首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Access to the Parent Tetrakis(pyridine)gold(III) Trication, Facile Formation of Rare Au(III) Terminal Hydroxides, and Preliminary Studies of Biological Properties
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Access to the Parent Tetrakis(pyridine)gold(III) Trication, Facile Formation of Rare Au(III) Terminal Hydroxides, and Preliminary Studies of Biological Properties

机译:获得母体四(吡啶)金(III)三阳离子,稀有Au(III)末端氢氧化物的容易形成以及生物学性质的初步研究

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摘要

In this paper we report on the use of [NO][BE4] to access tricationic tetrakis(pyridine)gold(III) from Au powder, a species inaccessible using the more traditional (tetrahydrothiophene)AuCl route. It is then demonstrated that this family of compounds can be used to access new terminal Au(III) hydroxides, a challenging class of compounds, and the first crystallographically characterized examples employing bidentate ligands. Finally, preliminary biological studies indicate good activity for derivatives featuring polydentate ligands against the HeLa and PC3 cell lines but also strong inhibition of primary HUVEC cells.
机译:在本文中,我们报道了使用[NO] [BE4]从金粉中获得三阳离子四(吡啶)金(III)的情况,这是使用更传统的(四氢噻吩)AuCl途径无法获得的物种。然后证明该化合物家族可用于获得新的末端Au(III)氢氧化物,一类具有挑战性的化合物,以及使用双齿配体的第一个晶体学表征的实例。最后,初步的生物学研究表明,具有多齿配体的衍生物对HeLa和PC3细胞系具有良好的活性,但对原代HUVEC细胞也具有很强的抑制作用。

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