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A 环氮杂环庚烷和 3-氨基-3,4-降三萜类化合物的合成及胆碱酯酶抑制活性。

Synthesis and cholinesterase inhibiting potential of A-ring azepano- and 3-amino-3,4-seco-triterpenoids.

机构信息

Ufa Institute of Chemistry UFRC RAS, pr. Octyabrya 71, 450054 Ufa, Russian Federation.

Ufa Institute of Chemistry UFRC RAS, pr. Octyabrya 71, 450054 Ufa, Russian Federation.

出版信息

Bioorg Chem. 2020 Aug;101:104001. doi: 10.1016/j.bioorg.2020.104001. Epub 2020 Jun 10.

DOI:10.1016/j.bioorg.2020.104001
PMID:32683137
Abstract

In this study, a series of A-ring azepano- and 3-amino-3,4-seco-derivatives were synthesized from betulin, oleanolic, ursolic and glycyrrhetinic acids aiming to develop new cholinesterase inhibitors. Azepanobetulin, azepanoerythrodiol and azepanouvaol were modified to give amide and tosyl derivatives, while azepano-anhydrobetulines and azepano-glycyrrhetols were obtained for the first time. Oleanane and ursane type 3-amino-3,4-seco-4(23)-en triterpenic alcohols were synthesized by reducing the corresponding 2-cyano-derivatives accessible from Beckmann type 2 rearrangements. The compounds were screened in colorimetric Ellman's assays to determine their ability to act as inhibitors for the enzymes acetylcholinesterase (AChE, from electric eel) and butyrylcholinesterase (BChE, from equine serum). While most of these compounds were only moderate inhibitors for AChE, several of them were shown to be inhibitors for BChE acting as mixed-type inhibitors. Azepanobetulin 1, its C28-amide derivatives 7 and 8, azepano-11-deoxo-glycyrrhetol 12 and azepanouvaol 18 held inhibition constants K ranging between 0.21 ± 0.06 to 0.68 ± 0.19 μM. Thus, they were approximately 4 to 10 times more active than standard galantamine hydrobromide. For all of the compounds reasonably high docking scores for BChE were obtained being in good agreement with the experimental results from the enzymatic studies. As a result, A-ring azepano-triterpenoids were found to be new scaffolds for the development of BChE inhibitors.

摘要

在这项研究中,我们从白桦脂酸、齐墩果酸、熊果酸和甘草次酸出发,合成了一系列 A 环氮杂桥环和 3-氨基-3,4-降蒈烷衍生物,旨在开发新的胆碱酯酶抑制剂。氮杂桥环桦脂醇、氮杂桥环赤藓醇和氮杂桥环乌苏醇被修饰为酰胺和对甲苯磺酰衍生物,而氮杂桥环无羁萜烷和氮杂桥环甘草次醇则是首次获得。通过对相应的 2-氰基衍生物进行 Beckmann 型 2 重排,得到了齐墩果烷和熊果烷型 3-氨基-3,4-降蒈烷-4(23)-烯三萜醇。这些化合物在比色 Ellman 测定法中进行筛选,以确定它们作为酶乙酰胆碱酯酶(来自电鳗)和丁酰胆碱酯酶(来自马血清)抑制剂的能力。虽然这些化合物大多只是乙酰胆碱酯酶的中等抑制剂,但其中一些被证明是丁酰胆碱酯酶的抑制剂,作为混合类型抑制剂。氮杂桥环桦脂醇 1、其 C28-酰胺衍生物 7 和 8、氮杂桥环-11-去氧甘草次醇 12 和氮杂桥环乌苏醇 18 的抑制常数 K 范围在 0.21±0.06 至 0.68±0.19 μM 之间。因此,它们的活性大约是标准加兰他敏氢溴酸盐的 4 到 10 倍。对于所有的化合物,我们都得到了对 BChE 的合理高 docking 分数,这与酶学研究的实验结果非常吻合。结果表明,A 环氮杂桥环三萜类化合物是开发 BChE 抑制剂的新骨架。

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