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活细胞中用于细胞器靶向和增强光动力作用的动态共价化学。

Dynamic covalent chemistry in live cells for organelle targeting and enhanced photodynamic action.

作者信息

Liu Fei, Danylchuk Dmytro I, Andreiuk Bohdan, Klymchenko Andrey S

机构信息

Laboratoire de Bioimagerie et Pathologies, UMR 7021 CNRS, ITI Chimie des Systèmes Complexes, Université de Strasbourg 74 Route du Rhin 67401 Illkirch France

出版信息

Chem Sci. 2022 Feb 4;13(13):3652-3660. doi: 10.1039/d1sc04770a. eCollection 2022 Mar 30.

Abstract

Organelle-specific targeting enables increasing the therapeutic index of drugs and localizing probes for better visualization of cellular processes. Current targeting strategies require conjugation of a molecule of interest with organelle-targeting ligands. Here, we propose a concept of dynamic covalent targeting of organelles where the molecule is conjugated with its ligand directly inside live cells through a dynamic covalent bond. For this purpose, we prepared a series of organelle-targeting ligands with a hydrazide residue for reacting with dyes and drugs bearing a ketone group. We show that dynamic hydrazone bond can be formed between these hydrazide ligands and a ketone-functionalized Nile Red dye (NRK) in model lipid membranes or nanoemulsion droplets. Fluorescence imaging in live cells reveals that the targeting hydrazide ligands can induce preferential localization of NRK dye and an anti-cancer drug doxorubicin in plasma membranes, mitochondria and lipid droplets. Thus, with help of the dynamic covalent targeting, it becomes possible to direct a given bioactive molecule to any desired organelle inside the cell without its initial functionalization by the targeting ligand. Localizing the same NRK dye in different organelles by the hydrazide ligands is found to affect drastically its photodynamic activity, with the most pronounced phototoxic effects in mitochondria and plasma membranes. The capacity of this approach to tune biological activity of molecules can improve efficacy of drugs and help to understand better their intracellular mechanisms.

摘要

细胞器特异性靶向能够提高药物的治疗指数并定位探针,以便更好地观察细胞过程。目前的靶向策略需要将感兴趣的分子与细胞器靶向配体结合。在此,我们提出了一种细胞器动态共价靶向的概念,即分子通过动态共价键在活细胞内直接与其配体结合。为此,我们制备了一系列带有酰肼残基的细胞器靶向配体,用于与带有酮基的染料和药物反应。我们表明,在模型脂质膜或纳米乳液滴中,这些酰肼配体与酮功能化的尼罗红染料(NRK)之间可以形成动态腙键。活细胞中的荧光成像显示,靶向酰肼配体可以诱导NRK染料和抗癌药物阿霉素优先定位于质膜、线粒体和脂滴中。因此,借助动态共价靶向,无需事先用靶向配体对其进行功能化,就可以将给定的生物活性分子导向细胞内任何所需的细胞器。发现通过酰肼配体将相同的NRK染料定位在不同的细胞器中会极大地影响其光动力活性,在线粒体和质膜中光毒性作用最为明显。这种调节分子生物活性的方法能够提高药物疗效,并有助于更好地理解其细胞内作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d86/8966643/214e4e49acfe/d1sc04770a-s1.jpg

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