Department of Pharmacology, Beijing Laboratory for Biomedical Detection Technology and Instrument, School of Basic Medical Sciences, Capital Medical University, Beijing, 100069, China.
Beijing Engineering Research Center for Nervous System Drugs, Beijing, 100053, China.
Sci Rep. 2019 Feb 13;9(1):2000. doi: 10.1038/s41598-018-38305-9.
To compare and evaluate the differences of stereoselective activity, the binding affinity, metabolism, transport and molecular docking of phencynonate isomers to muscarinic acetylcholine receptor (mAChR) were investigated in this study. The rotation stimulation and locomotor experiments were used to evaluate anti-motion sickness effects. The competitive affinity with [H]-QNB and molecular docking were used for studying the interactions between the two isomers and mAChR. The stereoselective mechanism of isomers was investigated by incubation with rat liver microsomes, a protein binding assay and membrane permeability assay across a Caco-2 cell monolayer using a chiral column HPLC method. The results indicated that S-isomer was more effective against motion sickness and had not anxiogenic action at therapeutic doses. S-isomer has the higher affinity and activity for mAChR in cerebral cortex and acted as a competitive mAChR antagonist. The stereoselective elimination of S-isomer was primarily affected by CYP1B1 and 17A1 enzymes, resulting in a higher metabolic stability and slower elimination. Phencynonate S isomer, as a eutomer and central anticholinergic chiral drug, is a novel anti-motion sickness drug with higher efficacy and lower central side effect. Our data assisted the development of a novel drug and eventual use of S-isomer in clinical practice.
本研究旨在比较和评估苯环壬酯对映异构体在立体选择性活性、与毒蕈碱乙酰胆碱受体(mAChR)的结合亲和力、代谢、转运和分子对接方面的差异。旋转刺激和运动实验用于评估抗晕动病效果。通过与 [H]-QNB 的竞争性亲和力和分子对接研究两种对映异构体与 mAChR 的相互作用。通过与大鼠肝微粒体孵育、蛋白结合测定和 Caco-2 细胞单层跨膜通透性测定(使用手性柱 HPLC 方法)研究对映异构体的立体选择性机制。结果表明,S-异构体对晕动病更有效,且在治疗剂量下没有致焦虑作用。S-异构体在大脑皮层对 mAChR 具有更高的亲和力和活性,并且作为竞争性 mAChR 拮抗剂起作用。S-异构体的立体选择性消除主要受 CYP1B1 和 17A1 酶的影响,导致更高的代谢稳定性和更慢的消除。苯环壬酯 S 异构体作为内消旋体和中枢抗胆碱能手性药物,是一种新型高效、低中枢副作用的抗晕动病药物。我们的数据有助于新型药物的开发,并最终在临床实践中使用 S-异构体。