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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Cu(II) and V(IV)O complexes with tri- or tetradentate ligands based on (2-hydroxybenzyl)-L-alanines reveal promising anticancer therapeutic potential
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Cu(II) and V(IV)O complexes with tri- or tetradentate ligands based on (2-hydroxybenzyl)-L-alanines reveal promising anticancer therapeutic potential

机译:基于(2-羟基苄基)-L-丙氨酸的三烯或四戊酸配体的Cu(II)和V(IV)和V(IV)O配合物揭示了有前途的抗癌治疗潜力

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Four new ligand precursors (H2L1-H2L4), derived from the Mannich condensation of two amino acids (L-Val and L-Phe) and two 3,5-disubstituted phenols (t-Bu or Me), and the corresponding oxidovanadium(IV) (1-4) and copper(II) (6-7) complexes are synthesized. Two other related compounds (H2L5 and H2L6), containing an additional 2-methyl-pyridine arm, and the corresponding (VO)-O-IV (5) and Cu-II (8-9) complexes were also obtained. All metal complexes are monomeric in the solid state, having a solvent molecule or a chloride ion in the coordination sphere. The in vitro cytotoxic activity of all compounds is evaluated against cancer cells from different origins. The IC50 values at 72 h are in the range of 6-15 mu M for HeLa cells, 4-17 mu M for A-549 cells and >25 mu M for MDA-MB-231 cells, except for [(VOL1)-O-IV(CH3OH)] (1) and [CuL6(H2O)] (9). With the exception of H2L6, overall, the metal complexes are more cytotoxic than the corresponding ligand precursors. Globally, the cellular viability data show that (i) the L-Phe derived compounds are more cytotoxic than the corresponding L-Val complexes; (ii) the presence of the bulkier t-Bu groups increases the cytotoxicity; (iii) the presence of a 2-methyl-pyridine arm increases considerably the cytotoxicity; and (iv) the Cu-II-complexes are more cytotoxic than the (VO)-O-IV-compounds. Complexes [(VOL3)-O-IV(CH3OH)] (3), [CuL3(H2O)] (7) and [CuL5(H2O)] (8) were further evaluated and their mechanism of action was determined to be apoptosis, evidenced by AnnexinV staining and the increase in caspase 3/7 activity. Compounds 3, 7 and 8 also exhibit DNA cleavage activity, involving the formation of reactive oxygen species and were able to induce genomic damage in cells as determined by COMET assay.
机译:通过两种氨基酸(L-Val和L-Phe)和两种3,5-二取代酚(t-Bu或Me)的曼尼希缩合,合成了四种新的配体前体(H2L1-H2L4),以及相应的氧化钒(IV)(1-4)和铜(II)(6-7)配合物。还获得了另外两种相关化合物(H2L5和H2L6),它们含有额外的2-甲基吡啶臂,以及相应的(VO)-O-IV(5)和Cu-II(8-9)配合物。所有金属配合物都是固态单体,在配位球中有溶剂分子或氯离子。所有化合物的体外细胞毒性活性均针对不同来源的癌细胞进行评估。72小时的IC50值在6-15μM范围内(对于HeLa细胞)、4-17μM范围内(对于A-549细胞)和>25μM范围内(对于MDA-MB-231细胞),除了[(VOL1)-O-IV(CH3OH)](1)和[CuL6(H2O)](9)。除H2L6外,总的来说,金属配合物比相应的配体前体更具细胞毒性。在全球范围内,细胞活性数据显示(i)L-Phe衍生化合物比相应的L-Val复合物更具细胞毒性;(ii)体积较大的t-Bu基团的存在增加了细胞毒性;(iii)2-甲基吡啶臂的存在显著增加了细胞毒性;(iv)与(VO)-O-iv-化合物相比,Cu-II复合物具有更强的细胞毒性。进一步评估了配合物[(VOL3)-O-IV(CH3OH)](3),[CuL3(H2O)](7)和[CuL5(H2O)](8),并确定其作用机制为凋亡,通过AnnexinV染色和caspase 3/7活性的增加来证明。化合物3、7和8也表现出DNA切割活性,涉及活性氧物种的形成,并且能够诱导细胞中的基因组损伤,如彗星试验所确定。

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