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Postnatal maturation of endogenous opioid systems within the periaqueductal grey and spinal dorsal horn of the rat

机译:大鼠导水管周围灰色和脊髓背角内源性阿片样物质系统的产后成熟

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摘要

Significant opioid-dependent changes occur during the fourth postnatal week in supraspinal sites (rostroventral medulla [RVM], periaqueductal grey [PAG]) that are involved in the descending control of spinal excitability via the dorsal horn (DH). Here we report developmentally regulated changes in the opioidergic signalling within the PAG and DH, which further increase our understanding of pain processing during early life. Microinjection of the μ-opioid receptor (MOR) agonist DAMGO (30 ng) into the PAG of Sprague-Dawley rats increased spinal excitability and lowered mechanical threshold to noxious stimuli in postnatal day (P)21 rats, but had inhibitory effects in adults and lacked efficacy in P10 pups. A tonic opioidergic tone within the PAG was revealed in adult rats by intra-PAG microinjection of CTOP (120 ng, MOR antagonist), which lowered mechanical thresholds and increased spinal reflex excitability. Spinal adminstration of DAMGO inhibited spinal excitability in all ages, yet the magnitude of this was greater in younger animals than in adults. The expression of MOR and related peptides were also investigated using TaqMan real-time polymerase chain reaction and immunohistochemistry. We found that pro-opiomelanocortin peaked at P21 in the ventral PAG, and MOR increased significantly in the DH as the animals aged. Enkephalin mRNA transcripts preceded the increase in enkephalin immunoreactive fibres in the superficial dorsal horn from P21 onwards. These results illustrate that profound differences in the endogenous opioidergic signalling system occur throughout postnatal development.
机译:阿片样物质依赖的重要变化发生在出生后的第四周,在脊髓上部位(rostroventral medulla [RVM],导水管周围的灰色[PAG]),这些部位通过背角(DH)参与了脊髓兴奋性的下降控制。在这里,我们报道了PAG和DH内部卵磷脂信号的发育调控变化,这进一步加深了我们对生命早期疼痛处理的理解。将微阿片受体(MOR)激动剂DAMGO(30 ng)微注射到Sprague-Dawley大鼠的PAG中可增加其脊髓兴奋性并降低出生后(P)21天大鼠的有害刺激的机械阈值,但对成年小鼠和成年小鼠具有抑制作用在P10幼崽中缺乏功效。 PAG内显微注射CTOP(120ng,MOR拮抗剂)可在成年大鼠中揭示PAG内的强直阿片肌张力,从而降低机械阈值并增加脊柱反射兴奋性。脊髓施用DAMGO在所有年龄段均能抑制脊髓兴奋性,但在幼小动物中,其兴奋程度要大于成年动物。还使用TaqMan实时聚合酶链反应和免疫组织化学研究了MOR和相关肽的表达。我们发现前opiomelanocortin在腹侧PAG的P21达到峰值,并且随着动物的衰老,MOR在DH中显着增加。从P21开始,在浅表背角中脑啡肽mRNA的转录本先于脑啡肽免疫反应性纤维的增加。这些结果说明,在整个出生后发育过程中,内源性阿片肌电信号系统发生了深远的差异。

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