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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Synthesis and insulinomimetic activities of novel mono- and tetranuclear oxovanadium(IV) complexes with 3-hydroxypyridine-2-carboxylic acid
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Synthesis and insulinomimetic activities of novel mono- and tetranuclear oxovanadium(IV) complexes with 3-hydroxypyridine-2-carboxylic acid

机译:新型单核和四核氧杂钒(IV)与3-羟基吡啶-2-羧酸的配合物的合成和胰岛素模拟活性

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Two chargeless VO(IV) complexes with 3-hydroxypyridine-2-carboxylic acid (H(2)hpic), [VO(Hhpic-O,O)(Hhpic-O,N)(H2O)(.)3H(2)O (1) and the cyclic tetramer [(VO)4(mu-(hpic-O,O,N))(4)(H2O)(4)](.)8H(2)O (2), have been synthesized and characterized by elemental analysis, mass, infrared, electronic absorption, electron spin resonance (ESR) spectroscopies, and X-ray crystallography. Their coordination structures are similar to each other (and 1 is readily transformed into 2), but are quite different from that of bis(pyridine-2-carboxylato)oxovanadium(IV). The magnetic susceptibility of 2 indicates the presence of a weak ferromagnetic intramolecular interaction between the V atoms at low temperature, in addition to a weak antiferromagnetic intermolecular interaction. The ESR signal of 2 was broad, while I showed an eight-line hyperfine splitting pattern due to coupling of the impaired electron with the V-51 nucleus (I = 7/2). The ESR spectrum and cyclic voltammogram of 2 clearly show that the cyclic tetramer remains intact in solution. The insulinomimetic activity of 1 and 2 was evaluated by means of in vitro measurements of the inhibition of free fatty acid release from epinephrine-treated isolated rat adipocytes. While I exerted higher insulinomimetic activity than VOSO4, the activity of 2 was significantly lower than that of VOSO4. Hence 2 appears to retain its cyclic structure during the in vitro test. These results indicate that the rational ligand design for VO complexes might be a promising approach to obtain superior insulinomimetic activity
机译:两个无电荷的VO(IV)与3-羟基吡啶-2-羧酸(H(2)hpic),[VO(Hhpic-O,O)(Hhpic-O,N)(H2O)(。)3H(2)的配合物O(1)和环状四聚体[(VO)4(mu-(hpic-O,O,N))(4)(H2O)(4)](。)8H(2)O(2)通过元素分析,质量,红外,电子吸收,电子自旋共振(ESR)光谱学和X射线晶体学合成和表征。它们的配位结构彼此相似(并且很容易将1转化为2),但与双(吡啶-2-羧基)氧杂钒(IV)的配位结构完全不同。磁化率2表示在低温下V原子之间除了弱的反铁磁分子间相互作用之外,还存在弱的铁磁分子内相互作用。 2的ESR信号很宽,而由于受损的电子与V-51原子核的耦合(I = 7/2),我显示了八行超细分裂模式。 ESR谱和2的循环伏安图清楚地表明,环状四聚体在溶液中保持完整。通过体外测量肾上腺素处理的分离的大鼠脂肪细胞中游离脂肪酸释放的抑制作用来评估1和2的胰岛素模拟活性。虽然我的模拟胰岛素活性比VOSO4高,但2的活性却明显低于VOSO4。因此,2在体外测试中似乎保留了其环状结构。这些结果表明,VO复合物的合理配体设计可能是获得优异胰岛素模拟活性的有前途的方法

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