首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis, chemical and biological studies on new Fe(3+)-glycosilated beta-diketo complexes for the treatment of iron deficiency.
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Synthesis, chemical and biological studies on new Fe(3+)-glycosilated beta-diketo complexes for the treatment of iron deficiency.

机译:合成,化学和生物学研究新的Fe(3 +)-糖基化β-二酮复合物治疗铁缺乏症。

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摘要

A simple synthetic pathway to obtain glycosilated beta-diketo derivatives is proposed. These compounds show a good iron(III) affinity therefore we may suggest the use of their Fe(3+)-complexes as oral iron supplements in the treatment of anaemia. The glycosilated compounds (6-GlcH, 6-GlcOH and 6-GlcOCH(3)) are characterized by means of spectroscopic (UV, (1)H and (13)C NMR) and potentiometric techniques; they have a good water solubility, are kinetically stable in physiological condition (t(1/2)>100h) and show a low cytotoxicity also in high concentrations (IC(50)>400muM). They are able to bind Fe(3+) ion in acid condition (pH approximately 2) forming complex species thermodynamically more stable than those of other ligands commonly used in the treatment of iron deficiency. The iron complexes show also a good kinetic stability both in acidic and physiological pH and have a good lypophilicity (logP>-0.7) that suggests an efficient gastrointestinal absorption in view of their possible use in oral therapy. In addition they demonstrate a poor affinity for competitive biological metal ion such as Ca(2+), and in particular 6-GlcOCH(3) is able to inhibit lipid peroxidation.
机译:提出了获得糖基化的β-二酮衍生物的简单合成途径。这些化合物显示出良好的铁(III)亲和力,因此我们建议使用其Fe(3 +)-络合物作为口服铁补充剂治疗贫血。糖基化的化合物(6-GlcH,6-GlcOH和6-GlcOCH(3))通过光谱学(UV,(1)H和(13)C NMR)和电位技术进行表征。它们具有良好的水溶性,在生理条件下动力学稳定(t(1/2)> 100h),并且在高浓度下也显示出低细胞毒性(IC(50)>400μM)。它们能够在酸性条件下(pH约为2)结合Fe(3+)离子,形成比一般用于治疗铁缺乏症的其他配体更稳定的热动力学复合物。铁络合物在酸性和生理pH下也显示出良好的动力学稳定性,并且具有良好的亲液性(logP> -0.7),鉴于其在口腔治疗中的可能用途,表明其有效的胃肠道吸收。此外,它们对竞争性生物金属离子如Ca(2+)表现出较弱的亲和力,尤其是6-GlcOCH(3)能够抑制脂质过氧化。

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