Hassan Heba A, Abdel-Aziz Mohamed, Abuo-Rahma Gamal El-Din A A, Farag Hassan H
Department of Medicinal Chemistry, Faculty of Pharmacy, Minia University, Minia, Egypt.
Bioorg Med Chem. 2009 Feb 15;17(4):1681-92. doi: 10.1016/j.bmc.2008.12.051. Epub 2008 Dec 29.
A group of 1-malonyl-1,4-dihydropyridine derivatives were synthesized as novel carrier systems for site-specific and sustained drug delivery to the brain. Such carriers are expected to be stable against air oxidation due to the presence of the carbonyl group close to nitrogen of the dihydropyridine. These carrier systems were attached to a group of different aldehydes to afford novel quaternary pyridinium derivatives 9a-e, 11a-d, 13 and 18a-b. Reduction of the prepared quaternary pyridinium derivatives with sodium dithionite afforded a novel group of 1-malonyl-1,4-dihydropyridine chemical delivery systems (CDSs) 10a-e, 12a-d, 14 and 19a-b. The synthesized 1-malonyl-1,4-dihydropyridine CDSs were subjected to various chemical and biological investigations to evaluate their ability to cross the blood-brain barrier, and to be oxidized biologically into their corresponding quaternary derivatives. The in vitro oxidation studies showed that most of the 1-malonyl-1,4-dihydropyridine CDSs could be oxidized into their corresponding quaternary derivatives at an adequate rate. The in vivo studies showed that compounds 10c and 14 were able to cross the blood-brain barrier at detectable concentrations. Moreover, the pyridinium quaternary intermediates 9a, 9c, 13, 18a and their corresponding dihydro derivatives 10a, 10c, 14 and 19a were screened for their antidepressant activity using tail suspension behavioral despair test compared to imipramine as a reference at a dose level of 10mg/kg. The results indicated that compounds 13, 14 and 19a induced remarkable antidepressant activity comparable to imipramine. Compounds 10a, 10c and 18a exhibited good antidepressant activity, their activities nearly equal to 92.8%, 86.7% and 90.20% of the activity of imipramine, respectively. The other derivatives 9a and 9c exhibited moderate antidepressant activity compared with imipramine.
合成了一组1-丙二酰基-1,4-二氢吡啶衍生物,作为用于向脑进行位点特异性和持续药物递送的新型载体系统。由于二氢吡啶氮原子附近存在羰基,预计此类载体对空气氧化稳定。这些载体系统与一组不同的醛相连,得到新型季铵吡啶衍生物9a - e、11a - d、13和18a - b。用连二亚硫酸钠还原制得的季铵吡啶衍生物,得到一组新型的1-丙二酰基-1,4-二氢吡啶化学递送系统(CDS)10a - e、12a - d、14和19a - b。对合成的1-丙二酰基-1,4-二氢吡啶CDS进行了各种化学和生物学研究,以评估它们穿越血脑屏障的能力,以及在生物体内被氧化为其相应季铵衍生物的能力。体外氧化研究表明,大多数1-丙二酰基-1,4-二氢吡啶CDS能够以适当的速率被氧化为其相应的季铵衍生物。体内研究表明,化合物10c和14能够以可检测的浓度穿越血脑屏障。此外,与作为对照的剂量为10mg/kg的丙咪嗪相比,使用悬尾行为绝望试验筛选了吡啶季铵中间体9a、9c、13、18a及其相应的二氢衍生物10a、10c、14和19a的抗抑郁活性。结果表明,化合物13、14和19a诱导出与丙咪嗪相当的显著抗抑郁活性。化合物10a、10c和18a表现出良好的抗抑郁活性,其活性分别接近丙咪嗪活性的92.8%、86.7%和90.20%。与丙咪嗪相比,其他衍生物9a和9c表现出中等抗抑郁活性。