首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Aqueous Chemistry of the Vanadium~(III)(V~(III))and the V~(III)-Dipicolinate Systems and a Comparison of the Effect of Three Oxidation States of Vanadium Compounds on Diabetic Hyperglycemia in Rats
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Aqueous Chemistry of the Vanadium~(III)(V~(III))and the V~(III)-Dipicolinate Systems and a Comparison of the Effect of Three Oxidation States of Vanadium Compounds on Diabetic Hyperglycemia in Rats

机译:钒〜(III)(V〜(III))和V〜(III)-二吡啶甲酸体系的水化学以及钒化合物的三种氧化态对大鼠糖尿病性高血糖影响的比较

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The aqueous vanadium(lll)(V~(III))speciation chemistry of two dipicolinate-type complexes and the insulin-enhancing effects of V-dipicolinate(V-dipic)complexes in three different oxidation states(V~(III),V~(IV),and V~(V))have been studied in a chronic animal model system.The characterization of the V~(III)species was carried out at low ionic strength to reflect physiological conditions and required an evaluation of the hydrolysis of V~(III)at 0.20 M KCI.The aqueous V~(III)-dipic and V~(III)-dipic-OH systems were characterized,and complexes were observed from pH 2 to 7 at 0.2 M KCI.The V~(III)-dipic system forms stable 1:2 complexes,whereas the V~(III)-dipic-OH system forms stable 1:1 complexes.A comparison of these complexes with the V-pic system demonstrates that a second ligand has lower affinity for the V~(III),presumably reflecting bidentate coordination of the second dipic~(2-)to the V~(III).The thermodynamic stability of the [V~(III)(dipic)_2]-complex was compared to the stability of the corresponding V~(IV)and V~V complexes,and surprisingly,the V~(III)complexes were found to be more stable than anticipated.Oral administration of three V-dipicolinate compounds in different oxidation states {H[V~(III)(dipic)_2H_2O] centre dot 3H_2O,[V~(IV)Odipic(H_2O)_2] centre dot 2H_2O,and NH_4[V~VO_2dipic]} and the positive control,VOSO_4,significantly lowered diabetic hyperglycemia in rats with streptozotocin-induced diabetes.The diabetic animals treated with the V~(III)-or V~(III)-dipic complexes had blood glucose levels that were statistically different from those of the diabetic group.The animals treated with the V~V-dipic complex had the lowest blood glucose levels of the treated diabetic animals,which were statistically different from those of the diabetic group at all time points.Among the diabetic animals,complexation to dipic increased the serum levels of V after the administration of the V~V and V~(IV)complexes but not after the administration of the V~(III)complex when data are normalized to the ingested dose of V.Because V compounds differing only in oxidation state have different biological properties,it is implied that redox processes must be important factors for the biological action of V compounds.We observe that the V~V-dipic complex is the most effective insulin-enhancing agent,in contrast to previous studies in which the V~(IV)-maltol complex is the most effective.We conclude that the effectiveness of complexed V is both ligand and oxidation state dependent.
机译:两种吡啶二甲酸酯型配合物的水钒(III)(V〜(III))形态化学和V-二吡啶甲酸酯(V-dipic)配合物在三种不同氧化态(V〜(III),V的胰岛素增强作用) 〜(IV)和V〜(V))已在一个慢性动物模型系统中进行了研究.V〜(III)物种的表征是在低离子强度下进行的,以反映生理条件,并需要对水解进行评估在0.20 M KCI下测定V〜(III)的含量。表征了V〜(III)-二甲基和V〜(III)-二甲基OH的水溶液体系,并在0.2 M KCI下从pH 2到7观察到了配合物。 〜(III)-dipic系统形成稳定的1:2配合物,而V〜(III)-dipic-OH系统形成稳定的1:1配合物。这些配合物与V-pic系统的比较表明,第二种配体具有对V〜(III)的亲和力较低,可能反映了第二个双斜体(2-)与V〜(III)的双齿配位。[V〜(III)(dipic)_2]络合物的热力学稳定性为与稳定相比y相应的V〜(IV)和V〜V配合物,令人惊讶地发现V〜(III)配合物比预期的更稳定。三种不同氧化态的V-二吡啶甲酸酯类化合物的口服给药{H [V 〜(III)(dipic)_2H_2O]中心点3H_2O,[V〜(IV)Odipic(H_2O)_2]中心点2H_2O和NH_4 [V〜VO_2dipic]}和阳性对照VOSO_4显着降低了大鼠的糖尿病高血糖用V〜(III)-或V〜(III)-二甲基复合物治疗的糖尿病动物的血糖水平与糖尿病组有统计学差异。 -dipic复合物在所有时间点上均具有最低的血糖水平,在所有时间点上均与糖尿病组有统计学差异。在糖尿病动物中,复合至二尖瓣后,V的血清水平升高〜V和V〜(IV)复合物,但在施用V〜(III)复合物后不存在当将数据标准化为V的摄入剂量时,由于仅氧化态不同的V化合物具有不同的生物学特性,因此暗示氧化还原过程必须是V化合物生物学作用的重要因素。我们观察到V〜V-与以前的研究中V〜(IV)-麦芽酚复合物最有效的研究相反,二尖瓣复合物是最有效的胰岛素增强剂。我们得出结论,复合V的有效性既取决于配体,也取决于氧化态。

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