黄芩苷镁盐的稳定性研究 点击下载
论文标题: 黄芩苷镁盐的稳定性研究
英文标题:
中文摘要: 目的:研究黄芩苷镁盐的稳定性。方法:考察黄芩苷镁盐在高温(60 ℃)、高湿(相对湿度90%)、强光照(4 000 lx)及不同温度(20、37、50、60 ℃)、不同pH(6.80、5.70、4.60、4.30、3.90、3.60、3.20)条件下的稳定性,采用高效液相色谱法测定药物含量。结果:高湿试验表明黄芩苷镁盐在第5天的质量增加了(6.17±0.12)%,第10天质量增加了(6.92±0.05)%。高温、高湿和强光照试验中药物含量在第10天分别为(94.78±0.12)%、(94.79±0.20)%、(94.66±0.15)%(n=3)。在磷酸盐缓冲溶液(pH 6.80)中,仅当温度低于20 ℃时,黄芩苷镁盐稳定;在纯水(pH 6.76)中,37 ℃时黄芩苷镁盐稳定性良好。pH稳定性试验表明pH值为4.30时黄芩苷镁盐最稳定。 结论:黄芩苷镁盐有一定程度的吸湿性,强光照对其稳定性的影响较高温与高湿更大,其在纯水中的稳定性优于在磷酸盐缓冲溶液中,且在弱酸性条件下较稳定。
英文摘要: OBJECTIVE: To study the stability of baicalin magnesium salt. METHODS: The stability of baicalin magnesium salt at high temperature(60 ℃), high humidity (90%), strong illumination (4 000 lx), different temperatures(20,37,50,60 ℃) and pHs(6.80,5.70,4.60,4.30,3.90,3.60,3.20) was investigated, and HPLC was used to detect the drug contents. RESULTS: High humidity test indicated that the quality of baicalin magnesium salt was increased by (6.17±0.12)% in the 5th day and increased by (6.92±0.05)% in the 10th day. Drug contents in the 10th day were respectively (94.78±0.12)%, (94.79±0.20)%, (94.66±0.15)% in the high temperature, high humidity, strong illumination tests (n=3). In phosphate buffer solution (pH 6.80), baicalin magnesium salt was stable only when the temperature was below 20 ℃; and it was yet stable in pure water (pH 6.76) at 37 ℃. pH stability test showed that the most stable pH was 4.30. CONCLUSIONS: Baicalin magnesium salt has hygroscopicity to some extent. Strong illumination affects the stability more seriously than high temperature and high humidity. The stability of baicalin magnesium salt in pure water is superior to in phosphate buffer solution, and the salt is stable in weak acid solution.
期刊: 2017年第28卷第22期
作者: 许海舰,刘一鑫,王志轩,宋鸿儒,刘翠哲
英文作者: XU Haijian,LIU Yixin,WANG Zhixuan,SONG Hongru,LIU Cuizhe
关键字: 黄芩苷镁盐;高温;高湿;强光照;温度;pH;稳定性;高效液相色谱法
KEYWORDS: Baicalin magnesium salt; High temperature; High humidity; Strong illumination; Temperature; pH; Stability; HPLC
总下载数: 81次
本日下载数: 2次
本月下载数: 81次
文件大小: 619.60Kb

* 注:未经本站明确许可,任何网站不得非法盗链资源下载连接及抄袭本站原创内容资源!在此感谢您的支持与合作!