Key Laboratory of Structure-Based Drug Design and Discovery, Shenyang Pharmaceutical University, Ministry of Education, Shenyang 110016, China.
Molecules. 2013 Dec 4;18(12):14920-34. doi: 10.3390/molecules181214920.
O-Desmethylvenlafaxine (desvenlafaxine, ODV) is a recently approved antidepressant which in some clinical studies failed to meet a satisfactory end-point. The aim of this study was to prepare a series of phenolic esters of ODV and evaluate their potential as ODV prodrugs with improved brain uptake. Fifteen phenolic esters (compounds 1a-o) were synthesized and their pharmacokinetic profiles evaluated in rat. The four compounds producing the highest relative bioavailability of ODV in rat (compounds 1c, 1e, 1n, 1o) were then studied to evaluate their brain uptake. Of these four compounds, compound 1n (the piperonylic acid ester of ODV) demonstrated the highest C(max) of ODV both in the rat hypothalamus and total brain. Finally the pharmacokinetics of 1n were evaluated in beagle dog where the increase in relative bioavailability of ODV was found to be as great as in rat. This high relative bioavailability of ODV coupled with its good brain penetration make 1n the most promising candidate for development as an ODV prodrug.
O-去甲文拉法辛(去甲文拉法辛,ODV)是一种最近批准的抗抑郁药,在一些临床研究中未能达到令人满意的终点。本研究旨在制备一系列 ODV 的酚酯,并评估它们作为改善脑摄取的 ODV 前药的潜力。合成了 15 种酚酯(化合物 1a-o),并在大鼠中评价了它们的药代动力学特征。然后对在大鼠中产生 ODV 相对生物利用度最高的 4 种化合物(化合物 1c、1e、1n、1o)进行研究,以评估其脑摄取。在这 4 种化合物中,化合物 1n(ODV 的胡椒基酸酯)在大鼠下丘脑和全脑中均显示出最高的 ODV 的 Cmax。最后在比格犬中评价了 1n 的药代动力学,发现 ODV 的相对生物利用度增加与在大鼠中一样大。ODV 的这种高相对生物利用度加上其良好的脑穿透性,使 1n 成为作为 ODV 前药开发的最有前途的候选药物。