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用于有效光动力治疗的基于工程金属环的超分子光敏剂

Engineered Metallacycle-Based Supramolecular Photosensitizers for Effective Photodynamic Therapy.

作者信息

Tu Le, Li Chonglu, Xiong Xiaoxing, Hyeon Kim Ji, Li Qian, Mei Longcan, Li Junrong, Liu Shuang, Seung Kim Jong, Sun Yao

机构信息

National Key Laboratory of Green Pesticide, College of Chemistry, Central China Normal University, Wuhan, 430079, China.

Department of Neurosurgery, Renmin Hospital of Wuhan University, Wuhan, 430060, China.

出版信息

Angew Chem Int Ed Engl. 2023 Apr 3;62(15):e202301560. doi: 10.1002/anie.202301560. Epub 2023 Mar 2.

Abstract

Although metallacycle-based supramolecular photosensitizers (PSs) have attracted increasing attention in biomedicine, their clinical translation is still hindered by their inherent dark toxicity. Herein, we report what to our knowledge is the first example of a molecular engineering approach to building blocks of metallacycles for constructing a series of supramolecular PSs (RuA-RuD), with the aim of simultaneously reducing dark toxicity and enhancing phototoxicity, and consequently obtaining high phototoxicity indexes (PI). Detailed in vitro investigations demonstrate that RuA-RuD display high cancer cellular uptake and remarkable antitumor activity even under hypoxic conditions. Notably, RuD exhibited no dark toxicity and displayed the highest PI value (≈406). Theoretical calculations verified that RuD has the largest steric hindrance and the lowest singlet-triplet energy gap (ΔE , 0.61 eV). Further in vivo studies confirmed that RuD allows safe and effective phototherapy against A549 tumors.

摘要

尽管基于金属环的超分子光敏剂(PSs)在生物医学领域已引起越来越多的关注,但其临床应用仍受到其固有的暗毒性的阻碍。在此,据我们所知,我们报道了首个通过分子工程方法构建金属环构建块以制备一系列超分子PSs(RuA - RuD)的实例,目的是同时降低暗毒性并增强光毒性,从而获得高光毒性指数(PI)。详细的体外研究表明,即使在缺氧条件下,RuA - RuD也表现出高癌细胞摄取和显著的抗肿瘤活性。值得注意的是,RuD没有暗毒性,并且显示出最高的PI值(约406)。理论计算证实,RuD具有最大的空间位阻和最低的单重态 - 三重态能隙(ΔE,0.61 eV)。进一步的体内研究证实,RuD能够对A549肿瘤进行安全有效的光疗。

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