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Ru(II)-Cy​​anine 配合物作为有前途的光动力光敏剂,用于用高穿透力的 770nm 近红外光治疗缺氧肿瘤。

Ru(II)-Cyanine Complexes as Promising Photodynamic Photosensitizers for the Treatment of Hypoxic Tumours with Highly Penetrating 770 nm Near-Infrared Light.

机构信息

Chimie ParisTech, PSL University, CNRS, Institute of Chemistry for Life and Health Sciences, Laboratory for Inorganic Chemical Biology, 75005, Paris, France.

Departament de Química Inorgànica i Orgànica, Secció de Química Orgànica, Universitat de Barcelona (UB).

出版信息

Chemistry. 2023 Nov 2;29(61):e202301742. doi: 10.1002/chem.202301742. Epub 2023 Sep 22.

Abstract

Light-activated treatments, such as photodynamic therapy (PDT), provide temporal and spatial control over a specific cytotoxic response by exploiting toxicity differences between irradiated and dark conditions. In this work, a novel strategy for developing near infrared (NIR)-activatable Ru(II) polypyridyl-based photosensitizers (PSs) was successfully developed through the incorporation of symmetric heptamethine cyanine dyes in the metal complex via a phenanthrimidazole ligand. Owing to their strong absorption in the NIR region, the PSs could be efficiently photoactivated with highly penetrating NIR light (770 nm), leading to high photocytotoxicities towards several cancer cell lines under both normoxic and hypoxic conditions. Notably, our lead PS (Ru-Cyn-1), which accumulated in the mitochondria, exhibited a good photocytotoxic activity under challenging low-oxygen concentration (2 % O ) upon NIR light irradiation conditions (770 nm), owing to a combination of type I and II PDT mechanisms. The fact that the PS Protoporphyrin IX (PpIX), the metabolite of the clinically approved 5-ALA PS, was found inactive under the same challenging conditions positions Ru-Cyn-1 complex as a promising PDT agent for the treatment of deep-seated hypoxic tumours.

摘要

光激活治疗,如光动力疗法(PDT),通过利用辐照和黑暗条件下的毒性差异,提供对特定细胞毒性反应的时空控制。在这项工作中,通过在金属配合物中通过菲并咪唑配体掺入对称的七甲川氰染料,成功开发了一种用于开发近红外(NIR)可激活 Ru(II) 多吡啶基基于光敏剂(PS)的新策略。由于它们在近红外区域的强吸收,PS 可以用高穿透性的近红外光(770nm)高效光激活,导致在常氧和低氧条件下对几种癌细胞系具有高光细胞毒性。值得注意的是,我们的先导 PS(Ru-Cyn-1)在低氧浓度(2%O )下,在近红外光照射条件(770nm)下积累在线粒体中,由于 I 型和 II 型 PDT 机制的结合,表现出良好的光细胞毒性活性。事实证明,临床上批准的 5-ALA PS 的代谢物原卟啉 IX(PpIX)在相同的挑战性条件下不起作用,这使得 Ru-Cyn-1 络合物成为治疗深部缺氧肿瘤的有前途的 PDT 药物。

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