Pharmaceutical Technology Transfer Center, Yaroslavl State Pedagogical University Named After K.D. Ushinsky, 108 Respublikanskaya St., Yaroslavl, 150000, Russian Federation.
Department of Organic Chemistry, Kosygin Russian State University, 115035, Moscow, Russia.
Mol Divers. 2024 Jun;28(3):1009-1021. doi: 10.1007/s11030-023-10628-4. Epub 2023 Mar 19.
Monoamine oxidase (MAO) are flavoenzymes that metabolize neurotransmitter, dietary and xenobiotic amines to their corresponding aldehydes with the production of hydrogen peroxide. Two isoforms, MAO-A and MAO-B, are expressed in humans and mammals, and display different substrate and inhibitor specificities as well as different physiological roles. MAO inhibitors are of much therapeutic value and are used for the treatment of neuropsychiatric and neurodegenerative disorders such as depression, anxiety disorders, and Parkinson's disease. To discover MAO inhibitors with good potencies and interesting isoform specificities, the present study synthesized a series of 2,1-benzisoxazole (anthranil) derivatives and evaluated them as in vitro inhibitors of human MAO. The compounds were in most instances specific inhibitors of MAO-B with the most potent MAO-B inhibition observed for 7a (IC = 0.017 µM) and 7b (IC = 0.098 µM). The most potent MAO-A inhibition was observed for 3l (IC = 5.35 µM) and 5 (IC = 3.29 µM). It is interesting to note that 3-(2-aminoethoxy)-1,2-benzisoxazole derivatives, the 1,2-benzisoxazole, zonisamide, as well as the isoxazole compound, leflunomide, have been described as MAO inhibitors. This is however the first report of MAO inhibition by derivatives of the 2,1-benzisoxazole structural isomer.
单胺氧化酶(MAO)是一类黄素酶,可将神经递质、膳食和外源性胺代谢为相应的醛,同时产生过氧化氢。两种同工酶 MAO-A 和 MAO-B 在人类和哺乳动物中表达,显示出不同的底物和抑制剂特异性以及不同的生理作用。MAO 抑制剂具有重要的治疗价值,用于治疗神经精神和神经退行性疾病,如抑郁症、焦虑症和帕金森病。为了发现具有良好效力和有趣的同工酶特异性的 MAO 抑制剂,本研究合成了一系列 2,1-苯并异恶唑(邻氨基苯甲酸)衍生物,并评估了它们作为人 MAO 的体外抑制剂的活性。这些化合物在大多数情况下是 MAO-B 的特异性抑制剂,其中 7a(IC50=0.017 µM)和 7b(IC50=0.098 µM)对 MAO-B 的抑制作用最强。对 MAO-A 的最强抑制作用观察到 3l(IC50=5.35 µM)和 5(IC50=3.29 µM)。有趣的是,3-(2-氨基乙氧基)-1,2-苯并异恶唑衍生物、1,2-苯并异恶唑、佐米曲坦以及异恶唑化合物来氟米特已被描述为 MAO 抑制剂。然而,这是 2,1-苯并异恶唑结构异构体衍生物对 MAO 抑制作用的首次报道。