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Decreased spinal endomorphin-2 contributes to mechanical allodynia in streptozotocin-induced diabetic rats

机译:脊髓内骨膜减少有助于链脲佐菌素诱导的糖尿病大鼠机械异常育种

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摘要

Diabetic neuropathic pain (DNP) plays a major role in decreased life quality of diabetes patients, however, the neural mechanisms underlying DNP remain unclear. Endomorphins are the endogenous ligands for mu-opioid receptor. There is increasing evidence implicating the involvement of spinal endomorphin-2 (EM2) in neuropathic pain. In this study, using a streptozotocin induced diabetic rat model that displayed obvious mechanical allodynia, it was found that the expression of spinal EM2 was significantly decreased in DNP rats. While intrathecal administration of exogenous EM2 attenuated mechanical allodynia in DNP rats, the mu-opioid receptor antagonist beta-funaltrexamine facilitated these events. It was found that the reduction in spinal EM2 was mediated by increased activity of dipepti-dylpeptidase IV, possibly as a consequence of diabetes-induced oxidative stress. Taken together, our results provide the first evidence that the reduction in the level of an endogenous opioid in primary afferents was significantly associated with DNP. This indicates that the chronic pain associated with DNP might be due to the loss of an inhibitory effect on pain signal transmission. (C) 2017 Elsevier Ltd. All rights reserved.
机译:糖尿病神经病疼痛(DNP)在降低糖尿病患者的生活质量下发挥着重要作用,然而,DNP的神经机制仍然尚不清楚。 Endomorphins是Mu-阿片受体的内源性配体。越来越多的证据暗示脊髓内骨-2(EM2)在神经性疼痛中的参与。在本研究中,使用展示明显的机械异常的链脲佐菌素诱导的糖尿病大鼠模型,发现DNP大鼠脊柱EM2的表达显着降低。虽然在DNP大鼠中鞘内施用外源EM2减毒的机械异常性疼痛,但MU-阿片类受体拮抗剂β-粪便抑制剂促进了这些事件。发现,由于糖尿病诱导的氧化应激的结果,通过Dipepti-Dylpeptidase IV的活性增加,脊柱EM2的还原介导。我们的结果占据,我们的结果提供了第一证据表明,主要传入中的内源阿片类药物水平的降低与DNP显着相关。这表明与DNP相关的慢性疼痛可能是由于抑制疼痛信号传输的抑制作用。 (c)2017 Elsevier Ltd.保留所有权利。

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