首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, Electrochemistry, and Bioactivity of the Cyanobacterial Calothrixins and Related Quinones.
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Synthesis, Electrochemistry, and Bioactivity of the Cyanobacterial Calothrixins and Related Quinones.

机译:蓝藻拟藻毒素和相关醌的合成,电化学和生物活性。

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摘要

The calothrixins are quinone-based natural products isolated from Calothrix cyanobacteria which show potent antiproliferative properties against several cancer cell lines. Preliminary mechanistic studies suggest that the biological mode of action of the calothrixins may be linked to their ability to undergo redox cycling. In this study we compare the bioactivities of the calothrixins with those of structurally related quinones in order to identify the structural features in the calothrixins essential for biological activity. In particular, the reduction potentials of the calothrixins and some related quinones were measured electrochemically. Our studies indicate that while there is no direct correlation between the reduction potentials and biological activities of the studied compounds, in all cases quinones with EC(50) values <1.6 microM undergo reduction to their respective semiquinones readily, with their E(1/2) values being more positive than -0.5 V versus the standard hydrogen electrode (SHE).
机译:所述花青素是从蓝藻(Calothrix cyanobacteria)分离的基于醌的天然产物,其对几种癌细胞系显示有效的抗增殖特性。初步的机理研究表明,花环毒素的生物学作用方式可能与其经历氧化还原循环的能力有关。在这项研究中,我们比较了Calothrixins的生物活性与结构上相关的醌的生物活性,以便确定Calothrixins中对生物活性至关重要的结构特征。特别地,用电化学方法测量了杯藻毒素和一些相关醌的还原电势。我们的研究表明,虽然还原电位与所研究化合物的生物学活性之间没有直接关系,但在所有情况下,EC(50)值<1.6 microM的醌容易还原为各自的半醌,而其E(1/2) )值相对于标准氢电极(SHE)大于-0.5V。

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