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On the first polyarsenic organic compound from nature: Arsenicin A from the New Caledonian marine sponge Echinochalina bargibanti

机译:关于自然界中的第一种聚砷有机化合物:来自新喀里多尼亚海洋海绵Echinochalina bargibanti的Arsenicin A

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摘要

Reported here is the first polyarsenic compound ever found in nature. Denominated arsenicin A, it was isolated along a bioassay-guided fractionation of the organic extract of the poecilosclerid sponge Echinochalina bargibanti collected from the northeastern coast of New Caledonia. In defining an adamantine-type polyarsenic structure for this compound, deceptively simple NMR spectra were complemented by extensive mass spectral analysis. However, it was only the synthesis of a model compound that provided the basis to discriminate structure 4 from other spectrally compatible structures for arsenicin A; to this end, a comparative ab initio simulation of IR spectra for the natural and the synthetic compounds was decisive. Arsenicin A is endowed with potent bactericidal and fungicidal activities on human pathogenic strains. All this may revive pharmacological interest in arsenic compounds while prompting us to rethink the arsenic cycle in nature.
机译:这里报道的是自然界中第一个发现的多砷化合物。通过生物测定指导的分离自新喀里多尼亚东北海岸的海绵状海绵棘孢菌Echinochalina bargibanti的有机提取物分离出命名的阿塞尼克星A。在定义该化合物的金刚烷型多砷结构时,看似简单的NMR光谱通过大量的质谱分析得到了补充。但是,只有模型化合物的合成才为区分结构4和其他光谱兼容结构提供了基础,而砷化霉素A的结构与其他光谱兼容结构不同。为此,对天然和合成化合物进行红外光谱的从头算起比较是决定性的。 Arsenicin A被赋予对人类致病菌株的有效杀菌和杀真菌活性。所有这些可能会重新激发人们对砷化合物的药理学兴趣,同时促使我们重新思考自然界中的砷循环。

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