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首页> 外文期刊>Chemistry: A European journal >Aliphatic Organoimido Derivatives of Polyoxometalates Containing a Bioactive Ligand
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Aliphatic Organoimido Derivatives of Polyoxometalates Containing a Bioactive Ligand

机译:含生物活性配体的多金属氧酸盐的脂肪族有机亚氨基衍生物

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A series of aliphatic organoimido derivatives of hexamolybdate based on amantadine, namely (nBu(4)N)(2)[Mo6O18(equivalent to NC10H15)] (1), (nBu(4)N)(2) {cis-[Mo6O17(equivalent to NC10H15)(2)]} (2), (nBu(4)N)(2){trans-[Mo6O17(equivalent to NC10H15)(2)]} (3), and (nBu(4)N)(2)[Mo6O16(equivalent to NC10H15)(3)] (4), was synthesized in reasonable yield by dehydration with N, N'-dicyclohexylcarbodiimide (DCC). They were characterized by IR and UV/ Vis spectroscopy, elemental analysis, ESI mass spectrometry, and single-crystal X-ray structure analysis. The spectral and structural similarities and differences between monosubstituted, cis-disubstituted, and transdisubstituted organoimido derivatives were elucidated and may provide guidance for related work on organoimido-functionalized Lindqvist-type polyoxometalates. In addition, trans-disubstituted and polysubstituted derivatives containing aliphatic organoimido ligands have not yet been reported, and the crystal structure of the trans isomer may lead us to a deeper understanding of disubstituted derivatives. Furthermore, proliferation and morphology of MCF-7 cells were studied with compound 1. The present results show that the DCC-dehydrating protocol could be an efficient approach to covalently graft bioactive ligands such as amantadine onto POMs and enhance their application in clinical cancer treatment.
机译:基于金刚烷胺的一系列六钼酸脂族有机亚氨基衍生物,即(nBu(4)N)(2)[Mo6O18(相当于NC10H15)](1),(nBu(4)N)(2){顺式[Mo6O17 (相当于NC10H15)(2)]}(2),(nBu(4)N)(2){trans- [Mo6O17(相当于NC10H15)(2)]}(3)和(nBu(4)N )(2)[Mo6O16(相当于NC10H15)(3)](4)是通过用N,N'-二环己基碳二亚胺(DCC)脱水以合理收率合成的。通过红外和紫外/可见光谱,元素分析,ESI质谱和单晶X射线结构分析对它们进行了表征。阐明了单取代,顺式二取代和反式二取代的有机亚氨基衍生物之间的光谱和结构相似性和差异,这可为有关有机亚氨基官能化的Lindqvist型多金属氧酸盐的相关工作提供指导。此外,尚未报道含脂族有机亚氨基配体的反式二取代和多取代的衍生物,反式异构体的晶体结构可能使我们对二取代的衍生物有更深的了解。此外,还用化合物1研究了MCF-7细胞的增殖和形态。目前的结果表明,DCC脱水方案可以有效地将诸如金刚烷胺等生物活性配体共价移植到POM上,并增强其在临床癌症治疗中的应用。

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