首页> 外文期刊>Journal of Medicinal Chemistry >Comparison of the reactivity of antimalarial 1,2,4,5-tetraoxanes with 1,2,4-trioxolanes in the presence of ferrous iron salts, heme, and ferrous iron salts/phosphatidylcholine
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Comparison of the reactivity of antimalarial 1,2,4,5-tetraoxanes with 1,2,4-trioxolanes in the presence of ferrous iron salts, heme, and ferrous iron salts/phosphatidylcholine

机译:亚铁盐,血红素和亚铁盐/磷脂酰胆碱存在下抗疟疾1,2,4,5-四恶烷与1,2,4-三氧戊环的反应性比较

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摘要

Dispiro-1,2,4,5-tetraoxanes and 1,2,4-trioxolanes represent attractive classes of synthetic antimalarial peroxides due to their structural simplicity, good stability, and impressive antimalarial activity. We investigated the reactivity of a series of potent amide functionalized tetraoxanes with Fe(II)gluconate, FeSO_4, FeSO_4/TEMPO, FeSO _4/phosphatidylcholine, and heme to gain knowledge of their potential mechanism of bioactivation and to compare the results with the corresponding 1,2,4-trioxolanes. Spin-trapping experiments demonstrate that Fe(II)-mediated peroxide activation of tetraoxanes produces primary and secondary C-radical intermediates. Reaction of tetraoxanes and trioxolanes with phosphatidylcholine, a predominant unsaturated lipid present in the parasite digestive vacuole membrane, under Fenton reaction conditions showed that both endoperoxides share a common reactivity in terms of phospholipid oxidation that differs with that of artemisinin. Significantly, when tetraoxanes undergo bioactivation in the presence of heme, only the secondary C-centered radical is observed, which smoothly produces regioisomeric drug derived-heme adducts. The ability of these tetraoxanes to alkylate the porphyrin ring was also confirmed with Fe ~(II)TPP and Mn~(II)TPP, and docking studies were performed to rationalize the regioselectivity observed in the alkylation process. The efficient process of heme alkylation and extensive lipid peroxidation observed here may play a role in the mechanism of action of these two important classes of synthetic endoperoxide antimalarial.
机译:Dispiro-1,2,4,5-四恶烷和1,2,4-三恶烷因其结构简单,稳定性好和令人印象深刻的抗疟活性而代表了有吸引力的合成抗疟过氧化物类。我们调查了一系列有效的酰胺官能化四恶烷与葡萄糖酸Fe(II),FeSO_4,FeSO_4 / TEMPO,FeSO_4 /磷脂酰胆碱和血红素的反应性,以了解其潜在的生物激活机理,并将结果与​​相应的1 ,2,4-三氧戊环。自旋捕获实验表明,四恶烷的Fe(II)介导的过氧化物活化产生一级和二级C自由基中间体。在Fenton反应条件下,四恶烷和三恶烷与寄生虫消化液膜中存在的主要不饱和脂质磷脂酰胆碱的反应表明,两种内过氧化物在磷脂氧化方面具有共同的反应性,与青蒿素的反应性不同。重要的是,当四恶烷在血红素存在下进行生物活化时,仅观察到以C为中心的仲自由基,该自由基平稳地产生了区域异构药物衍生的血红素加合物。 Fe_(II)TPP和Mn〜(II)TPP还证实了这些四恶烷使卟啉环烷基化的能力,并进行了对接研究以合理化在烷基化过程中观察到的区域选择性。在此观察到的血红素烷基化和广泛的脂质过氧化的有效过程可能在这两类重要的合成内过氧化物抗疟药的作用机理中起作用。

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