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碳-磷稳定的金(I)抗癌剂 双膦诱导的还原消除反应。

Carbon-phosphorus stapled Au(I) anticancer agents bisphosphine induced reductive elimination.

作者信息

Gilpatrick Sean T, Obisesan Oluwatosin A, Parkin Sean, Awuah Samuel G

机构信息

Department of Chemistry, University of Kentucky, Lexington, KY 40506, USA.

Center for Pharmaceutical Research and Innovation and Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, KY 40536, USA.

出版信息

Dalton Trans. 2024 Dec 3;53(47):18974-18982. doi: 10.1039/d4dt01929f.

Abstract

Towards the goal of generating new stabilized gold complexes as potent anticancer agents, we report here a novel class of Au(I) agents from Au(III)-mediated C-P bond formation captured within the same complex by reacting a C^N cyclometalated Au(III) complex with bisphosphines. Cyclometalated Au(III) complexes of the type [Au(C^N)Cl], where C^N represent different aryl pyridine framework reacted with bis(2-diphenylphosphino)phenyl ether in refluxing methanol to access an unsymmetrical gold complex featuring C-P coupling and Au(I)-phosphine. The complexes were characterized by H-NMR, C-NMR, and P-NMR and mass spectrometry. The structures of the complexes were characterized by X-ray crystallography and purity ascertained by HPLC and elemental analysis. The complexes demonstrate promising anticancer activity in a broad panel of cancer cell lines of different tumor origin. Mechanistically, the complexes induce apoptosis, generate mitochondrial ROS, depolarize mitochondrial membrane potential and modulate mitochondrial respiration in cancer cells. Overall, we developed a new structural class of Au(I) complexes with promising anticancer potential with potential utility in other applications.

摘要

为了实现合成新型稳定金配合物作为强效抗癌剂的目标,我们在此报告了一类新型的金(I)试剂,该试剂通过使C^N环金属化金(III)配合物与双膦反应,在同一配合物中通过金(III)介导的C-P键形成而获得。[Au(C^N)Cl]类型的环金属化金(III)配合物(其中C^N代表不同的芳基吡啶骨架)与双(2-二苯基膦基)苯醚在回流甲醇中反应,得到一种具有C-P偶联和金(I)-膦的不对称金配合物。通过H-NMR、C-NMR、P-NMR和质谱对配合物进行了表征。通过X射线晶体学对配合物的结构进行了表征,并通过HPLC和元素分析确定了纯度。这些配合物在不同肿瘤来源的多种癌细胞系中显示出有前景的抗癌活性。从机制上讲,这些配合物可诱导癌细胞凋亡、产生活性氧、使线粒体膜电位去极化并调节线粒体呼吸。总体而言,我们开发了一类具有前景的抗癌潜力且在其他应用中可能有用的新型结构金(I)配合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a97/11333934/936d9a765509/d4dt01929f-f1.jpg

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