首页> 外文期刊>The Journal of Physiology >GABAergic transmission and enhanced modulation by opioids and endocannabinoids in adult rat rostral ventromedial medulla
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GABAergic transmission and enhanced modulation by opioids and endocannabinoids in adult rat rostral ventromedial medulla

机译:阿片类药物和Endocannaboids在成人大鼠rostral enverromedial medulla的胃癌和Endocannaboids的增强调节

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Neurons in the rostral ventromedial medulla (RVM) play critical and complex roles in pain modulation. Recent studies have shown that electrical stimulation of the RVM produces pain facilitation in young animals (postnatal (PN) day<21) but predominantly inhibits pain behaviours in adults. The cellular mechanisms underlying these changes in RVM modulation of pain behaviours are not known. This is in part because whole-cell patch-clamp studies in RVM to date have been in young (PN day < 18) animals because the organization and abundance of myelinated fibres in this region make the RVM a challenging area for whole-cell patch-clamp recording in adults. Several neurotransmitter systems, including GABAergic neurotransmission, undergo developmental changes that mature by PN day 21. Thus, we focused on optimizing whole-cell patch-clamp recordings for RVM neurons in animals older than PN day 30 and compared the results to animals at PN day 10-21. Our results demonstrate that the probability of GABA release is lower and that opioid and endocannabinoid effects are more evident in adult rats (mature) compared to early postnatal (immature) rats. Differences in these properties of RVM neurons may contribute to the developmental changes in descending control of pain from the RVM to the spinal cord.
机译:鼻腔内髓质髓质(RVM)中的神经元在疼痛调节中起重要和复杂的作用。最近的研究表明,RVM的电刺激在幼小动物中产生疼痛促进(产后(PN)第21天<21),但主要抑制成年人中的疼痛行为。疼痛行为RVM调制的这些变化的细胞机制尚不清楚。这部分是部分原因在RVM迄今为止的全细胞补丁钳研究已经在年轻(PN日<18)动物中,因为该区域中的髓鞘纤维的组织和丰度使RVM成为全细胞补丁的具有挑战性的区域成人夹具录音。一些神经递质系统,包括GABA能神经传递,经过由21天PN成熟。因此发展变化,我们专注于动物比30 PN天早优化全细胞膜片钳记录RVM的神经元相比较的结果,在动物PN天10-21。我们的结果表明,与早期产后(未成熟)大鼠相比,GABA释放的概率较低,阿片类药物和内瘤化蛋白效应在成年大鼠(成熟)中更明显。 RVM神经元这些性质的差异可能导致从RVM到脊髓疼痛的下降控制的发育变化。

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