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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Enhanced kinetic stability of [Pd2L4](4+) cages through ligand substitution
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Enhanced kinetic stability of [Pd2L4](4+) cages through ligand substitution

机译:通过配体取代增强[Pd2L4](4+)笼的动力学稳定性

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There is considerable interest in exploiting metallosupramolecular cages as drug delivery vectors. Recently, we developed a [Pd2L4](4+) cage capable of binding two molecules of cisplatin. Unfortunately, this first generation cage was rapidly decomposed by common biologically relevant nucleophiles. In an effort to improve the kinetic stability of these cage architectures here we report the synthesis of two amino substituted tripyridyl 2,6-bis(pyridin-3-ylethynyl) pyridine (tripy) ligands (with amino groups either in the 2-(2A-tripy) or 3-(3A-tripy) positions of the terminal pyridines) and their respective [Pd-2(L-tripy)(4)](4+) cages. These systems have been characterised by H-1, C-13 and DOSY NMR spectroscopies, high resolution electrospray mass spectrometry, elemental analysis and, in one case, by X-ray crystallography. It was established, using model palladium(II) N-heterocyclic carbene (NHC) probe complexes, that the amino substituted compounds were stronger donor ligands than the parent system (2A-tripy > 3A-tripy > tripy). Competition experiments with a range of nucleophiles showed that these substitutions lead to more kinetically robust cage architectures, with [Pd-2(2A-tripy)(4)](4+) proving the most stable. Biological testing on the three ligands and cages against A549 and MDA-MB-231 cell lines showed that only [Pd-2(2A-tripy)(4)](4+) exhibited any appreciable cytotoxicity, with a modest IC50 of 36.4 +/- 1.9 mu M against the MDA-MB-231 cell line. Unfortunately, the increase in kinetic stability of the [Pd-2(Ltripy)(4)](4+) cages was accompanied by loss of cisplatin-binding ability.
机译:在利用金属超分子笼子作为药物递送载体方面有相当大的兴趣。最近,我们开发了[Pd2L4](4+)笼,该笼能够结合两个顺铂分子。不幸的是,第一代笼子被常见的生物学相关亲核试剂迅速分解。为了提高这些笼结构的动力学稳定性,我们在这里报道了两个氨基取代的三吡啶基2,6-双(吡啶-3-基乙炔基)吡啶(三重)配体的合成(2-(2A -三联体或末端吡啶的3-(3A-三联体)位置及其各自的[Pd-2(L-三联体(4)](4+)笼。这些系统的特征在于H-1,C-13和DOSY NMR光谱学,高分辨率电喷雾质谱,元素分析以及在一种情况下通过X射线晶体学。使用模型钯(II)N-杂环卡宾(NHC)探针配合物确定,氨基取代的化合物比母体系统具有更强的供体配体(2A-三重> 3A-三重>三重)。一系列亲核试剂的竞争实验表明,这些取代导致了更具动力学稳定性的笼式结构,其中[Pd-2(2A-tripy)(4)](4+)最为稳定。针对A549和MDA-MB-231细胞系的三种配体和笼子的生物学测试表明,只有[Pd-2(2A-tripy)(4)](4+)表现出任何明显的细胞毒性,IC50为36.4 +相对于MDA-MB-231细胞系为1.9μM。不幸的是,[Pd-2(Ltripy)(4)](4+)笼的动力学稳定性的增加伴随着顺铂结合能力的丧失。

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