Mei Jie, Xu Jian-Rong, Xiao Yu-Xiu, Zhang Qian-Rui, Feng Yu-Qi
College of Pharmacy, Wuhan University, Wuhan 430072, PR China.
Talanta. 2008 Mar 15;75(1):104-10. doi: 10.1016/j.talanta.2007.10.037. Epub 2007 Oct 26.
Immobilized phospholipid capillary electrophoresis (IPCE) was developed for studying the interactions between a set of nonsteroidal anti-inflammatory drugs (NSAIDs) and membrane and predicting the biological activity of NSAIDs. Supported vesicle layers and supported phospholipid bilayers were attached to the inner surface of a capillary wall simply by rinsing with liposome solutions. The liposomes, composed of soybean phosphatidylcholine (SPC) or SPC and different proportions of cholesterol (Ch), were small unilamellar vesicles prepared by sonication. The normalized capacity factor (K(IPCE)) was introduced into IPCE for evaluating drug-membrane interactions. Related theories and equations were derived to calculate K(IPCE) values from apparent migration time of a solute and electroosmotic flow. The strong relationships were observed between logK(IPCE) (SPC) values and logK(lw) values (the partition coefficients determined in free SPC-liposome partitioning system) (R=0.9855 and P<0.0001) or logK(ILC) values (the normalized capacity factors determined by immobilized POPC-liposome chromatography, POPC represents 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine) (R=0.9875 and P<0.0001). In addition, logK(IPCE) (SPC/Ch 80:20%) values correlated well with the pIC50 (the minus logarithm of IC50) values for cyclooxygenase 2 determined on intact cells (R=0.959 and P<0.001). These results confirmed that IPCE, K(IPCE) value as evaluation index, can be effectually used for studying drug-membrane interactions and it has the potential to predict drug activity. Cholesterol-containing (20 mol%) liposomes may be more suitable to mimic real cell membrane.
固定化磷脂毛细管电泳(IPCE)被开发用于研究一组非甾体抗炎药(NSAIDs)与膜之间的相互作用,并预测NSAIDs的生物活性。通过用脂质体溶液冲洗,将支撑的囊泡层和支撑的磷脂双层简单地附着到毛细管壁的内表面。由大豆磷脂酰胆碱(SPC)或SPC与不同比例胆固醇(Ch)组成的脂质体是通过超声处理制备的小单层囊泡。将归一化容量因子(K(IPCE))引入IPCE以评估药物与膜的相互作用。推导了相关理论和方程,以根据溶质的表观迁移时间和电渗流计算K(IPCE)值。观察到logK(IPCE)(SPC)值与logK(lw)值(在游离SPC-脂质体分配系统中测定的分配系数)(R = 0.9855,P < 0.0001)或logK(ILC)值(通过固定化POPC-脂质体色谱法测定的归一化容量因子,POPC代表1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱)(R = 0.9875,P < 0.0001)之间存在很强的相关性。此外,logK(IPCE)(SPC/Ch 80:20%)值与在完整细胞上测定的环氧合酶2的pIC50(IC50的负对数)值具有良好的相关性(R = 0.959,P < 0.001)。这些结果证实,以K(IPCE)值为评价指标的IPCE可有效用于研究药物与膜的相互作用,并具有预测药物活性的潜力。含胆固醇(20 mol%)的脂质体可能更适合模拟真实细胞膜。