首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Interaction between the low molecular mass components of blood serum and the VO(IC)-DHP system (DHP = 1,2-dimethyl-3-hydroxy-4(1H)-pyridinone)
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Interaction between the low molecular mass components of blood serum and the VO(IC)-DHP system (DHP = 1,2-dimethyl-3-hydroxy-4(1H)-pyridinone)

机译:血清低分子量成分与VO(IC)-DHP系统之间的相互作用(DHP = 1,2-二甲基-3-羟基-4(1H)-吡啶酮)

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摘要

In order to estimate the impact of the low molecularmass (l.m.m.) VO(IV) binders of blood serum on the potentially insulin-enhancing drug [VO(DHP)_2] [DHP = 1,2-dimethyl-3-hydroxy-4-(1H)-pyridinone], the speciation in the binary system VO(IV)-DHP and in the ternary systems VO-DHP-ligand B (B = oxalate, lactate, citrate or phosphate) was studied by pH-potentiometry at 25.0 deg C and at an ionic strength I = 0.2 mol dm~(-3) (KCl). The binding modes of the complexese formed were determined by spectroscopic (electronic absorption and EPR) techniques. DHP was found to form stable mono and bis complexes via the coordination of (O,O) chelate(s). Through displacement of the oxo group of VO(IV), the tris complex is also formed, especially at a high excess of ligand. The results in the ternary systems demonstrate that, at physiological pH, none of the B ligands can compete with DHP; [VO(DHP)_2] therefore seems to remain almost completely intact, even in the presence of citrate, the strongest competitor among these B ligands. These findings indicate that, for DHP, unlike maltor or picolinic acid, ternary complex formation and thus transformation reactions with the l.m.m. binders of biofluids, is almost negligible. From among the three carrier molecules, only DHP can efficiency compete with serum transferrin for binding of VO(IV).
机译:为了评估血清中低分子(lmm)VO(IV)结合剂对潜在的胰岛素增强药物[VO(DHP)_2] [DHP = 1,2-二甲基-3-羟基-4- (1H)-吡啶酮],二元体系VO(IV)-DHP和三元体系VO-DHP-配体B(B =草酸盐,乳酸盐,柠檬酸盐或磷酸盐)的形态通过25.0摄氏度的pH电位法研究离子强度I = 0.2 mol dm〜(-3)(KCl)。通过光谱(电子吸收和EPR)技术确定形成的配合物的结合模式。发现DHP通过(O,O)螯合物的配合形成稳定的单和双配合物。通过置换VO(IV)的氧代基团,也形成了tris络合物,尤其是在配体过量时。三元系统的结果表明,在生理pH值下,所有B配体都不能与DHP竞争。因此,即使在柠檬酸盐(这些B配体中最强的竞争者)的存在下,[VO(DHP)_2]似乎仍几乎保持完整。这些发现表明,对于DHP,不同于麦芽酚或吡啶甲酸,三元复合物的形成以及因此与L.m.m的转化反应。生物流体的粘合剂几乎可以忽略不计。在这三个载体分子中,只有DHP可以有效地与血清转铁蛋白竞争VO(IV)的结合。

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