Wu Xiaoxue, He Jiao, Xu Huarong, Bi Kaishun, Li Qing
School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, China; National and Local United Engineering Laboratory for Key Technology of Chinese Material Medica Quality Control, Shenyang Pharmaceutical University, Shenyang, China.
J Sep Sci. 2014 Sep;37(18):2490-8. doi: 10.1002/jssc.201400494. Epub 2014 Jul 24.
A novel and improved method for the quality assessment of Cinnamomi Ramulus was developed and completely validated. The method was established using fingerprint technology and simultaneous quantitative determination of six main marker compounds including coumarin, cinnamic alcohol, cinnamic acid, 2-methoxy cinnamic acid, cinnamaldehyde, and 2-methoxy cinnamaldehyde in the herbal medicine for the first time. A newly developed high-performance thin-layer chromatography method, which achieved simultaneous definition of five marker components by comparing the colors and retardation factor values of the bands in high-performance thin-layer chromatography, was first used for the authentication of Cinnamomi Ramulus. The fingerprints of 26 batches of herbal samples from different regions of China showed very similar chromatographic patterns that were evaluated by similarity analysis and hierarchical clustering analysis. In addition, six marker compounds were simultaneously determined using single standard to determine multiple components by the relative response factors. Compared with the external standard method, the new quantitative method was validated to determine multiple compounds in 26 batches of Cinnamomi Ramulus samples. All results demonstrated that the simple and rapid method could be effectively utilized for the quality control of Cinnamomi Ramulus.
开发并全面验证了一种用于桂枝质量评估的新颖且改进的方法。该方法首次采用指纹图谱技术,并同时定量测定了该草药中包括香豆素、肉桂醇、肉桂酸、2-甲氧基肉桂酸、肉桂醛和2-甲氧基肉桂醛在内的六种主要标志性化合物。一种新开发的高效薄层色谱法,通过比较高效薄层色谱中条带的颜色和比移值实现了对五种标志性成分的同时鉴别,首次用于桂枝的鉴定。来自中国不同地区的26批草药样品的指纹图谱显示出非常相似的色谱模式,通过相似度分析和层次聚类分析进行了评估。此外,采用单标多组分法通过相对响应因子同时测定六种标志性化合物。与外标法相比,新的定量方法经验证可用于测定26批桂枝样品中的多种化合物。所有结果表明,该简单快速的方法可有效用于桂枝的质量控制。