首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Gold(i) and gold(iii) phosphine complexes: synthesis, anticancer activities towards 2D and 3D cancer models, and apoptosis inducing properties
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Gold(i) and gold(iii) phosphine complexes: synthesis, anticancer activities towards 2D and 3D cancer models, and apoptosis inducing properties

机译:金(I)和金(III)膦络合物:合成,抗癌活动朝向2D和3D癌症模型,以及凋亡诱导特性

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A series of gold(i), gold(iii) and cationic gold(i) complexes of tris(4-methoxyphenyl)phosphine and tris(2,6-dimethoxyphenyl)phosphine were synthesised and fully characterised by spectroscopic methods. The molecular structures of selected complexes were also determined by X-ray diffraction analysis. The prepared complexes [AuX{P(C6H4-4-OMe)(3)}] [X = Cl (1), Br (2), I (3)], [AuCl3{P(C6H4-4-OMe)(3)}] (4), [Au{P(C6H4-4-OMe)(3)}(2)]PF6 (5), [AuX{P(C6H3-2,6-{OMe}(2))(3)}] [X = Cl (6), Br (7), I (8)], [AuCl3{P(C6H3-2,6-{OMe}(2))(3)}] (9) and [Au{P(C6H3-2,6-{OMe}(2))(3)}(2)]PF6 (10) were investigated for their anticancer activity against five human tumor cell lines [ovarian (SKOV-3), fibrosarcoma (HT1080), glioblastoma (U87MG), prostate (PC-3), and cervical (HeLa)] as well as against 3D spheroidal models of HeLa cells. The cationic complex 10 was found to exhibit a remarkably broad spectrum of anticancer activity with approximately 30-fold higher toxicity than cisplatin against PC-3 and U87MG cancer cells; this complex also showed the strongest inhibition of spheroid growth in 3D models of HeLa cells. The mechanism of anticancer activity of these gold complexes was found to be strong inhibition of thioredoxin reductase, increased ROS production and subsequent apoptosis induction as evidenced by the sub G1 cell accumulation, DNA fragmentation, and caspase-3 activation.
机译:一系列金(I),金(III)和Tris(4-甲氧基苯基)膦和三(2,6-二甲氧基苯基)膦的阳离子(I)复合物被合成并通过光谱方法完全表征。选择复合物的分子结构也通过X射线衍射分析确定。制备的配合物[Aux {P(C6H4-4-OME)(3)}] [X = Cl(1),Br(2),I(3)],[AuCl3 {P(C6H4-4-OME)( 3)}](4),[Au {P(C6H4-4-OME)(3)}(2)] PF6(5),[Aux {P(C6H3-2,6- {OMO}(2)) (3)}] [x = Cl(6),Br(7),I(8)],[AUCL3 {P(C6H3-2,6- {OME}(2))(3)}](9)和[Au {p(C6H3-2,6- {OME}(2))(3)}(3)]对其对5例人肿瘤细胞系的抗癌活性进行研究[卵巢(SKOV-3) ,纤维糖瘤(HT1080),胶质母细胞瘤(U87mg),前列腺素(PC-3)和宫颈(HELA)]以及Hela细胞的3D球体模型。发现阳离子复合物10表现出显着广谱的抗癌活性,比Cisplatin对PC-3和U87MG癌细胞的毒性大约30倍;该综合体还表明Hela细胞3D模型中球体生长的最强抑制。发现这些金络合物的抗癌活性的机制是强烈的抑制氧化辛还原酶,ROS生产和随后的凋亡诱导,如亚G1细胞积累,DNA碎片和Caspase-3活化所证明的。

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