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Anti-diabetic effects of a series of vanadium dipicolinate complexes in rats with streptozotocin-induced diabetes

机译:一系列二吡啶甲酸钒配合物对链脲佐菌素诱发的糖尿病大鼠的抗糖尿病作用

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The effects of oral treatment of rats with streptozotocin-induced diabetes with a range of vanadium dipicolinate complexes (Vdipic) and derivatives are reviewed. Structure-reactivity relationships are explored aiming to correlate properties such as stability, to their insulin-enhancing effects. Three types of modifications are investigated; first, substitutions on the aromatic ring, second, coordination of a hydroxylamido group to the vanadium, and third, changes in the oxidation state of the vanadium ion. These studies allowed us to address the importance of coordination chemistry, and redox chemistry, as modes of action. Dipicolinate was originally chosen as a ligand because the dipicolinatooxovanadium(V) complex (V5dipic), is a potent inhibitor of phosphatases. The effect of vanadium oxidation state (3,4 or 5), on the insulin-enhancing properties was studied in both the Vdipic and VdipicCl series. Effects on blood glucose, body weight, serum lipids, alkaline phosphatase and aspartate transaminase were selectively monitored. Statistically distinct differences in activity were found, however, the trends observed were not the same in the Vdipic and VdipicCl series, lnterperitoneal administration of the Vdipic series was used to compare the effect of administration mode. Correlations were observed for blood vanadium and plasma glucose levels after V5dipic treatment, but not after treatment with corresponding V4dipic and V3dipic complexes. Modifications of the aromatic ring structure with chloride, amine or hydroxyl groups had limited effects. Global gene expression was measured using Affymetrix oligonucleotide chips. All diabetic animals treated with hydroxyl substituted V5dipic (V5dipicOH) and some diabetic rats treated with vanadyl sulfate had normalized hyperlipidemia yet uncontrolled hyperglycemia and showed abnormal gene expression patterns. In contrast to the normal gene expression profiles previously reported for some diabetic rats treated with vanadyl sulfate, where both hyperlipidemia and hyperglycemia were normalized. Modification of the metal, changing the coordination chemistry to form a hydroxylamine ternary complex, had the most influence on the anti-diabetic action. Vanadium absorption into serum was determined by atomic absorption spectroscopy for selected vanadium complexes. Only diabetic rats treated with the ternary V5dipicOH hydroxylamine complex showed statistically significant increases in accumulation of vanadium into serum compared to diabetic rats treated with vanadyl sulfate. The chemistry and physical properties of the Vdipic complexes correlated with their anti-diabetic properties. Here, we propose that compound stability and ability to interact with cellular redox reactions are key components for the insulin-enhancing activity of vanadium compounds. Specifically, we found that the most overall effective anti-diabetic Vdipic compounds were obtained when the compound administered had an increased coordination number in the vanadium complex.
机译:综述了口服链脲佐菌素钒配合物(Vdipic)及其衍生物对链脲佐菌素诱发的糖尿病大鼠的口服治疗效果。探索了结构-反应关系,旨在将诸如稳定性等性质与其胰岛素增强作用相关联。研究了三种类型的修改:首先,在芳环上进行取代,其次,将羟基氨基与钒配位,其次,改变钒离子的氧化态。这些研究使我们能够解决配位化学和氧化还原化学作为作用方式的重要性。最初选择二吡啶甲酸酯作为配体是因为二吡啶甲酰氧钒(V)复合物(V5dipic)是有效的磷酸酶抑制剂。在Vdipic和VdipicCl系列中都研究了钒氧化态(3,4或5)对胰岛素增强特性的影响。选择性监测对血糖,体重,血脂,碱性磷酸酶和天冬氨酸转氨酶的影响。发现活性上的统计学差异,但是在Vdipic和VdipicCl系列中观察到的趋势不同,使用Vdipic系列腹膜内给药比较给药方式的效果。 V5dipic治疗后观察到血液中钒和血浆葡萄糖水平的相关性,但用相应的V4dipic和V3dipic复合物治疗后未观察到相关性。用氯,胺或羟基对芳环结构的修饰作用有限。使用Affymetrix寡核苷酸芯片测量整体基因表达。所有用羟基取代的V5dipic(V5dipicOH)治疗的糖尿病动物和一些用硫酸氧钒处理的糖尿病大鼠均具有正常的高脂血症但不受控制的高血糖症,并且显示出异常的基因表达模式。与先前报道的一些用硫酸氧钒处理的糖尿病大鼠的正常基因表达谱相反,其中高脂血症和高血糖都被正常化了。金属的改性,改变配位化学以形成羟胺三元络合物,对抗糖尿病作用的影响最大。通过原子吸收光谱法确定了选定的钒配合物,吸收了血清中的钒。与用硫酸氧钒进行治疗的糖尿病大鼠相比,仅用三元V5dipicOH羟胺复合物治疗的糖尿病大鼠显示出钒在血清中的累积统计上显着增加。 Vdipic配合物的化学和物理性质与其抗糖尿病性质有关。在这里,我们建议化合物稳定性和与细胞氧化还原反应相互作用的能力是钒化合物胰岛素增强活性的关键组成部分。具体地,我们发现当所施用的化合物在钒配合物中具有增加的配位数时,获得了最总体上有效的抗糖尿病Vdipic化合物。

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