Department of Organic Chemistry, Faculty of Pharmacy, Jagiellonian University Medical College, 30-688 Kraków, Poland.
Department of Pharmacodynamics, Faculty of Pharmacy, Jagiellonian University Medical College, 30-688 Kraków, Poland.
Molecules. 2021 Jun 23;26(13):3828. doi: 10.3390/molecules26133828.
The complex pathophysiology of depression, together with the limits of currently available antidepressants, has resulted in the continuous quest for alternative therapeutic strategies. Numerous findings suggest that pharmacological blockade of α-adrenoceptor might be beneficial for the treatment of depressive symptoms by increasing both norepinephrine and serotonin levels in certain brain areas. Moreover, the antidepressant properties of 5-HT receptor antagonists have been widely demonstrated in a large set of animal models. Considering the potential therapeutic advantages in targeting both α-adrenoceptors and 5-HT receptors, we designed a small series of arylsulfonamide derivatives of (dihydrobenzofuranoxy)ethyl piperidines as dually active ligands. Following green chemistry principles, the designed compounds were synthesized entirely using a sustainable mechanochemical approach. The identified compound behaved as a potent α/5-HT receptor antagonist and displayed moderate-to-high selectivity over α-adrenoceptor subtypes and selected serotonin and dopaminergic receptors. Finally, compound improved performance of mice in the forced swim test, displaying similar potency to the reference drug mirtazapine.
抑郁症的复杂病理生理学,以及目前可用的抗抑郁药的局限性,导致人们不断寻求替代治疗策略。大量研究结果表明,通过增加某些脑区的去甲肾上腺素和 5-羟色胺水平,药理学阻断 α-肾上腺素受体可能有益于治疗抑郁症状。此外,5-HT 受体拮抗剂在大量动物模型中已广泛证明具有抗抑郁作用。鉴于靶向 α-肾上腺素受体和 5-HT 受体的潜在治疗优势,我们设计了一系列(二氢苯并呋喃氧基)乙基哌啶的芳基磺酰胺衍生物作为双重活性配体。根据绿色化学原则,完全使用可持续的机械化学方法合成了设计的化合物。鉴定出的化合物 表现出作为一种有效的 α/5-HT 受体拮抗剂,并对 α-肾上腺素受体亚型以及选定的 5-羟色胺和多巴胺受体具有中等至高的选择性。最后,化合物 改善了强迫游泳试验中小鼠的表现,其效力与参比药物米氮平相当。