Laboratory of Drug Disposition and Pharmacokinetics, Faculty of Pharma-Sciences, Teikyo University, 2-11-1 Kaga, Itabashi, Tokyo 173-8605, Japan.
Laboratory of Medicinal Chemistry, Faculty of Pharma-Sciences, Teikyo University, 2-11-1 Kaga, Itabashi, Tokyo 173-8605, Japan.
J Pharm Sci. 2021 Jan;110(1):397-403. doi: 10.1016/j.xphs.2020.09.001. Epub 2020 Sep 6.
There is increasing evidence that a proton-coupled organic cation (H/OC) antiporter facilitates uptake of various central nervous system-active drugs, such as the histamine H1 receptor antagonist diphenhydramine, into the brain. The purpose of this study was to clarify the structural requirements for H/OC antiporter-mediated uptake into hCMEC/D3 cells, an established in vitro model of the human blood-brain barrier, by using a series of diphenhydramine analogs. For this purpose, we synthesized seven tertiary amine analogs and three amide analogs. Uptake of all the amines was facilitated by an outwardly directed H gradient and inhibited by pyrilamine, a typical substrate and a strong inhibitor of the H/OC antiporter. Further, uptake of most of the amines was trans-stimulated by pyrilamine. Uptake of the amines was 21 times faster than that of the amides on average, even though the lipophilicity (log D) of the amines is lower than that of the amides. Amines containing a pyrrolidine or piperidine ring showed the highest uptake rates. Our results suggest that an amine moiety, especially a heterocyclic amine moiety, is important for recognition and transport by the H/OC antiporter.
越来越多的证据表明,质子偶联有机阳离子(H/OC)转运体有助于各种中枢神经系统活性药物进入大脑,如组胺 H1 受体拮抗剂苯海拉明。本研究的目的是通过一系列苯海拉明类似物,阐明 H/OC 转运体介导 hCMEC/D3 细胞摄取的结构要求,hCMEC/D3 细胞是一种已建立的体外血脑屏障模型。为此,我们合成了七种叔胺类似物和三种酰胺类似物。所有胺类的摄取均由外向 H 梯度促进,并被吡拉明抑制,吡拉明是 H/OC 转运体的典型底物和强抑制剂。此外,大多数胺类的摄取均被吡拉明反式刺激。与酰胺相比,胺类的摄取速度平均快 21 倍,尽管胺类的脂溶性(log D)低于酰胺类。含有吡咯烷或哌啶环的胺类显示出最高的摄取速率。我们的结果表明,胺基部分,特别是杂环胺基部分,对于 H/OC 转运体的识别和转运很重要。