Lessigiarska I, Pajeva I, Cronin M T D, Worth A P
ECVAM, Institute for Health and Consumer Protection, European Commission Joint Research Centre, 21020 Ispra, Italy.
SAR QSAR Environ Res. 2005 Feb-Apr;16(1-2):79-91. doi: 10.1080/10629360412331319817.
In the present study, we investigated structure-permeability relationships for the blood-brain barrier (BBB) of 16 imipramine and phenothiazine derivatives. The compounds belong to structurally related chemical classes of catamphiphiles, representatives of which have previously been investigated for membrane activity and ability to overcome multidrug resistance (MDR) in tumour cells. These studies show that phenothiazines and structurally related drugs (imipramines, thioxanthenes, acridines) interact with membrane phospholipids, and additionally inhibit the MDR transport P-glycoprotein. This study aimed to identify common 3D structural characteristics of these compounds related to their mechanism of transport across the BBB. For this purpose Genetic Algorithm Similarity Programme (GASP), Comparative Molecular Field Analysis (CoMFA) and Comparative Molecular Similarity Index Analysis (CoMSIA) were applied. The results demonstrate the importance of the spatial distribution of molecular hydrophobicity for the BBB penetration of the investigated compounds. It suggests that the compounds should follow a specific profile of two hydrophobic and one hydrophilic centres in a particular space configuration, for optimal BBB penetration.
在本研究中,我们研究了16种丙咪嗪和吩噻嗪衍生物的血脑屏障(BBB)的结构-渗透性之间的关系。这些化合物属于结构相关的双亲性化学类别,其代表物先前已针对膜活性和克服肿瘤细胞多药耐药性(MDR)的能力进行了研究。这些研究表明,吩噻嗪类和结构相关药物(丙咪嗪、噻吨类、吖啶类)与膜磷脂相互作用,并额外抑制MDR转运蛋白P-糖蛋白。本研究旨在确定这些化合物与它们穿过血脑屏障的转运机制相关的共同三维结构特征。为此应用了遗传算法相似性程序(GASP)、比较分子场分析(CoMFA)和比较分子相似性指数分析(CoMSIA)。结果表明分子疏水性的空间分布对于所研究化合物穿过血脑屏障的重要性。这表明这些化合物应以特定的空间构型遵循两个疏水中心和一个亲水中心的特定分布,以实现最佳的血脑屏障穿透。