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Comparative Analysis of Hydrophilic Ingredients in Toad Skin and Toad Venom Using the UHPLC-HR-MS/MS and UPLC-QqQ-MS/MS Methods Together with the Anti-Inflammatory Evaluation of Indolealkylamines

机译:使用UHPLC-HR-MS / MS和UPLC-QqQ-MS / MS方法对蟾蜍皮肤和蟾蜍毒液中的亲水性成分进行比较分析以及吲哚烷基胺的抗炎性评估

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摘要

Toad skin and toad venom, as two kinds of Chinese medicine, are prepared from Bufo bufo gargarizans Cantor and Bufo melanostictus Schneider. However, they display distinct properties in traditional application, and the hydrophilic ingredients are the possible distinguishing chemicals between them. In this work, 36 and 22 hydrophilic components were characterized from toad skin and venom, respectively, by UHPLC-HR-MS/MS, including amino acids, nucleosides, polypeptides, and indolealkylamines (IAAs). Among them, 15 compounds were unambiguously confirmed by comparison with standards. The CID-MS/MS fragmentation behaviors of seven indolealkylamine references were investigated to ascertain three types of structures. Subsequently, 11 high abundance contents of hydrophilic ingredients were determined from 11 batches of toad skin and 4 batches of toad venom by UPLC-QqQ-MS/MS. The quantitative results showed that the content of main IAAs in toad venom was much higher than in skin. In addition, the N-methyl serotonin (free IAA), bufothionine (combined IAA), and total IAAs sample were selected for anti-inflammatory evaluation in lipopolysaccharide (LPS) stimulated zebrafish embryo models. The obvious anti-inflammatory activities of IAAs were observed, especially for the free IAAs. This study illustrated IAAs were the main distinct hydrophilic components that probably lead to the difference between toad skin and toad venom in traditional applications.
机译:蟾蜍皮和蟾蜍毒是两种中药,均由中华蟾蜍和中华绒螯蟹制备。但是,它们在传统应用中显示出不同的特性,并且亲水性成分是它们之间可能的区别化学品。在这项工作中,蟾蜍皮肤和毒液分别通过UHPLC-HR-MS / MS对36和22种亲水性成分进行了表征,包括氨基酸,核苷,多肽和吲哚烷基胺(IAA)。其中,与标准品比较,明确确认了15种化合物。研究了七个吲哚烷基胺参考的CID-MS / MS碎片行为,以确定三种类型的结构。随后,通过UPLC-QqQ-MS / MS从11批蟾蜍皮和4批蟾蜍毒液中测定了11种高丰度亲水成分。定量结果表明,蟾蜍毒液中主要IAA的含量远高于皮肤。此外,在脂多糖(LPS)刺激的斑马鱼胚胎模型中,选择了N-甲基5-羟色胺(游离IAA),bufothionine(联合IAA)和总IAAs样品进行抗炎评估。观察到IAA具有明显的抗炎活性,尤其是对于游离的IAA。这项研究表明,IAA是主要的独特亲水成分,在传统应用中可能导致蟾蜍皮和蟾毒之间的差异。

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