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在血清中运输由吡喃酮衍生物形成的抗糖尿病 VO2+ 配合物。

Transport of the anti-diabetic VO2+ complexes formed by pyrone derivatives in the blood serum.

机构信息

Istituto CNR di Chimica Biomolecolare, Trav. La Crucca 3, I-07040 Sassari, Italy.

出版信息

J Inorg Biochem. 2012 Oct;115:87-99. doi: 10.1016/j.jinorgbio.2012.04.020. Epub 2012 May 11.

Abstract

The biotransformation in the blood serum of the two anti-diabetic agents [VO(ema)(2)] - or BEOV - and [VO(koj)(2)] formed by ethylmaltol (Hema) and kojic acid (Hkoj) was studied with EPR spectroscopy, pH-potentiometry and DFT calculations. For comparison, the behavior of the systems with tropolone (Htrop) was also analyzed. The interaction of [VO(ema)(2)] and [VO(koj)(2)] with the most important bioligands of the serum, lactic (Hlact) and citric acid (H(3)citr), human serum transferrin (hTf), human serum albumin (HSA) and immunoglobulin G (IgG) was examined and discussed. Among the several mixed species observed, cis-VO(carrier)(2)(hTf), cis-VO(carrier)(2)(HSA) and cis-VO(carrier)(2)(IgG), where carrier is ethylmaltolate or kojate, with a His-N of the protein coordinated in the equatorial position, are plausible candidates for the transport processes of the drug toward the target organs. The values of the logβ are in the range 19.6-19.8 for the species formed by ethylmaltol and 17.4-17.6 for those formed by kojic acid. The formation of such species was confirmed through pH-titrations of the model systems VO(2+)/carrier/1-MeIm and VO(2+)/carrier/Ac-his, where 1-MeIm and Ac-his are 1-methylimidazole and N-acetylhistamine, and DFT calculations of (51)V A(z) of the model species cis-[VO(carrier)(2)(1-MeIm)] and cis-[VO(carrier)(2)(Ac-his)]. The values of the stability constants for the mixed species observed were used to predict the biodistribution of VO(2+) ion between the blood serum components for concentrations of 1, 10 and 50 μM.

摘要

用电子顺磁共振波谱学(EPR)、pH 电位滴定法和密度泛函理论(DFT)计算研究了两种抗糖尿病药物[VO(ema)(2)](BEOV)和[VO(koj)(2)]的生物转化,它们是由乙基麦芽酚(Hema)和曲酸(Hkoj)形成的。为了比较,还分析了与三羟甲基丙烷(Htrop)形成的体系的行为。研究了[VO(ema)(2)]和[VO(koj)(2)]与血清中最重要的生物配体乳酸(Hlact)和柠檬酸(H(3)citr)、人血清转铁蛋白(hTf)、人血清白蛋白(HSA)和免疫球蛋白 G(IgG)的相互作用,并进行了讨论。在观察到的几种混合物种中,顺式-VO(carrier)(2)(hTf)、顺式-VO(carrier)(2)(HSA)和顺式-VO(carrier)(2)(IgG)(其中 carrier 是乙基麦芽酚或曲酸)是药物向靶器官运输过程的合理候选物,其中蛋白质的 His-N 处于赤道位置与配体配位。由乙基麦芽酚形成的物种的 logβ 值在 19.6-19.8 之间,由曲酸形成的物种的 logβ 值在 17.4-17.6 之间。通过 VO(2+)/carrier/1-MeIm 和 VO(2+)/carrier/Ac-his 模型体系的 pH 滴定,以及模型物种 cis-[VO(carrier)(2)(1-MeIm)]和 cis-[VO(carrier)(2)(Ac-his)]的(51)V A(z)的 DFT 计算,证实了这些物种的形成。观察到的混合物种的稳定常数值用于预测 VO(2+)离子在血清成分之间的生物分布,浓度分别为 1、10 和 50 μM。

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