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A Collection of Bioactive Nitrogen-Containing Molecules from the Marine Sponge Acanthostrongylophora ingens

机译:海洋海绵棘甲虫的生物活性含氮分子的集合。

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摘要

Thirteen nitrogen-containing molecules (>1a/>1b and >2–>12) were isolated from the Indonesian sponge Acanthostrongylophora ingens, highlighting the richness of this organism as a source of alkaloids. Their structures were elucidated using one- and two-dimensional NMR spectroscopy and HR-ESI-MS, while the stereochemistry of the diketopiperazines was established using Marfey’s method. All compounds were screened in our standard bioactivity assays, including antibacterial, antikinases, and amyloid β-42 assays. The most interesting bioactivity result was obtained with the known acanthocyclamine A (>3), which revealed for the first time a specific Escherichia coli antimicrobial activity and an inhibitory effect on amyloid β-42 production induced by aftin-5 and no cytotoxicity at the dose of 26 µM. These results highlight the potentiality of a bipiperidine scaffold as a promising skeleton for preventing or reducing the production of amyloid β-42, a key player in the initiation of Alzheimer’s disease.
机译:从印度尼西亚海绵棘棘甲虫中分离出13个含氮分子(> 1a / > 1b 和> 2 – > 12 )。 ,突出了这种生物作为生物碱来源的丰富性。使用一维和二维NMR光谱和HR-ESI-MS阐明了它们的结构,而二酮哌嗪的立体化学是使用Marfey方法建立的。所有化合物均通过我们的标准生物活性测定法进行筛选,包括抗菌,抗激酶和淀粉样β-42测定法。最有趣的生物活性结果是通过已知的棘环胺A(> 3 )获得的,该结果首次揭示了特定的大肠杆菌抗菌活性以及对Aftin-5诱导的淀粉样β-42产生的抑制作用。剂量为26 µM时无细胞毒性。这些结果突显了联哌啶骨架作为预防或减少淀粉样β-42产生的有前途的骨架的潜力,β-42是引发阿尔茨海默氏病的关键因素。

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