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How environment affects drug activity: Localization, compartmentalization and reactions of a vanadium insulin-enhancing compound,dipicolinatooxovanadium(V)

机译:环境如何影响药物活性:钒胰岛素增强化合物二吡啶甲酰氧杂钒(V)的定位,分隔和反应

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The chemical and biological properties of a simple and traditional V(5+) coordination complex, dipicol-inatooxovanadium(V) (abbreviated [VChdipic]~-), are described in order to present a hypothesis for a novel mode of action wherein a hydrophobic membrane environment plays a key role. Specifically, we propose that the compartmentalization and both chemical and biological transformations of vanadium-complexes direct whether beneficial or toxic effects will be observed with this class of compounds. This concept is based on the formation of high levels of uncontrollable reactive oxygen species (ROS) from one-electron reactions or alternative events possibly initiated by a two-electron reaction which may be directly or indirectly beneficial by reducing the high levels of ROS. The properties of dipicolinatooxo-vanadium(V) compounds in aqueous solution (D.C. Crans, et al., Inorg. Chem. 39 (2000) 4409-4416) are very different from those in organic solvents (S.K. Hanson, et al., J. Am. Chem. Soc. 131 (2009) 428-429) and these differences may be key for their mode of action. Since other vanadium complexes are known to hydrolyze upon administration, the low stability of the aqueous complex requires entrapment in hydrophobic environments for such a complex to exist sufficiently long to have an effect. The suggestion that the environment changes the reactivity of the compounds is consistent with the very different modes of action by which one complex act. In short, a novel hypothesis is presented for a mode of action of vanadium compounds based on differences in properties resulting from environmental conditions. These considerations are supported by recent evidence supporting a role for membranes and signal transduc-tion events (D.A. Roess, et al. Chem. Biodivers. 5 (2008) 1558-1570) of the insulin-enhancing properties of these compounds.
机译:描述了一种简单而传统的V(5+)配位化合物didicol-inatooxovanadium(V)(缩写为[VChdipic]-)的化学和生物学特性,以提出一种新的作用方式的假设,其中疏水性膜环境起着关键作用。具体而言,我们建议钒配合物的区室化以及化学和生物转化都指导使用此类化合物将观察到有益还是有毒作用。该概念基于由单电子反应或可能由双电子反应引发的替代事件形成的高水平不可控制的活性氧物质(ROS),这可通过降低高水平的ROS直接或间接受益。水溶液中二吡啶甲酰氧基钒(V)化合物的性质(DC Crans等,Inorg。Chem。39(2000)4409-4416)与有机溶剂中的性质非常不同(SK Hanson等,J (Am。Chem。Soc。131(2009)428-429),这些差异可能是其作用方式的关键。由于已知其他钒配合物在给药时会水解,因此水性配合物的低稳定性要求在疏水性环境中截留,以使这种配合物存在足够长的时间以产生作用。环境改变化合物反应性的建议与一种复合物起作用的非常不同的作用方式是一致的。简而言之,基于环境条件引起的性质差异,提出了钒化合物作用方式的新假设。这些考虑得到了最近的证据的支持,这些证据支持这些化合物的胰岛素增强特性对膜和信号转导事件的作用(D.A. Roess等人,Chem.Biodivers.5(2008)1558-1570)。

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