Cao Wan, Hu Shuai-Shuai, Ying Xue-Zhen, Ye Li-Hong, Cao Jun
Department of Pharmaceutical Engineering, College of Material Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou, P. R. China.
Electrophoresis. 2015 Apr;36(7-8):1055-63. doi: 10.1002/elps.201400542. Epub 2015 Mar 24.
This report describes the use of surfactant-coated graphitized multiwalled carbon nanotubes (SC-GMWNTs) as a novel pseudostationary phase in CE with diode array detection for the determination of phenolic acids and tanshinones in herbal and urine samples. Several parameters influencing the separation were studied, such as the concentrations of SDS, GMWNTs, and isopropanol; choice of carbon nanotubes; sodium borate content; and buffer pH. The results revealed that the presence of SC-GMWNTs in buffer enhanced the separation efficiency for the target analytes relative to conventional micelles due to the strong interaction between the surface of the GMWNTs and the target compounds. Under the optimum conditions, the method showed good linearity, with correlation coefficients higher than 0.9950. LODs were in the range of 0.71-3.10 μg/mL. Furthermore, satisfactory separations were achieved with good recovery values in the range of 89.97 and 103.30% when 10 mM borate, 30 mM SDS, 10% isopropanol, and 6 μg/mL SC-GMWNTs were introduced into the buffer solution.
本报告描述了使用表面活性剂包覆的石墨化多壁碳纳米管(SC-GMWNTs)作为毛细管电泳中一种新型的准固定相,并结合二极管阵列检测,用于测定草药和尿液样品中的酚酸和丹参酮。研究了影响分离的几个参数,如十二烷基硫酸钠(SDS)、GMWNTs和异丙醇的浓度;碳纳米管的选择;硼酸钠含量;以及缓冲液pH值。结果表明,由于GMWNTs表面与目标化合物之间的强相互作用,缓冲液中SC-GMWNTs的存在相对于传统胶束提高了目标分析物的分离效率。在最佳条件下,该方法具有良好的线性,相关系数高于0.9950。检测限在0.71-3.10μg/mL范围内。此外,当在缓冲溶液中加入10 mM硼酸盐、30 mM SDS、10%异丙醇和6μg/mL SC-GMWNTs时,实现了令人满意的分离,回收率在89.97%至103.30%之间。