[蒽环类抗生素的氧化]。

Antibiotiki Pub Date : 1984-10-01
V S Orlov, G N Bogdanov
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引用次数: 0

摘要

用半经验方法对卡米霉素、红霉素、阿霉素和阿克拉霉素A在中性和电离状态下的最高已占据分子轨道能进行了量子化学估计。结果表明,糖基化可增强抗生素的电子给体特性。根据中性发色团和电离发色团吸收光谱的差异,用分光光度法测定了它们的电离常数。为了比较蒽环类药物在生理pH值下的电子给体性质,研究了它们与铁氰化钾的氧化反应以及溶液的脱色。根据量子化学和实验数据得出结论,阿克拉霉素A的电子供体特性放大如下:阿克拉霉素A小于阿霉素-红霉素A小于卡米霉素A。同时其急性毒性增加(LD50降低)。因此,蒽环类抗生素的毒性也可能是由于在单电子氧化过程中形成具有高反应活性的自由基。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Oxidation of anthracycline antibiotics].

The quantum-chemical estimation of the highest occupied molecular orbital energy for the aglycons of carminomycin, rubomycin, adriamycin and aclacinomycin A in the neutral and ionized states was performed with a semiempirical method. It was shown that the aglycon ionization amplified the electron donor properties of the antibiotics. On the basis of the difference in the absorption spectra of the neutral and ionized chromophores their ionization constants were determined spectrophotometrically. For comparison of the electron donor properties of the anthracyclines at the physiological pH value the reaction of their oxidation with potassium ferricyanide accompanied by decoloration of the solutions was studied. On the basis of the quantum-chemical and experimental data it was concluded that the electron donor properties amplified as follows: aclacinomycin A less than adriamycin-rubomycin less than carminomycin. At the same time their acute toxicity increased (a decrease in the LD50). Therefore, the toxicity of the anthracycline antibiotics could be also due to formation of the radicals with high reactivity on the monoelectronic oxidation.

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