddenberg Renate, Kummer Wolfgang, Tsetlin Victor

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry RAS, Miklukho-Maklaya str., 16/10, 117997, Moscow, Russia,

出版信息

Brain Struct Funct. 2015 Jul;220(4):1885-99. doi: 10.1007/s00429-014-0762-4. Epub 2014 Apr 5.

Abstract

In recent pain studies on animal models, α7 nicotinic acetylcholine receptor (nAChR) agonists demonstrated analgesic, anti-hyperalgesic and anti-inflammatory effects, apparently acting through some peripheral receptors. Assuming possible involvement of α7 nAChRs on nociceptive sensory neurons, we investigated the morphological and neurochemical features of the α7 nAChR-expressing subpopulation of dorsal root ganglion (DRG) neurons and their ability to transport α7 nAChR axonally. In addition, α7 receptor activity and its putative role in pain signal neurotransmitter release were studied. Medium-sized α7 nAChR-expressing neurons prevailed, although the range covered all cell sizes. These cells accounted for one-fifth of total medium and large DRG neurons and <5% of small ones. 83.2% of α7 nAChR-expressing DRG neurons were peptidergic nociceptors (CGRP-immunopositive), one half of which had non-myelinated C-fibers and the other half had myelinated Aδ- and likely Aα/β-fibers, whereas 15.2% were non-peptidergic C-fiber nociceptors binding isolectin B4. All non-peptidergic and a third of peptidergic α7 nAChR-bearing nociceptors expressed TRPV1, a capsaicin-sensitive noxious stimulus transducer. Nerve crush experiments demonstrated that CGRPergic DRG nociceptors axonally transported α7 nAChRs both to the spinal cord and periphery. α7 nAChRs in DRG neurons were functional as their specific agonist PNU282987 evoked calcium rise enhanced by α7-selective positive allosteric modulator PNU120596. However, α7 nAChRs do not modulate neurotransmitter CGRP and glutamate release from DRG neurons since nicotinic ligands affected neither their basal nor provoked levels, showing the necessity of further studies to elucidate the true role of α7 nAChRs in those neurons.

摘要

在近期针对动物模型的疼痛研究中,α7烟碱型乙酰胆碱受体(nAChR)激动剂表现出镇痛、抗痛觉过敏和抗炎作用,显然是通过一些外周受体发挥作用。假设α7 nAChRs可能存在于伤害性感觉神经元上,我们研究了背根神经节(DRG)神经元中表达α7 nAChR的亚群的形态学和神经化学特征,以及它们向轴突运输α7 nAChR的能力。此外,还研究了α7受体活性及其在疼痛信号神经递质释放中的假定作用。虽然细胞大小范围涵盖了所有类型,但以中等大小且表达α7 nAChR的神经元为主。这些细胞占DRG中、大型神经元总数的五分之一,占小型神经元的比例不到5%。83.2%表达α7 nAChR的DRG神经元是肽能伤害感受器(CGRP免疫阳性),其中一半有无髓鞘C纤维,另一半有髓鞘Aδ纤维以及可能的Aα/β纤维,而15.2%是结合异凝集素B4的非肽能C纤维伤害感受器。所有非肽能以及三分之一的携带α7 nAChR的肽能伤害感受器都表达TRPV1,这是一种对辣椒素敏感的伤害性刺激转导器。神经挤压实验表明,CGRP能DRG伤害感受器将α7 nAChRs轴突运输到脊髓和外周。DRG神经元中的α7 nAChRs具有功能,因为其特异性激动剂PNU282987诱发的钙升高可被α7选择性正变构调节剂PNU120596增强。然而,α7 nAChRs并不调节DRG神经元中神经递质CGRP和谷氨酸的释放,因为烟碱样配体既不影响其基础水平也不影响其激发水平,这表明有必要进一步研究以阐明α7 nAChRs在这些神经元中的真正作用。

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