Zhang M Q, Caldirola P, Timmerman H
Leiden/Amsterdam Center for Drug Research, Department of Pharmacochemistry, Vrije Universiteit, The Netherlands.
Agents Actions. 1994 Jun;41 Spec No:C140-2. doi: 10.1007/BF02007802.
A series of terfenadine derivatives were evaluated for enantioselectivity on histamine H1-receptors and calcium channels. Whereas H1-receptors are only sterically discriminative against the benzhydryl part of the molecules, calcium channels showed enantioselectivity to either the phenylbutyl part or the benzhydryl part provided that an appropriate lipophilicity is preserved at the chiral site. It is speculated that the hydrophilicity of the butanol moiety is responsible for the lack of stereoselectivity of terfenadine enantiomers since it drives the side chain out of the stereoselective site of calcium channels, which are lipophilic. In four different test systems, (guinea-pig ileum, guinea-pig lung membranes, rat aorta and rat cortex membranes), this series of compounds generally showed about 10 times higher activity on H1-receptors than on calcium channels. By introducing a chiral center in the different parts of the molecule we were able to increase the selectivity of an enantiomer VUF4648 to calcium channels.
对一系列特非那定衍生物进行了组胺H1受体和钙通道对映选择性评估。H1受体仅对分子的二苯甲基部分存在空间识别,而钙通道只要在手性位点保持适当的亲脂性,就会对苯基丁基部分或二苯甲基部分表现出对映选择性。据推测,丁醇部分的亲水性导致特非那定对映体缺乏立体选择性,因为它将侧链推出了亲脂性钙通道的立体选择性位点。在四个不同的测试系统(豚鼠回肠、豚鼠肺膜、大鼠主动脉和大鼠皮层膜)中,该系列化合物在H1受体上的活性通常比对钙通道高约10倍。通过在分子的不同部位引入手性中心,我们能够提高对映体VUF4648对钙通道的选择性。