Liang Xuejuan, Zhang Yuping, Chen Wei, Cai Ping, Zhang Shuihan, Chen Xiaoqin, Shi Shuyun
Research Institute of Chinese Medicine, Hunan Academy of Chinese Medicine, Changsha 410013, China.
College of Chemistry and Chemical Engineering, Central South University, Changsha 410083, PR China.
J Chromatogr A. 2015 Mar 13;1385:69-76. doi: 10.1016/j.chroma.2015.01.076. Epub 2015 Feb 2.
A challenge in coupling high-speed counter-current chromatography (HSCCC) online with high performance liquid chromatography (HPLC) for purity analysis was their time incompatibility. Consequently, HSCCC-HPLC was conducted by either controlling HPLC analysis time and HSCCC flow rate or using stop-and-go scheme. For natural products containing compounds with a wide range of polarities, the former would optimize experimental conditions, while the latter required more time. Here, a novel HSCCC-HPLC-diode array detector-mass spectrometry (HSCCC-HPLC-DAD-MS) was developed for undisrupted purification, analysis and identification of multi-compounds from natural products. Two six-port injection valves and a six-port switching valve were used as interface for collecting key HSCCC effluents alternatively for HPLC-DAD-MS analysis and identification. The ethyl acetate extract of Malus doumeri was performed on the hyphenated system to verify its efficacy. Five main flavonoids, 3-hydroxyphloridzin (1), phloridzin (2), 4',6'-dihydroxyhydrochalcone-2'-O-β-D-glucopyranoside (3, first found in M. doumeri), phloretin (4), and chrysin (5), were purified with purities over 99% by extrusion elution and/or stepwise elution mode in two-step HSCCC, and 25mM ammonium acetate solution was selected instead of water to depress emulsification in the first HSCCC. The online system shortened manipulation time largely compared with off-line analysis procedure and stop-and-go scheme. The results indicated that the present method could serve as a simple, rapid and effective way to achieve target compounds with high purity from natural products.
将高速逆流色谱法(HSCCC)与高效液相色谱法(HPLC)在线联用进行纯度分析面临的一个挑战是它们在时间上不兼容。因此,HSCCC-HPLC联用是通过控制HPLC分析时间和HSCCC流速或者采用停停走走的方案来进行的。对于含有极性范围广泛的化合物的天然产物,前者可优化实验条件,而后者则需要更多时间。在此,开发了一种新型的HSCCC-HPLC-二极管阵列检测器-质谱联用仪(HSCCC-HPLC-DAD-MS),用于对天然产物中的多种化合物进行不间断的纯化、分析和鉴定。使用两个六通进样阀和一个六通切换阀作为接口,交替收集关键的HSCCC流出物用于HPLC-DAD-MS分析和鉴定。对多花海棠的乙酸乙酯提取物在该联用系统上进行分析,以验证其有效性。通过两步HSCCC中的挤出洗脱和/或梯度洗脱模式,纯化得到了5种主要黄酮类化合物,分别为3-羟基根皮苷(1)、根皮苷(2)、4',6'-二羟基二氢查耳酮-2'-O-β-D-吡喃葡萄糖苷(3,首次在多花海棠中发现)、根皮素(4)和白杨素(5),纯度均超过99%,并且在第一步HSCCC中选择25mM乙酸铵溶液代替水以抑制乳化现象。与离线分析程序和停停走走方案相比,该在线系统大大缩短了操作时间。结果表明,本方法可作为一种从天然产物中获得高纯度目标化合物的简单、快速且有效的方法。