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一氧化氮在神经源性和非神经源性外周炎症大鼠脊髓伤害性反射中的作用。

The role of nitric oxide in spinal nociceptive reflexes in rats with neurogenic and non-neurogenic peripheral inflammation.

作者信息

Semos M L, Headley P M

机构信息

Department of Physiology, School of Medical Sciences, University Walk, Bristol, U.K.

出版信息

Neuropharmacology. 1994 Nov;33(11):1487-97. doi: 10.1016/0028-3908(94)90053-1.

Abstract

This in vivo electrophysiological study concerns the role of nitric oxide (NO) in mechanical and thermal spinal nociceptive reflexes in alpha-chloralose anaesthetized rats. The effects of the NO synthase inhibitor, NG-nitro-L-arginine methyl ester (L-NAME; 5-40 mg/kg i.v.) on reflexes were compared both in normal rats and in those with peripheral inflammation induced neurogenically (mustard oil) and non-neurogenically (carrageenan). Methoxamine (0.1 mg/kg i.v.) was used to mimic the marked hypertension caused by L-NAME. Thermal nociceptive reflexes were equally reduced by methoxamine and L-NAME in both normal and inflamed rats, implying that NO has no role in mediating thermal reflexes. However, L- (but not D-) NAME dose dependently and significantly inhibited mechanical reflexes in both carrageenan inflamed (to 37 +/- 12% control) and mustard oil inflamed rats (to 75 +/- 8% control). Moreover, these reductions were greater than those by methoxamine. In contrast, L-NAME did not reduce mechanical reflexes in rats with no inflammation or in spinalized rats with inflammation. The inhibition of mechanical reflexes with L-NAME in carrageenan inflamed rats was reversed and prevented by pre- or post-treatment with L- (but not D-) arginine (50-200 mg/kg i.v.). These data imply a supraspinal role for NO in mediating mechanical (but not thermal) nociceptive reflexes only in those rats with peripheral inflammation.

摘要

这项体内电生理研究关注一氧化氮(NO)在α-氯醛糖麻醉大鼠的脊髓机械性和热痛觉反射中的作用。比较了一氧化氮合酶抑制剂NG-硝基-L-精氨酸甲酯(L-NAME;5-40mg/kg静脉注射)在正常大鼠以及神经源性(芥子油)和非神经源性(角叉菜胶)诱导的外周炎症大鼠中对反射的影响。使用甲氧明(0.1mg/kg静脉注射)模拟L-NAME引起的明显高血压。在正常和炎症大鼠中,甲氧明和L-NAME均能同等程度地降低热痛觉反射,这意味着NO在介导热反射中不起作用。然而,L-(而非D-)NAME剂量依赖性地显著抑制角叉菜胶炎症大鼠(降至对照的37±12%)和芥子油炎症大鼠(降至对照的75±8%)的机械反射。此外,这些降低程度大于甲氧明。相比之下,L-NAME在无炎症大鼠或脊髓损伤炎症大鼠中并未降低机械反射。在角叉菜胶炎症大鼠中,L-NAME对机械反射的抑制作用可被L-(而非D-)精氨酸(50-200mg/kg静脉注射)预处理或后处理逆转并预防。这些数据表明,仅在有外周炎症的大鼠中,NO在介导机械性(而非热性)痛觉反射中具有脊髓上的作用。

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