|
|
Content determination of jujuboside A,jujuboside B,spinosin and 6′′′-ferulic acid spinosin in fried Ziziphi Spinosae Semen from different habitats by UPLC-UV-ELSD |
GAO Hong-ning1 YIN Yi2 YAN Guo-jun |
1.College of Pharmacy,Nanjing University of Chinese Medicine,Jiangsu Province,Nanjing 210046,China;
2.Department of Research and Development,Nanjing Duokang Trading Co.,Ltd,Jiangsu Province,Nanjing 210000,China |
|
|
Abstract Objective To establish an ultra-high performance liquid chromatography (UPLC)-ultraviolet (UV)-evaporative light scattering detection (ELSD) method for the determination content of jujuboside A,jujuboside B,spinosin and 6′′′-ferulic acid spinosin in fried Ziziphi Spinosae Semen from different habitats,the quality of Fried Ziziphi Spinosae Semen from different habitats was evaluated.Methods The chromatographic separation was achieved on Waters Acquity UPLC system,UV detector,and ELSD detector,performed on ACQUITY C18 (150 mm×2.1 mm,1.7 μm),and the mobile phase was 0.1% formic acid water-acetonitrile(gradient elution),the flow rate was 0.3 mL/min,the column temperature was 35℃,UV the detection wavelength was 335 nm and the injection volume was 3 μL,sprayer parameter was 50%,ELSD condition pressure was 172 kPa and drift tube temperature was 60℃.Results Under the above chromatographic conditions,jujuboside A,jujuboside B,spinosin and 6′′′-ferulic acid spinosin had a good linear relationship respectively with the chromatographic peak area at 27.20-435.20 mg/mL、12.60-200.8 mg/mL、26.38-422.00 mg/mL、24.38-390.00 mg/mL,the average recovery were 100.01%、99.99%、100.00%、100.04% respectively,relative standard deviation were 0.17%,0.32%,0.32%,0.32%,respectively.Conclusion UPLC-UV-ELSD method is accurate and sensitive,can be used as a quality control method of fried Ziziphi Spinosae Semen from different habitats.The results of determination show that the contents of the three components in fried Ziziphi Spinosae Semen from Hebei is relatively higher.
|
|
|
|
|
[1] |
温子帅,严玉平,王乾,等.响应面法优选酸枣种子萌发条件及其显微结构研究[J].种子,2018,37(8):23-26,35.
|
[2] |
中华人民共和国国家药典委员会.中华人民共和国药典2015年版(一部)[S].北京:中国医药科技出版社,2015:366-367.
|
[3] |
黄之镨,马伟光.酸枣仁及活性物质的药理研究进展[J].中国民族民间医药,2018,27(3):57-60.
|
[4] |
李小梅,叶群丽,韦婷.野生酸枣化学成分含量的研究进展[J].中医药学报,2018,46(6):123-126.
|
[5] |
郭丽丽,李燕,张钰笛,等.酸枣仁皂苷提取工艺的优化及固体饮料产品的研制[J].食品研究与开发,2020,41(7):104-110.
|
[6] |
郭海波,王慧.酸枣仁汤治疗失眠现代机制研究进展与探讨[J].中华中医药学刊,2019,37(12):2963-2966.
|
[7] |
朱十伟,高晓霞,田俊生,等.中药抗抑郁药对研究进展[J].药学学报,2019,54(2):235-244.
|
[8] |
杜晨晖,崔小芳,裴香萍,等.酸枣仁皂苷类成分及其对神经系统作用研究进展[J].中草药,2019,50(5):1258-1268.
|
[9] |
宋方芹,杨金荣,侯晅,等.酸枣仁抗抑郁有效部位配伍胶囊剂研制与质量分析[J].时珍国医国药,2018,29(11):2648-2650.
|
[10] |
芦晓芳,马清亮,王海香,等.大孔吸附树脂分离纯化酸枣仁皂苷影响因素探讨[J].分子科学学报,2019,35(1):40-48
|
[11] |
亓国锋,李刚刚,李予春.枣仁安神胶囊对冠心病伴焦虑抑郁患者疗效及血清5-HT、MPO 水平的影响[J].中华中医药学刊,2018,36(3):681-684.
|
[12] |
王晶,赵重博,柏希慧,等.天仁安眠颗粒的质量标准研究[J].陕西中医药大学学报,2018,41(2):97-101.
|
[13] |
温子帅,李新蕊,木盼盼,等.酸枣仁中斯皮诺素、酸枣仁皂苷A 含量测定及其质量等级划分标准研究[J].中国药房,2019,30(20):2802-2807.
|
[14] |
周赛男.简化样品处理快速测定酸枣仁中多种成分含量的研究[J].中国现代中药,2019,21(4):468-472.
|
[15] |
周赛男,陈家安,郭宝林,等.不同产区酸枣仁中斯皮诺素、6′′′-阿魏酰斯皮诺素、酸枣仁皂苷A、酸枣仁皂苷B的含量测定[J].中草药,2019,50(11):2712-2717.
|
[16] |
祝洪艳,张力娜,唐珊,等.HPLC 法测定3个产地酸枣仁中斯皮诺素和酸枣仁皂苷A、B 的含量[J].药物分析杂志,2015,35(12):2099-2104.
|
[17] |
隋利强、王建、黄礼书,等.蜜制酸枣仁中斯皮诺素含量测定[J].世界中医药,2016,11(6):1085-1087.
|
[18] |
郑峰,阙晓,苏靖,等.HPLC 法和UV 法测定复方枣参片中斯皮诺素和总皂苷含量[J].药学实践杂志,2017,35(2):134-137,173.
|
[19] |
毛怡宁,武文奇,康莹,等.酸枣仁中化学成分的UHPLCLTQ-Orbitrap-MS 快速分析[J].中国中药杂志,2018,43(24):4884-4891.
|
[20] |
黄之镨,何志明,张雯洁,等.酸枣仁萌发期酸枣仁皂苷A、B 及斯皮诺素的含量变化[J].食品研究与开发,2019,40(9):34-38.
|
|
|
|