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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Alkynyl gold(I) phosphane complexes: Evaluation of structure-activity -relationships for the phosphane ligands, effects on key signaling proteins and preliminary in-vivo studies with a nanoformulated complex
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Alkynyl gold(I) phosphane complexes: Evaluation of structure-activity -relationships for the phosphane ligands, effects on key signaling proteins and preliminary in-vivo studies with a nanoformulated complex

机译:炔基金(I)膦配合物:评价膦配体的结构活性-关系,对关键信号蛋白的影响以及使用纳米配合物的初步体内研究

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摘要

Gold alkynyl complexes with phosphane ligands of the type (alkynyl)Au(I)(phosphane) represent a group of bioorganometallics, which has only recently been evaluated biologically in more detail. Structure-activity-relationship studies regarding the residues of the phosphane ligand (P(Ph)(3), P(2-furyl)(3), P(DAPTA)(3), P(PTA)(3), P(Et)(3), P(Me)(3)) of complexes with an 4-ethynylanisole alkyne ligand revealed no strong differences concerning cytotoxicity. However, a relevant preference for the heteroatom free alkyl/aryl residues concerning inhibition of the target enzyme thioredoxin reductase was evident. Complex 1 with the triphenylphosphane ligand was selected for further studies, in which clear effects on cell morphology were monitored by time-lapse microscopy. Effects on cellular signaling were determined by ELISA microarrays and showed a significant induction of the phosphorylation of ERK1 (extracellular signal related kinase 1), ERK2 and HSP27 (heat shock protein 27) in HT-29 cells. Application of 1 in-vivo in a mouse xenograft model was found to be challenging due to the low solubility of the complex and required a formulation strategy based on a peanut oil nanoemulsion. (C) 2015 Elsevier Inc. All rights reserved.
机译:具有(炔基)Au(I)(膦)类型的膦配体的金炔基络合物代表一组生物有机金属,最近才对其进行生物学更详细的评估。关于膦配体(P(Ph)(3),P(2-呋喃基)(3),P(DAPTA)(3),P(PTA)(3),P( Et)(3),P(Me)(3))与4-乙炔基苯甲醚炔配体的配合物未发现有关细胞毒性的强烈差异。然而,关于抑制目标酶硫氧还蛋白还原酶的杂原子游离烷基/芳基残基的相关偏好是明显的。选择具有三苯基膦配体的配合物1进行进一步研究,其中通过延时显微镜观察对细胞形态的明显影响。通过ELISA微阵列确定了对细胞信号传导的影响,并显示了HT-29细胞中ERK1(细胞外信号相关激酶1),ERK2和HSP27(热激蛋白27)的磷酸化的显着诱导。由于该复合物的低溶解度,在小鼠异种移植模型中体内应用1被发现具有挑战性,并且需要基于花生油纳米乳剂的配制策略。 (C)2015 Elsevier Inc.保留所有权利。

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