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通过一种前所未有的离子配对方法,将细胞不可渗透的DNA“光开关”钌(II)配合物优先递送至活细胞核中。

Delivering the cell-impermeable DNA 'light-switching' Ru(ii) complexes preferentially into live-cell nucleus an unprecedented ion-pairing method.

作者信息

Zhu Ben-Zhan, Chao Xi-Juan, Huang Chun-Hua, Li Yan

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology , Research Center for Eco-Environmental Sciences , The Chinese Academy of Sciences , P.O. Box 2871 , Beijing , P. R. China 100085 . Email:

Linus Pauling Institute , Oregon State University , Corvallis , OR 97331 , USA.

出版信息

Chem Sci. 2016 Jul 1;7(7):4016-4023. doi: 10.1039/c5sc03796d. Epub 2016 Apr 5.

Abstract

The dipyridophenazine (dppz) based ruthenium polypyridyl complexes are known as molecular 'light-switches' for DNA. This property is poised to serve in diagnostic and therapeutic applications, but the poor cellular uptake restricts their use in live cells. Herein, we show that the cellular uptake, and more interestingly and surprisingly, the nuclear uptake of cell-impermeable Ru(ii)-polypyridyl cationic complexes such as [Ru(bpy)(dppz)] were remarkably enhanced by three structurally unrelated biochemical agents (pentachlorophenol, carbonyl cyanide -(trifluoromethoxy)phenylhydrazone and tolfenamic acid), by forming lipophilic and relatively stable ion-pair complexes, a passive diffusion mechanism. Enantioselective imaging of live-cell nuclear DNA was observed between the two chiral forms of Ru(ii) complexes. This represents the first report of an unprecedented new method for delivering the DNA 'light-switching' Ru(ii) complexes into the nucleus of living cells ion-pairing, which could serve as a promising general live-cell delivery method for other potentially bio-medically important but cell-impermeable metal complexes.

摘要

基于二吡啶并菲嗪(dppz)的钌多吡啶配合物被称为DNA的分子“光开关”。这一特性有望用于诊断和治疗应用,但细胞摄取能力较差限制了它们在活细胞中的应用。在此,我们表明,三种结构不相关的生化试剂(五氯苯酚、羰基氰-(三氟甲氧基)苯腙和托芬那酸)通过形成亲脂性且相对稳定的离子对配合物(一种被动扩散机制),显著增强了细胞对不可渗透细胞的Ru(II)-多吡啶阳离子配合物(如[Ru(bpy)(dppz)])的摄取,更有趣且令人惊讶的是,增强了其核摄取。在Ru(II)配合物的两种手性形式之间观察到了活细胞核DNA的对映选择性成像。这代表了首次报道一种前所未有的新方法,即通过离子配对将DNA“光开关”Ru(II)配合物递送到活细胞的细胞核中,这可能成为一种有前景的通用活细胞递送方法,用于其他潜在具有生物医学重要性但不可渗透细胞的金属配合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/379c/6013783/2921055d2e3c/c5sc03796d-f1.jpg

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