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Voltage-sensitive calcium channels in spinal nociceptive processing: blockade of N- and P-type channels inhibits formalin-induced nociception

机译:脊髓伤害感受过程中的电压敏感钙通道:阻断N型和P型通道可抑制福尔马林诱导的伤害感受

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摘要

The role of spinal voltage-sensitive calcium channels (VSCC) in a behavioral model of prolonged nociception was examined in rats. Blockade of VSCC by the trivalent cations neodymium (NdCl3) and lanthanum (LaCl3) resulted in a dose-dependent suppression of both phases of the response to formalin. omega-Conopeptides, which selectively block N-type VSCC, also produced a dose-dependent inhibition of both the initial behavior [phase 1; ED50 (nmol): SNX-111 (0.003) > SNX-185 (0.010) > SNX-239 (0.16) >> SNX-159 (> 0.26); SNX-199 (> 0.30)] and the facilitated response [phase 2; ED50 (nmol): SNX-111 (0.003) > SNX-185 (0.009) > SNX-239 (0.020) > SNX-159 (0.120) = SNX-199 (0.230)]. In contrast, SNX-231 (0.24 nmol), which is selective for a non-Lon-N site and also the L-type VSCC blockers nifedipine (24 nmol), nimodipine (29 nmol), verapamil (200 nmol), and diltiazem (220 nmol), had minimal effects on either phase of the formalin test at the highest dose examined. The P-type channel blocker omega-agatoxin IVA produced a 40% inhibition of phase 1 at the highest dose and phase 2 was suppressed in a dose-dependent fashion (ED50, 0.001 nmol). The response latency to a high-threshold thermal stimulus (the 52.5 degrees C hot plate) was moderately (20%) increased by NdCl3 (0.30 nmol) and SNX-111 (0.008 nmol), but not verapamil (200 nmol) and omega-agatoxin IVA (0.006 nmol). High doses of the N-type VSCC produced characteristic shaking behavior, serpentine-like tail movements, and impaired coordination. However, at antinociceptive doses there was no significant motor effect, though three of the N-type antagonists produced some tail movements. These studies demonstrate that VSCC of the N- and P-type, but not L-type, are involved in facilitated nociceptive processing at the spinal level.
机译:在大鼠中,研究了脊髓痛敏钙通道(VSCC)在长时间伤害感受行为模型中的作用。三价阳离子钕(NdCl3)和镧(LaCl3)对VSCC的阻滞导致对福尔马林反应的两个阶段的剂量依赖性抑制。选择性封闭N型VSCC的ω-芋螺肽也对两种初始行为均产生剂量依赖性抑制作用[1期; 1期]。 ED50(nmol):SNX-111(0.003)> SNX-185(0.010)> SNX-239(0.16) SNX-159(> 0.26); SNX-199(> 0.30)]和便利的响应[阶段2; ED50(nmol):SNX-111(0.003)> SNX-185(0.009)> SNX-239(0.020)> SNX-159(0.120)= SNX-199(0.230)]。相反,对非L /非N位点具有选择性的SNX-231(0.24 nmol),以及对L型VSCC阻滞剂硝苯地平(24 nmol),尼莫地平(29 nmol),维拉帕米(200 nmol)具有选择性,地尔硫卓和地尔硫卓(220 nmol)在最高剂量下对福尔马林测试的任何阶段的影响均最小。 P型通道阻滞剂欧米伽-毒素IVA在最高剂量下对相1产生40%的抑制作用,而相2以剂量依赖性方式被抑制(ED50,0.001 nmol)。 NdCl3(0.30 nmol)和SNX-111(0.008 nmol)对高阈值热刺激(52.5摄氏度热板)的响应潜伏期有所增加(20%),但维拉帕米(200 nmol)和欧米茄琼脂毒素IVA(0.006 nmol)。高剂量的N型VSCC会产生特征性的抖动行为,蛇形的尾巴移动和协调性受损。然而,尽管三种N型拮抗剂产生了一些尾巴运动,但在抗伤害性剂量下并没有明显的运动作用。这些研究表明,N型和P型而不是L型的VSCC参与了在脊柱水平上促进伤害性加工的过程。

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