首页> 外文期刊>Molecules >Evidence for the Involvement of Spinal Cord-Inhibitory and Cytokines-Modulatory Mechanisms in the Anti-Hyperalgesic Effect of Hecogenin Acetate, a Steroidal Sapogenin-Acetylated, in Mice
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Evidence for the Involvement of Spinal Cord-Inhibitory and Cytokines-Modulatory Mechanisms in the Anti-Hyperalgesic Effect of Hecogenin Acetate, a Steroidal Sapogenin-Acetylated, in Mice

机译:小鼠抑肝激素乙酰甾体皂苷元乙酰化的镇痛作用中脊髓抑制和细胞因子调节机制参与的证据。

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摘要

Hecogenin is a steroidal sapogenin largely drawn from the plants of the genus Agave, commonly known as ‘sisal’, and is one of the important precursors used by the pharmaceutical industry for the synthesis of steroid hormones. Hecogenin acetate (HA) is a steroidal sapogenin-acetylated that produces antinociceptive activity. Thus, we evaluate the antihyperalgesic profile of HA in mice in inflammatory models, as well as its possible involvement with c-fos expression on spinal cord area and cytokines to produces analgesic profile. Acute pretreatment with HA (5, 10, or 20 mg/kg; i.p.) inhibited the development of mechanical hyperalgesia induced by carrageenan, TNF-α, dopamine and PGE2. Additionally, the immunofluorescence data demonstrated that acute pretreatment with HA, at all doses tested, significantly inhibited Fos-like expression in the spinal cord dorsal horn normally observed after carrageenan-inflammation. Moreover, HA did not affect the motor performance of the mice as tested in the Rota rod test. This antinociceptive profile seems to be related, at least in part, to a reduction of pro-inflammatory cytokines, as IL-1β. The present results suggest that HA attenuates mechanical hyperalgesia by blocking the neural transmission of pain at the spinal cord levels and by cytokines-inhibitory mechanisms.
机译:Hecogenin是一种类固醇皂苷元,主要从龙舌兰属植物中提取,通常被称为“剑麻”,是制药工业合成类固醇激素的重要前体之一。乙酸Hecogenin(HA)是一种甾体皂苷元乙酰化,可产生抗伤害感受活性。因此,我们评估了炎症模型小鼠中HA的抗痛觉过敏特性,以及它可能与脊髓区域和细胞因子上的c-fos表达有关,以产生镇痛效果。用HA(5、10或20 mg / kg; i.p.)进行的急性预处理抑制了由角叉菜胶,TNF-α,多巴胺和PGE2引起的机械性痛觉过敏的发展。此外,免疫荧光数据表明,在所有测试剂量下,用HA进行的急性预处理均能显着抑制角叉菜胶炎症后正常观察到的脊髓背角Fos样表达。此外,如Rota棒测试所示,HA不会影响小鼠的运动能力。这种抗伤害感受的特性似乎至少部分与促炎细胞因子IL-1β的减少有关。目前的结果表明,HA通过在脊髓水平上阻断疼痛的神经传递并通过细胞因子抑制机制来减轻机械性痛觉过敏。

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