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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A Nociceptive Role for Integrin Signaling in Pain After Mechanical Injury to the Spinal Facet Capsular Ligament
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A Nociceptive Role for Integrin Signaling in Pain After Mechanical Injury to the Spinal Facet Capsular Ligament

机译:在机械损伤后对脊髓荚膜囊韧带的疼痛中整合素信号传导的伤害作用

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摘要

Abstract Integrins modulate chemically-induced nociception in a variety of inflammatory and neuropathic pain models. Yet, the role of integrins in mechanically-induced pain remains undefined, despite its well-known involvement in cell adhesion and mechanotransduction. Excessive spinal facet capsular ligament stretch is a common injury that induces morphological and functional changes in its innervating afferent neurons and can lead to pain. However, the local mechanisms underlying the translation from tissue deformation to pain signaling are unclear, impeding effective treatment. Therefore, the involvement of the integrin subunit β1 in pain signaling from facet injury was investigated in complementary in vivo and in vitro studies. An anatomical study in the rat identified expression of the integrin subunit β1 in dorsal root ganglion (DRG) neurons innervating the facet, with greater expression in peptidergic than non-peptidergic DRG neurons. Painful facet capsule stretch in the rat upregulated the integrin subunit β1 in small- and medium-diameter DRG neurons at day 7. Inhibiting the α2β1 integrin in a DRG-collagen culture prior to its stretch injury prevented strain-induced increases in axonal substance P (SP) in a dose-dependent manner. Together, these findings suggest that integrin subunit β1-dependent pathways may contribute to SP-mediated pain from mechanical injury of the facet capsular ligament. ]]>
机译:摘要整联蛋白在各种炎症和神经病疼痛模型中调节化学诱导的伤害。然而,尽管其众所周知的细胞粘附和机械展示,但整合蛋白在机械诱导的疼痛中的作用仍未确定。过度脊髓瓣膜韧带韧带伸缩是常见的损伤,诱导其接管传入神经元的形态和功能变化,并导致疼痛。然而,从组织变形到疼痛信号的局部机制尚不清楚,妨碍有效治疗。因此,在体内和体外研究的互补性中研究了整联蛋白亚单位β1从刻面损伤的疼痛信号传导。大鼠的解剖学研究确定了在接头的背根神经节(DRG)神经元中的整联蛋白β1的表达,其在Pechidergic中的表达比非拟PeTridergic DRG神经元更大。在第7天在大鼠中伸展疼痛的面部胶囊伸展在小和中直径DRG神经元中的整联蛋白亚基β1。在其拉伸损伤之前抑制DRG胶原蛋白培养物中的α2β1整联蛋白,防止轴突诱导的轴突物质p增加( SP)以剂量依赖的方式。这些研究结果表明,整联蛋白亚基β1依赖性途径可能有助于从小平面荚膜韧带的机械损伤产生Sp介导的疼痛。 ]]>

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