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草乌类蒙药的红外光谱分析与鉴定
引用本文:苏都娜,策力木格,松林,聂波,图雅. 草乌类蒙药的红外光谱分析与鉴定[J]. 世界科学技术-中医药现代化, 2016, 0(12): 2170-2175
作者姓名:苏都娜  策力木格  松林  聂波  图雅
作者单位:内蒙古民族大学蒙医药学院 通辽 028000,内蒙古医科大学蒙医药学院 呼和浩特 010110,内蒙古医科大学蒙医药学院 呼和浩特 010110,北京中医药大学东直门医院 北京 100027,中国中医科学院中医药发展研究中心 北京 100700
基金项目:国家自然科学基金项目面上项目(81274192):基于草乌减毒效应的诃子化学成分及缓和药性特征的相关研究,负责人:图雅;国家自然基金地区基金项目(81360677):蒙药草乌诃子汤炮制品的有效部位与其消化道内生物转化的相关性研究,负责人:松林。
摘    要:目的:对蒙药草乌根、草乌叶、草乌花、草乌芽的原药材及其总生物碱提取物进行分析。方法:采用红外光谱的三级鉴定方法(红外光谱、二阶导数谱以及二维相关谱)进行样品的全成分分析。结果:草乌根的谱图与淀粉的标准谱图相似,出现淀粉特征峰1 155、1070、1019cm-1,故草乌根含有大量淀粉;叶、花、芽含芳香类物质较多(1600cm-1),糖苷类物质(1050-1070cm-1)、酯类物质不明显;草乌花、草乌叶、草乌芽的红外谱图中能够观察到芳香环(1595cm-1附近)和=C-O(1262cm-1附近)有特征吸收,证明三者共有成分为二萜类生物碱。二阶导数谱图显示,根在1712cm-1(C=O)附近的特征峰明显强于花、叶和芽,说明根中二萜类生物碱类成分含量高于花、叶和芽;二维谱图在800-1300cm-1处根有6个自动峰1745、1650、1560 (最强)、1465、1400、1300cm-1;叶、芽、花相似其自动峰有1680、1560(最强)、1465cm-1。结论:红外光谱宏观指纹技术可提供大量整体信息,能够较准确的把握草乌类药材的整体质量。红外光谱法和二维相关光谱提供了大量草乌、草乌花、草乌叶、草乌芽的整体结构信息,验证了4种药材所含物质结构和含量的差异,为今后草乌的系统研究工作奠定基础。

关 键 词:红外光谱 二阶导数谱 二维相关光谱 草乌
收稿时间:2016-11-15
修稿时间:2016-12-13

Analysis of Different Parts of Aconitum kusnezoffii Reichb.Using Fourier Transform Infrared Spectroscopy
Su Dun,Ce Li Mu Ge,Song Lin,Nie Bo and Tu Ya. Analysis of Different Parts of Aconitum kusnezoffii Reichb.Using Fourier Transform Infrared Spectroscopy[J]. World Science and Technology—Modernization of Traditional Chinese Medicine and Materia Medica, 2016, 0(12): 2170-2175
Authors:Su Dun  Ce Li Mu Ge  Song Lin  Nie Bo  Tu Ya
Affiliation:Mongolian Medicine College,Inner Mongolia University of Nationalities,Tongliao 028000,China,Mongolian Medicine College,Inner Mongolia Medical University,Huhhot 010110,China,Dongzhimen Hospital,Beijing University of Chinese Medicine,Beijing 100027,China and Development Research Center of Traditional Chinese Medicine,China Academy of Chinese Medical Sciences,Beijing 100700,China
Abstract:The radix,leaf,flower and bud of raw medicinal materials and extraction of total alkaloids of Aconitum kusnezoffii Reichb.were all involved in this investigation.All the compositions from the samples were analyzed through fourier transform infrared spectroscopy(FTIR)combined with second derivative IR spectroscopy and two-dimensional IR correlation spectroscopy(2D-IR).It was found that the spectra of raw medicinal materials showed that the radix of A.kusnezoffii Reichb.featuring a large quantity of starch was the same as starch with the characteristic peaks at 1,155,1,070 and 1,019.The leaf,flower and bud contained the similar aromatic hydrocarbons(1,600),glycosides(1,050-1,070),while lipids were not clear.The characteristic peaks of the buds,flowers and leaves were all at 1,595cm-1(vibration of phenyl framework)and 1,262cm-1(=C-O).Therefore,it was suggested that the common compound of the three parts be diterpenoid alkaloids.Second derivative IR spectroscopy showed that the characteristic peaks of radix was stronger than those of the flower,leaf and bud at 1,712cm-1(C=O),which proved that the quantity of characteristic peaks in the radix was larger than those in the flower,leaf and bud.In addition,six autopeaks at 1,745,1,650,1,560(the most strong),1,465,1,400,1,300 were detected from the radix.The similar autopeaks at 1,745,1,650,1,560(the most strong),1,465,1,400,1,300 were found in the leaf,bud and flower.In conclusion,it was demonstrated that the macro-fingerprint infrared spectroscopic identification method provided a large quantity of the comprehensive information and entirely grasped the quality of A.kusnezoffii Reichb.Besides,FTIR and 2D-IR provided massive information of the integral structures of the radix,leaf,flower and bud of A.kusnezoffii Reichb.and verified the differences between the four parts of the herb in physical structure and the contents,laying a foundation for further systematic work.
Keywords:Infrared spectroscopy  second derivative IR spectroscopy  two-dimensional IR correlation spectroscopy  Aconitum kusnezoffii Reichb.
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