首页> 外文期刊>Russian Chemical Bulletin >Synthesis of new N-(pyridin-3-ylmethyl)-2-aminothiazoline derivatives possessing anticholinesterase and antiradical activity as potential multifunctional agents for the treatment of neurodegenerative diseases
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Synthesis of new N-(pyridin-3-ylmethyl)-2-aminothiazoline derivatives possessing anticholinesterase and antiradical activity as potential multifunctional agents for the treatment of neurodegenerative diseases

机译:具有抗胆碱酯酶和抗近噻唑啉衍生物的新型N-(吡啶-3-基甲基)-2-氨基噻唑啉衍生物作为潜在多功能药物治疗神经变性疾病的潜在多功能药物

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摘要

New N-(pyridin-3-ylmethyl)-2-aminothiazolines containing various substituents at the 5 position of the thiazoline ring and the 4-tert-butylbenzyl, 4-isopropylbenzyl, or 4-fluorobenzyl moiety at the nitrogen atom of the amino group were synthesized. The inhibitory activity of the synthesized compounds against human erythrocyte acetylcholinesterase (AChE, EC 3.1.1.7), equine serum butyrylcholinesterase (BChE, EC 3.1.1.8), and porcine liver carboxylesterase (CaE, EC 3.1.1.1) was evaluated and their antioxidant properties were studied by ABTS assay. N-(Pyridin-3-ylmethyl)-2-aminothiazolines proveded to be very weak AChE inhibitors, while their inhibitory activity against BChE and CaE was structure-dependent. 2-Aminothiazolines containing the 4-tert-butylbenzyl moiety are more efficient BChE inhibitors compared to the derivatives containing the 4-isopropylbenzyl or 4-fluorobenzyl substituent. An analysis of the dependence of the esterase profile of N-(pyridin-3-ylmethyl)-2-aminothiazolines on the structure of the substituent at the 5 position of the thiazoline ring of these compounds demonstrated that the derivatives containing the iodomethyl substituent possess the highest anti-BChE activity, the compounds with R-2 = H and R-3 = CH2I have the optimal esterase profile. Regardless of the structure of the substituents in the benzyl moiety, all N-(pyridin-3-ylmethyl)-2-aminothiazolines containing the iodomethyl substituent at the 5 position of the thiazoline ring exhibited high radical scavenging activity comparable with that of the standard antioxidant Trolox. N-(Pyridin-3-ylmethyl)-2-aminothiazolines were shown to be a new promising class of compounds for the design of multifunctional agents for the treatment of neurodegenerative diseases.
机译:新的N-(吡啶-3-基甲基)-2-氨基噻唑啉,在噻唑啉环的5个位置和氨基氮原子处的4-叔丁基苄基,4-叔丁基苄基,4-氟苄基苄基或4-氟苄基部分处的各种取代基被合成了。评价抗人红细胞乙酰胆碱酯酶(ACHE,EC 3.1.1.7),大株血清丁酰基胆碱酯酶(BCHE,EC 3.1.1.8)和猪肝羧酸酯酶(CAE,EC 3.1.1.1)的抑制活性及其抗氧化性能通过ABTS测定研究。 N-(吡啶-3-基甲基)-2-氨基噻唑胺被证明是非常弱的疼痛抑制剂,而对BCHE和CAE的抑制活性是结构依赖性的。与含有4-异丙基苄基或4-氟苄基取代基的衍生物相比,含有4-叔丁基苄基部分的2-氨基噻唑啉是更有效的BCHE抑制剂。对这些化合物的噻唑啉环的5个位置的酯酶谱对这些化合物的5个位置的取代基结构依赖性的分析证明含有碘甲基取代基的衍生物具有最高抗BCHE活性,具有R-2 = H和R-3 = CH2I的化合物具有最佳酯酶谱。无论苄基部分中取代基的结构如何,含有噻唑啉环5个位置的含有碘甲基取代基的所有N-(吡啶-3-基甲基)-2-氨基噻唑啉表现出与标准抗氧化剂的高自由基清除活性相当拖车。显示N-(Pyridin-3-基甲基)-2-氨基噻唑啉,是用于设计神经变性疾病的多官能剂设计的新有希望的化合物。

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