摘要
目的:本研究旨在发现黄葵胶囊肾保护活性物质。方法:采用组分制备结合液相色谱—质谱联用(LC/MS)导向筛选技术,快速发现黄葵胶囊中具有肾保护活性的物质,在盐酸阿霉素损伤HK-2细胞模型上验证其活性,并检测这些活性物质对损伤HK-2细胞中丙二醛(MDA)含量、ATP含量、线粒体耗氧率的影响。结果:筛选发现黄葵胶囊中四个组分具有肾保护活性,运用LC/MS分析推测出15个黄酮类化合物,其中鉴定出金丝桃苷、杨梅素、槲皮素、芦丁和异槲皮素五个化合物。验证结果表明,金丝桃苷、杨梅素、槲皮素、芦丁对损伤HK-2细胞的保护作用呈一定的量效关系,均能降低损伤细胞MDA含量、升高ATP含量、提高线粒体耗氧率,其中金丝桃苷能降低MDA含量,槲皮素和芦丁能升高ATP含量,杨梅素能提高线粒体耗氧率。结论:金丝桃苷、杨梅素、槲皮素、芦丁可能是黄葵胶囊中潜在的肾保护活性物质,其保护作用可能与抗脂质过氧化、减轻线粒体损伤有关。
Objective: To discover the nephroprotective substances from Huangkui capsule. Methods: The components of Huangkui capsule were isolated by preparativeliquid chromatography, and the active components were screened by LC/MS and identified. The adriamycine-injured HK-2 ceils were treated with various active components with different concentrations, and the malonaldehyde (MDA) content, adenosine triphosphate (ATP) level and mitochondrial oxygen consumption rate were measured to verify the protective activity of the compounds. Results: Four active components in Huangkui capsule were identified to exert nephroprotective effects. Fifteen flavanoids from these four components were tentatively identified by LC/MS, and hyperin, myricetin, quercetin, rutin and isoquercetin were confirmed. Hyperin, myricetin quercetin and rutin showed dose-dependent protective effects on injured HK-2 cells. Espacially, hyperin significantly reduced MDA content, quercetin and rutin significantly increased ATP level, and myricetin significantly increased mitochondrial oxygen consumption rate. Conclusion: Hyperin, myricetin, querctein and rutin might be the potential nephroprotective compounds in Huangkui capsule, their effects may be related to the inhibition of lipid peroxidation and the alleviation of mitochondrial damage
出处
《浙江大学学报(医学版)》
CAS
CSCD
北大核心
2017年第1期66-73,共8页
Journal of Zhejiang University(Medical Sciences)
基金
浙江中医药大学科技创新团队项目(JCIT2016-1)
关键词
黄葵属/药物作用
胶囊
上皮细肜细胞学
肾小管
近端/细胞学
肾/损伤
质谱分析法
色谱法
液相
疾病模型
动物
Abelmoschus/drug effects
Capsules
Epithelial cells/cytology
Kidney tubules, proxima/cytology
Kidney/injuries
Mass spectrometry
Chromatography, liquid
Disease models, animal