首页> 美国卫生研究院文献>Frontiers in Pharmacology >Ester Hydrolysis Differentially Reduces Aconitine-Induced Anti-hypersensitivity and Acute Neurotoxicity: Involvement of Spinal Microglial Dynorphin Expression and Implications for Aconitum Processing
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Ester Hydrolysis Differentially Reduces Aconitine-Induced Anti-hypersensitivity and Acute Neurotoxicity: Involvement of Spinal Microglial Dynorphin Expression and Implications for Aconitum Processing

机译:酯水解差异地减少了乌头碱引起的抗超敏反应和急性神经毒性:脊髓小胶质强啡肽的表达及其对乌头处理的意义。

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摘要

Aconitines, including bulleyaconitine A, probably the most bioactive and abundant alkaloids in Aconitum plant, are a group of diester C19-diterpenoid alkaloids with one acetylester group attached to C8 of the diterpenoid skeleton and one benzoylester group to C14. Hydrolysis of both groups is involved in the processing of Aconitum, a traditional Chinese medicinal approach. We recently demonstrated that bulleyaconitine A produced anti-hypersensitivity, which was mediated by stimulation of spinal microglial dynorphin A expression. This study aimed to elucidate whether the acetylester and benzoylester groups are involved in aconitine-induced dynorphin A expression, anti-hypersensitivity, neurotoxicity in neuropathic rats. Intrathecal administration of aconitine and benzoylaconine (but not aconine) attenuated mechanical allodynia and heat hyperalgesia, with normalized ED50 values of 35 pmol and 3.6 nmol, respectively. Aconitine and benzoylaconine anti-allodynia was completely blocked by the microglial inhibitor, dynorphin A antiserum, and κ-opioid receptor antagonist. Aconitine and benzoylaconine, but not aconine, stimulated dynorphin A expression in cultured primary spinal microglia, with EC50 values of 32 nM and 3 μM, respectively. Intrathecal aconitine, benzoylaconine and aconine induced flaccid paralysis and death, with normalized TD50 values of 0.5 nmol, 0.2 μmol, and 1.6 μmol, respectively. The TD50/ED50 ratios of aconitine and benzolyaconine were 14:1 and 56:1. Our results suggest that both the C8-acetyl and C14-benzoyl groups are essential for aconitine to stimulate spinal microglial dynorphin A expression and subsequent anti-hypersensitivity, which can be separated from neurotoxicity, because both benzoylaconine and aconine differentially produced anti-hypersensitivity and neurotoxicity due to their different stimulatory ability on dynorphin A expression. Our results support the scientific rationale for Aconitum processing, but caution should be taken to avoid overprocessing and excess hydrolysis of benzolyaconine to aconine.
机译:乌头酮类,包括可能在乌头植物中生物活性最强和生物碱含量最高的生物碱,包括Bulleyaconitine A,是一组二酯C19-二萜生物碱,其中一个乙酰基与二萜骨架的C8相连,一个苯甲酸酯基与C14相连。两组的水解都参与了中药乌头的加工。我们最近证明,bulleyaconitine A产生抗过敏反应,这是通过刺激脊髓小胶质细胞强啡肽A表达而介导的。这项研究旨在阐明乙酰酯和苯甲酸酯基团是否参与乌头碱诱导的强啡肽A的表达,抗超敏反应,神经性大鼠的神经毒性。鞘内注射乌头碱和苯甲酰可可碱(而非乌头碱)可减轻机械性异常性疼痛和热痛觉过敏,ED50值分别为35 pmol和3.6 nmol。小胶质细胞抑制剂,强啡肽A抗血清和κ阿片受体拮抗剂完全阻断了乌头碱和苯甲酰可宁的异常性痛觉过敏。乌头碱和苯甲酰可可碱,但不是乌头碱,可刺激培养的原发性脊髓小胶质细胞中强啡肽A的表达,其EC50值分别为32 nM和3μM。鞘内乌头碱,苯甲酰可卡因和乌头碱会引起松弛性麻痹和死亡,其TD50值分别为0.5 nmol,0.2μmol和1.6μmol。乌头碱和苯甲酰乌头碱的TD50 / ED50比为14:1和56:1。我们的结果表明,C8-乙酰基和C14-苯甲酰基对于乌头碱刺激脊髓小胶质强啡肽A的表达和随后的抗超敏反应都是必不可少的,这可以与神经毒性分开,因为苯甲酰乌头碱和乌头碱均会产生不同的抗超敏反应和神经毒性由于它们对强啡肽A表达的不同刺激能力。我们的结果支持乌头加工的科学原理,但应谨慎操作,以免过度加工以及苯并lyaconine过度水解为乌头碱。

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