Ren S, Das A, Lien E J
University of Southern California, School of Pharmacy, Department of Pharmaceutical Sciences, Los Angeles 90033, USA.
J Drug Target. 1996;4(2):103-7. doi: 10.3109/10611869609046268.
A general mathematical model involving partition coefficient, molecular weight and hydrogen bonding is used to correlate the structures and permeability of various organic compounds through the toad urinary bladder and human red blood cell (RBC) membranes. Log Per (permeability) is correlated with log Po/w (partition coefficient in olive oil/water, or ether/water), log MW (molecular weight) and Hb (hydrogen bonds). Log Po/w is the most important factor among three parameters examined. While increased MW always has a negative effect on the permeability, increased Hb can have either a slightly positive or a slightly negative effect depending on the solvent and membrane systems used. Systematic comparison of the QSAR's (quantitative structure activity relationship) of different biological membranes may serve as a useful guide in drug targeting to different tissues and cell types.
一个涉及分配系数、分子量和氢键的通用数学模型被用于关联各种有机化合物通过蟾蜍膀胱和人红细胞(RBC)膜的结构与渗透性。Log Per(渗透率)与Log Po/w(橄榄油/水或乙醚/水中的分配系数)、Log MW(分子量)和Hb(氢键)相关。在研究的三个参数中,Log Po/w是最重要的因素。虽然分子量增加总是对渗透性有负面影响,但氢键增加根据所使用的溶剂和膜系统可能有轻微的正向或负向影响。对不同生物膜的定量构效关系(QSAR)进行系统比较,可为药物靶向不同组织和细胞类型提供有用指导。