首页> 外文期刊>European journal of pain : >Spinal microglial activation in rat models of neuropathic and osteoarthritic pain: An autoradiographic study using [(3) H]PK11195.
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Spinal microglial activation in rat models of neuropathic and osteoarthritic pain: An autoradiographic study using [(3) H]PK11195.

机译:神经疗法和骨关节炎疼痛大鼠脊髓显微激活:使用[(3)H] PK11195的放射造影研究。

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摘要

Microglia serve as macrophage-like cells in the central nervous system, and activation of microglial cells in the spinal cord may contribute to ongoing pain following peripheral trauma or nerve injury. Following pronociceptive stimulation, activated microglia exhibit increased expression of the peripheral benzodiazepine receptor (PBR)/translocator protein 18?kDa (TSPO).Using radioligand binding autoradiography and filtration assays, we examined the specific binding of the PBR/TSPO ligand [(3) H]PK11195 in spinal cords from the following rat experimental pain models: neuropathic pain induced by spinal nerve ligation (SNL), osteoarthritic pain induced by intraarticular injection of monosodium iodoacetate in the knee joint (MIA-OA), and subchronic inflammatory pain induced by intraplantar injection of complete Freund's adjuvant (CFA).Specific [(3) H]PK11195 binding in dorsal and ventral regions of lumbar spinal cord was increased by ≥70% ipsilateral to SNL. Also, specific [(3) H]PK11195 binding in the ipsilateral (injured) lumbar spinal cord was increased by approximately 25% in MIA-OA. In contrast to the data obtained in these chronic neuropathic and nociceptive pain models, specific [(3) H]PK11195 binding in the ipsilateral (injured) dorsal horn was elevated in only one of six CFA rats. Consistent with increased PBR/TSPO binding measured for SNL and MIA-OA rats, increased anti-OX-42 immunostaining of the cell surface microglial marker CD11b was observed in the ipsilateral spinal cord from these models.These studies demonstrate that [(3) H]PK11195 binding assays may serve as a marker of spinal microglial activation in experimental models of chronic neuropathic or osteoarthritic pain, which may be translatable to clinical research through novel applications of PBR/TSPO imaging agents.
机译:微胶质细胞用作中枢神经系统中的巨噬细胞样细胞,并且在外周创伤或神经损伤后,脊髓中的小胶质细胞的激活可能有助于持续的疼痛。在后期刺激后,活化的微胶质细胞表现出较大的外周苯二氮卓受体(PBR)/易偶蛋白18的表达增加(TSPO)。用于放射性末端结合放射自显影和过滤测定,我们检查了PBR / TSPO配体的特异性结合[(3) H] PK11195在脊髓中来自以下大鼠实验疼痛模型:脊神经结扎(SN1)诱导的神经性疼痛,通过在膝关节(MIA-OA)中的碘碘酸碘碘酸钠诱导的骨关节炎疼痛,并诱导骨质炎症疼痛颅内植物注入完整的弗氏佐剂(CFA)。特异性[(3)H] PK11195在腰椎脊髓的背侧和腹侧区域的结合≥70%的Ipsilidals至Sn1。此外,在同侧(损伤)腰脊髓中的特异性[(3)H] PK11195结合在MIA-OA中增加了约25%。与这些慢性神经病变和伤害性疼痛模型中获得的数据相比,在同侧(损伤)背角中的特异性[(3)H] PK11195结合仅在六只CFA大鼠中只有一个。与对SN1和MIA-OA大鼠测量的增加的PBR / TSPO结合一致,在来自这些模型的同侧脊髓中观察到细胞表面微胶质标记CD11b的增加的抗牛-22免疫染色。这些研究表明[(3)H PK11195结合测定可以作为慢性神经性或骨关节炎疼痛的实验模型中的脊髓显微激活的标志物,其可以通过通过PBR / TSPO成像剂的新型应用来转化为临床研究。

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