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Preliminary Screening and Analysis of Biomembrane Permeable Compounds in Herbal Medicines: Hollow Fiber Liposome Microscreening Combined with HPLC

机译:草药中生物膜渗透性化合物的初步筛选和分析:中空纤维脂质体微筛选与HPLC相结合

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摘要

An advantageous method based on hollow fiber liposome microscreening (HFLMS) combined with high-performance liquid chromatography (HPLC) has been developed and used in preliminary screening and analysis of biomembrane permeable compounds from herbal medicines (HMs). In the method, a liposome hollow fiber was prepared as a screening tool; permeable compounds that could specifically bind to liposomes were screened from herbal extract to liposome in the pores and lumen of hollow fiber, then permeable compounds were dissociated from liposomes and analyzed by HPLC. The chromatographic separation was applied with a Zorbax Eclipse XDB-C18 column by a gradient elution using acetonitrile, methanol, and phosphoric acid aqueous solution as the mobile phases. In the study, influencing factors of the screened target compounds were investigated and optimized. Under optimum conditions, the surface properties of liposome hollow fibers were characterized, the nonspecific binding between the active center of hollow fiber and the bioactive components were investigated, the repeatability of this method was tested. And eight permeable compounds of flavonoids and anthraquinones from HMs were preliminarily screened and analyzed by HFLMS-HPLC. The results demonstrated that new method is a simple, fast, effective, and reliable method for preliminary screening and analyzing biomembrane permeable ingredients in HMs, and it can be used in screening other permeable compounds in HMs.
机译:已经开发了一种基于中空纤维脂质体微筛查(HFLMS)结合高效液相色谱(HPLC)的有利方法,并将其用于对来自草药(HMs)的生物膜可渗透化合物进行初步筛查和分析。在该方法中,制备脂质体中空纤维作为筛选工具。从中草药提取物到中空纤维的孔和腔中的脂质体中筛选出可以特异性结合脂质体的可渗透性化合物,然后将可渗透性化合物从脂质体中解离并进行HPLC分析。使用Zorbax Eclipse XDB-C18色谱柱,通过乙腈,甲醇和磷酸水溶液作为流动相进行梯度洗脱,进行色谱分离。在研究中,对筛选出的目标化合物的影响因素进行了研究和优化。在最佳条件下,表征了脂质体中空纤维的表面性质,研究了中空纤维活性中心与生物活性成分之间的非特异性结合,测试了该方法的可重复性。初步筛选了HMs中的8种黄酮类和蒽醌类渗透性化合物,并用HFLMS-HPLC进行了分析。结果表明,新方法是一种简便,快速,有效,可靠的方法,可以对HMs中的生物膜渗透性成分进行初步筛选和分析,可用于HMs中其他可渗透性化合物的筛选。

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