Pharmaceutical Technology Transfer Center, Ushinsky Yaroslavl State Pedagogical University, 108 Respublikanskaya St., Yaroslavl 150000, Russian Federation.
Institute of Chemistry, Saint Petersburg State University, 26 Universitetskii Prospect, Peterhof, Saint Petersburg 198504, Russian Federation.
Bioorg Med Chem Lett. 2019 Jan 1;29(1):40-46. doi: 10.1016/j.bmcl.2018.11.018. Epub 2018 Nov 9.
Series of structurally diverse 2-imidazoline derivatives have been synthesized by condensation of substituted aldehydes with ethylenediamine, Pd-catalyzed N-arylation of 2-imidazolines and by the formation of 1,2,4-oxadiazoles and benzoxazepines from 2-imidazoline-containing precursors. The 2-imidazoline derivatives were evaluated as potential inhibitors of human monoamine oxidase (MAO) A and B. Among the 2-imidazolines, good potency inhibitors were discovered with compound 9p (IC = 0.012 µM) being the most potent MAO-B inhibitor, while compound 9d (IC = 0.751 µM) was the most potent MAO-A inhibitor of the series. These potencies are in the same range as those of reference MAO inhibitors used in the clinic. Among 33 compounds evaluated, 13 exhibited IC values in the submicromolar range for the inhibition of an MAO isoform. It is postulated that the imidazoline moieties of some of these inhibitors may be recognized by the imidazoline I-binding site of MAO. Good potency MAO inhibitors may be useful for the treatment of neuropsychiatric and neurodegenerative disorders such as depression and Parkinson's disease, and future application for the treatment of prostate cancer, congestive heart failure and Alzheimer's disease. In addition, high potency 2-imidazoline-derived MAO inhibitors may be used as potential probes for the imidazoline binding sites of the MAOs, as well as to determine alternative binding regions of imidazoline within the MAO active site.
已经通过缩合取代的醛与乙二胺、钯催化的 2-咪唑啉的 N-芳基化以及通过 2-咪唑啉含前体形成 1,2,4-噁二唑和苯并恶唑嗪合成了一系列结构多样的 2-咪唑啉衍生物。这些 2-咪唑啉衍生物被评估为潜在的人单胺氧化酶(MAO)A 和 B 的抑制剂。在 2-咪唑啉中,发现了具有良好潜力的抑制剂,其中化合物 9p(IC=0.012µM)是最有效的 MAO-B 抑制剂,而化合物 9d(IC=0.751µM)是该系列中最有效的 MAO-A 抑制剂。这些效力与临床使用的参考 MAO 抑制剂相当。在所评估的 33 种化合物中,有 13 种对 MAO 同工酶的抑制作用具有亚微摩尔范围内的 IC 值。据推测,这些抑制剂中的一些咪唑啉部分可能被 MAO 的咪唑啉 I 结合位点识别。具有良好效力的 MAO 抑制剂可能对治疗神经精神和神经退行性疾病(如抑郁症和帕金森病)有用,未来也可能用于治疗前列腺癌、充血性心力衰竭和阿尔茨海默病。此外,高效力的 2-咪唑啉衍生的 MAO 抑制剂可用作 MAO 咪唑啉结合位点的潜在探针,以及确定 MAO 活性位点内咪唑啉的替代结合区域。