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拉巴科因是一种 C18-二萜生物碱,通过刺激脊髓强啡肽 A 的表达来治疗慢性疼痛过敏。

Lappaconitine, a C18-diterpenoid alkaloid, exhibits antihypersensitivity in chronic pain through stimulation of spinal dynorphin A expression.

机构信息

King's Lab, Shanghai Jiao Tong University School of Pharmacy, 800 Dongchuan Road, Shanghai, 200240, China.

State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200032, China.

出版信息

Psychopharmacology (Berl). 2018 Sep;235(9):2559-2571. doi: 10.1007/s00213-018-4948-y. Epub 2018 Jun 20.

Abstract

Lappaconitine is a representative C18-diterpenoid alkaloid extracted from Aconitum sinomontanum Nakai and has been prescribed as a pain relief medicine in China for more than 30 years. This study evaluated its antihypersensitivity activity in the rat models of neuropathic and cancer pains and explored its underlying mechanisms. Subcutaneous injection of cumulative doses of lappaconitine produced dose-dependent mechanical antiallodynia and thermal antihyperalgesia in spinal nerve ligation-induced neuropathic rats. The cumulative dose-response analysis exhibited their E values of 53.3 and 58.3% MPE, and ED values of 1.1 and 1.6 mg/kg. Single intrathecal lappaconitine dose in neuropathy also dose- and time-dependently blocked mechanical allodynia, with an E of 66.1% MPE and an ED of 0.8 μg. Its multiple twice-daily intrathecal administration over 7 days did not induce mechanical antiallodynic tolerance. Subcutaneous cumulative doses of lappaconitine also produced dose-dependent blockade of mechanical allodynia in the rat bone cancer pain model induced by tibia implantation of cancer cells, with the E of 57.9% MPE and ED of 2.0 mg/kg. Furthermore, lappaconitine treatment stimulated spinal dynorphin A expression in neuropathic rats, and in primary cultures of microglia but not neurons or astrocytes. Intrathecal pretreatment with the specific microglia depletor liposome-encapsulated clodronate, dynorphin A antibody, and κ-opioid receptor antagonist GNTI totally suppressed intrathecal and subcutaneous lappaconitine-induced mechanical antiallodynia. This study suggests that lappaconitine exhibits antinociception through directly stimulating spinal microglial dynorphin A expression. Graphical Abstract ᅟ.

摘要

高乌甲素是从乌头碱中提取的一种代表性的 C18-二萜生物碱,已在中国作为止痛药物使用超过 30 年。本研究评价了其在神经病理性痛和癌性痛大鼠模型中的抗敏活性,并探讨了其潜在的机制。皮下注射累积剂量的高乌甲素可产生剂量依赖性的机械性抗痛觉过敏和热痛觉过敏,在脊神经结扎诱导的神经病理性疼痛大鼠中。累积剂量反应分析显示其 MPE 的 E 值分别为 53.3%和 58.3%,ED 值分别为 1.1 和 1.6mg/kg。单次鞘内高乌甲素治疗也可剂量和时间依赖性地阻断机械性痛觉过敏,E 值为 66.1% MPE,ED 值为 0.8μg。鞘内重复给药 7 天,2 次/天,不会产生机械性抗痛觉过敏耐受。皮下累积剂量的高乌甲素也可产生剂量依赖性的机械性痛觉过敏阻断作用,在胫骨植入癌细胞诱导的大鼠骨癌痛模型中,E 值为 57.9% MPE,ED 值为 2.0mg/kg。此外,高乌甲素治疗可刺激神经病理性大鼠脊髓内强啡肽 A 的表达,以及在小胶质细胞的原代培养物中,但不在神经元或星形胶质细胞中。鞘内预先给予特异性小胶质细胞耗竭剂脂质体包裹的氯膦酸盐、强啡肽 A 抗体和 κ 阿片受体拮抗剂 GNTI 可完全抑制鞘内和皮下高乌甲素诱导的机械性抗痛觉过敏。本研究表明,高乌甲素通过直接刺激脊髓小胶质细胞强啡肽 A 的表达来发挥镇痛作用。

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