栀子中的多甲氧基黄酮和半合成衍生物可降低小鼠的痛觉:MAPK 通路参与的证据。

Clément Daviaud, Christiane Adrielly Alves Ferraz, Mariana Gama E Silva, Edilson Beserra de Alencar Filho, Sammya Yasmin Evangelista Mendes de Lima, Vincent Dumontet, Lucindo José Quintans Júnior, Jackson Roberto Guedes da Silva Almeida, Laurent Picot, Kévin Baranger, Raimundo Gonçalves de Oliveira Júnior, Raphaël Grougnet
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引用次数: 0

摘要

本研究探讨了聚甲氧基黄酮(PMFs)和聚乙酰化黄酮(PAFs)作为新型镇痛和抗炎药物的潜力。从栀子花芽渗出液中分离或从商业山奈酚中半合成的8个衍生物在体内、体外和硅模型中进行了评价。醋酸、福尔马林致小鼠疼痛和热板实验(n = 6)。对LPS作用前后的RAW264.7巨噬细胞进行细胞活力测定、酶联免疫吸附、NO测定和western blot蛋白表达测定。分子对接是为了推测化合物文库对最有希望的靶点的亲和力。尽管化学结构密切相关,但细微的修饰显著影响抗伤害活性和对多种细胞或酶靶点的亲和力。化合物库在醋酸和福尔马林诱导的小鼠疼痛实验中显示出明显的抑制伤害感觉的作用。RAW264.7细胞的生化分析证实了其抗炎特性,其中PAFs 7和PAFs 8活性最强。该研究表明外周抗伤害性特征,提示干扰与疼痛障碍相关的炎症介质的产生(例如,COX-2, Tnf-α, IL-6和MAPK途径蛋白)。分子对接分析强烈提示PMFs/PAFs化学文库与预先选择的靶标之间存在相互作用。PAFs 7和8表现出最好的结合能,可能通过与MAPK、ERK、JNK和p38结合,显示出对抗炎症的潜力。这些数据为通过进一步的药物调节优化先导物提供了见解,为开发创新的多靶点镇痛和抗炎药物铺平了道路。
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Polymethoxyflavones from Gardenia oudiepe and semi-synthetic derivatives reduce nociception in mice: Evidence for the involvement of the MAPK pathway.

This study explores the potential of polymethoxyflavones (PMFs) and polyacetylated flavones (PAFs) as novel analgesic and anti-inflammatory agents. Eight derivatives, isolated from Gardenia oudiepe bud exudate or semi-synthesized from commercial kaempferol, underwent evaluations in various in vivo, in vitro, and in silico models. Acetic acid-, formalin-induced pain, and hot-plate tests were conducted in mice (n = 6). Cell viability assay, ELISA, NO measurement and protein expression by western blot were determined on RAW264.7 macrophage cells before and after exposure to LPS. Molecular docking was performed in order to putatively corroborate the affinity of the compound library to the most promising targets. Despite closely-related chemical structures, subtle modifications significantly influenced anti-nociceptive activity and affinity on diverse cellular or enzymatic targets. The library of compounds exhibited noticeable inhibitory effects on nociception in acetic acid- and formalin-induced pain assays in mice. Biochemical assays on RAW264.7 cells elucidated anti-inflammatory properties, highlighting PAFs 7 and 8 as the most active. The study indicates a peripheral anti-nociceptive profile, suggesting interferences with the production of inflammatory mediators implicated in pain disorders (e.g., COX-2, Tnf-α, IL-6 and MAPK pathway proteins). Molecular docking analyses strongly suggested interactions between PMFs/PAFs chemical library and pre-selected targets. PAFs 7 and 8 demonstrated the best binding energies, showing potential in tackling inflammation, possibly by binding to MAPK, ERK, JNK and p38. These data provide insights for lead optimization through further pharmacomodulation, paving the way for the development of innovative multi-target analgesic and anti-inflammatory drugs.

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