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新型电压门控钠通道阻滞剂HYP-17可缓解大鼠的炎性疼痛和神经性疼痛。

HYP-17, a novel voltage-gated sodium channel blocker, relieves inflammatory and neuropathic pain in rats.

作者信息

Lee Jee Youn, Kam Yoo Lim, Oh Jungae, Kim Dong Hyun, Choi Jin-Sung, Choi Hae Young, Han Sungmin, Youn Inchan, Choo Hea-Young Park, Yune Tae Young

机构信息

Age-Related and Brain Diseases Research Center, Kyung Hee University, Seoul 02447, Republic of Korea.

School of Pharmacy, Graduate School of Pharmaceutical Sciences, Ewha Womans University, Seoul 03760, Republic of Korea.

出版信息

Pharmacol Biochem Behav. 2017 Feb;153:116-129. doi: 10.1016/j.pbb.2016.12.013. Epub 2016 Dec 24.

Abstract

Clinical and experimental studies suggest that voltage-gated sodium channels (VGSCs) play a key role in the pathogenesis of neuropathic pain and that blocking agents against these channels can be potentially therapeutic. In the current study, we investigated whether a novel compound, (-)-2-Amino-1-(4-((4-chlorophenyl)(phenyl)methyl)piperazin-1-yl)-propan-1-one(HYP-17), binds to VGSCs and evaluated its inhibitory effect on Na currents of the rat dorsal root ganglia (DRG) sensory neurons and its analgesic effect on inflammatory and neuropathic pain. HYP-17 (10μM) reduced both the tetrodotoxin-sensitive (TTX-S) and the TTX-resistant (TTX-R) currents in DRG sensory neurons. However, neither the voltage-dependent activation curves nor the steady-state inactivation curves for TTX-S and TTX-R currents were changed by HYP-17. In rats injected with 5% formalin under the plantar surface of the hind paw, HYP-17 (10μg) significantly reduced both the early and late phase spontaneous pain behaviors. Systemic injection with HYP-17 (60mg/kg, i.p.) also significantly relieved the mechanical, cold, and warm allodynia induced by rat tail nerve injury. Furthermore, HYP-17 (60mg/kg, i.p.) significantly relieved the central neuropathic pain induced by spinal cord injury (SCI), and inhibited c-Fos expression in lumbar (L) 4-L5 spinal segments. Electrophysiological study showed that HYP-17 significantly attenuated the hyper-responsiveness of lumbar dorsal horn neurons. In addition, HYP-17 significantly reduced the levels of pp38MAPK and p-JNK in microglia and astrocytes, respectively, in the L4-L5 spinal dorsal horn. Therefore, our results indicate that HYP-17 has potential analgesic activities against nociceptive, inflammatory and neuropathic pain.

摘要

临床和实验研究表明,电压门控钠通道(VGSCs)在神经性疼痛的发病机制中起关键作用,针对这些通道的阻断剂可能具有治疗作用。在本研究中,我们研究了一种新型化合物(-)-2-氨基-1-(4-((4-氯苯基)(苯基)甲基)哌嗪-1-基)-丙烷-1-酮(HYP-17)是否与电压门控钠通道结合,并评估了其对大鼠背根神经节(DRG)感觉神经元钠电流的抑制作用以及对炎性和神经性疼痛的镇痛作用。HYP-17(10μM)降低了DRG感觉神经元中对河豚毒素敏感(TTX-S)和对河豚毒素耐药(TTX-R)的电流。然而,HYP-17并未改变TTX-S和TTX-R电流的电压依赖性激活曲线或稳态失活曲线。在大鼠后爪足底表面注射5%福尔马林后,HYP-17(10μg)显著降低了早期和晚期自发疼痛行为。全身注射HYP-17(60mg/kg,腹腔注射)也显著减轻了大鼠尾神经损伤诱导的机械性、冷和热痛觉过敏。此外,HYP-17(60mg/kg,腹腔注射)显著减轻了脊髓损伤(SCI)诱导的中枢神经性疼痛,并抑制了腰(L)4-L5脊髓节段中c-Fos的表达。电生理研究表明,HYP-17显著减弱了腰段背角神经元的高反应性。此外,HYP-17分别显著降低了L4-L5脊髓背角小胶质细胞和星形胶质细胞中pp38MAPK和p-JNK的水平。因此,我们的结果表明,HYP-17对伤害性、炎性和神经性疼痛具有潜在的镇痛活性。

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