首页|期刊导航|中国现代中药|川射干炮制"减毒"的质量标志物变化规律研究

川射干炮制"减毒"的质量标志物变化规律研究OACSTPCD

Changing Patterns of Quality Markers Related to "Attenuated Toxicity" of Iridis Tectori Rhizoma and Its Processed Products

中文摘要英文摘要

目的:探索川射干炮制前后的毒性变化,并通过化学成分的变化阐释其减毒作用的内在原因,为川射干的用药安全提供科学依据.方法:参照《中华人民共和国药典》2020 年版分别用米泔水法、米泔水堇竹叶法等不同方法炮制川射干.采用A549 体外细胞模型,测定毒性.建立高效液相色谱法(HPLC)指纹图谱,结合液相色谱-质谱法(LC-MS)定性指认,采用聚类分析(HCA)、主成分分析(PCA)、正交偏最小二乘法-判别分析(OPLS-DA)等多元统计方法探索川射干炮制前后的差异,进一步对其中质量标志物的含量变化进行分析.结果:细胞毒性筛选显示炮制后川射干对于非小细胞肺癌细胞系细胞株A549 毒性降低;进一步多元统计分析发现,川射干及其不同炮制品间存在差异,PCA与HCA可将其分为 3 类,OPLS-DA筛选出 4 个差异性标志成分,分别为野鸢尾黄素、射干苷、野鸢尾苷、次野鸢尾黄素;川射干炮制前后其质量标志物的含量有显著变化.讨论:细胞毒性筛选发现炮制后的川射干细胞毒性减低、黄酮苷含量下降、黄酮苷元含量增多,可能是炮制后射干苷及野鸢尾苷等黄酮苷类发生水解,其中一部分转化为鸢尾黄素、野鸢尾黄素、次野鸢尾黄素等苷元.

Objective:To investigate the toxicity changes in Iridis Tectori Rhizoma(ITR)before and after processing and explain the internal causes of its detoxification effects through changes in its chemical composition,thereby providing a scientific basis for the safe use of ITR.Methods:ITR was processed using different methods,including the rice rinsing water method and the rice rinsing water with violet bamboo leaf method,as outlined in the 2020 edition of the Pharmacopoeia of the People's Republic of China.The toxicity was measured using the A549 in vitro cell model.HPLC fingerprint was established,combined with LC-MS for qualitative identification.Multivariate statistical methods,including hierarchical cluster analysis(HCA),principal component analysis(PCA),and orthogonal partial least squares discriminant analysis(OPLS-DA),were used to explore the differences between ITR and its processed products.The changes in the content of quality markers were further analyzed.Results:Cytotoxicity screening showed that the toxicity of ITR to the A549 non-small cell lung cancer cell line was reduced after processing.Further multivariate statistical analysis revealed differences between ITR and its various processed products.PCA and HCA divided them into three categories,and OPLS-DA identified four differential marker components:tectorigenin,tectoridin,iridin,and irisflorentin.The content of quality markers changed significantly before and after processing.Conclusion:Cytotoxicity screening found that the toxicity of ITR to A549 cells decreased after processing.The flavonoid glycoside content decreased,while the flavonoid aglycone content increased.This may be due to the hydrolysis of flavonoid glycosides such as tectoridin and iridin during processing,with some being converted into tectorigenin,irigenin,and irisflorentin.

宋梦新;闫炳雄;刘茹欣;吴云秋;姚彩云;赵以民;杨晓男;阮丽君;宋志军

广西壮族自治区药用植物园 西南濒危药材资源开发国家工程研究中心,广西 南宁 530023||广西医科大学 药学院,广西 南宁 530021广西壮族自治区药用植物园 西南濒危药材资源开发国家工程研究中心,广西 南宁 530023

中医学

川射干炮制指纹图谱异黄酮多元统计

Iridis Tectori Rhizomaprocessingfingerprintsisoflavonemultivariate statistical analysis

《中国现代中药》 2024 (012)

2082-2091 / 10

国家自然科学基金项目(82204975);广西壮族自治区药用植物园基金项目(GXYYXGD202203);广西壮族自治区中药管理局项目(GXZYA20230003,GXZYZ20210016)

10.13313/j.issn.1673-4890.20240304002

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