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炔基金(I)膦配合物:膦配体的构效关系评估、对关键信号蛋白的影响以及纳米制剂配合物的初步体内研究。

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.

作者信息

Andermark Vincent, Göke Katrin, Kokoschka Malte, Abu El Maaty Mohamed A, Lum Ching Tung, Zou Taotao, Sun Raymond Wai-Yin, Aguiló Elisabet, Oehninger Luciano, Rodríguez Laura, Bunjes Heike, Wölfl Stefan, Che Chi-Ming, Ott Ingo

机构信息

Institute of Medicinal and Pharmaceutical Chemistry, Technische Universität Braunschweig, Beethovenstrasse 55, 38106 Braunschweig, Germany; PVZ - Center of Pharmaceutical Engineering, Franz-Liszt-Straße 35A, 38106 Braunschweig, Germany.

PVZ - Center of Pharmaceutical Engineering, Franz-Liszt-Straße 35A, 38106 Braunschweig, Germany; Institute of Pharmaceutical Technology, Technische Universität Braunschweig, Mendelssohnstrasse 1, 38106 Braunschweig, Germany.

出版信息

J Inorg Biochem. 2016 Jul;160:140-8. doi: 10.1016/j.jinorgbio.2015.12.020. Epub 2015 Dec 30.

Abstract

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.

摘要

具有(炔基)Au(I)(膦)类型膦配体的金炔基配合物代表了一类生物有机金属化合物,直到最近才对其进行更详细的生物学评估。关于具有4-乙炔基苯甲醚炔配体的配合物的膦配体(三苯基膦、三(2-呋喃基)膦、三(二氨基丙基)膦、三(1,3,5-三氮杂-2-磷杂金刚烷)膦、三乙基膦、三甲基膦)残基的构效关系研究表明,在细胞毒性方面没有显著差异。然而,对于抑制靶酶硫氧还蛋白还原酶而言,明显更倾向于不含杂原子的烷基/芳基残基。选择具有三苯基膦配体的配合物1进行进一步研究,通过延时显微镜监测其对细胞形态的明显影响。通过ELISA微阵列确定对细胞信号传导的影响,结果显示在HT-29细胞中ERK1(细胞外信号调节激酶1)、ERK2和HSP27(热休克蛋白27)的磷酸化有显著诱导。由于该配合物溶解度低,在小鼠异种移植模型中进行配合物1的体内应用具有挑战性,需要基于花生油纳米乳液的制剂策略。

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