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双光子活性核靶向碳点:增强活性氧生成和光动力疗法治疗口腔癌。

Two-photon active nucleus-targeting carbon dots: enhanced ROS generation and photodynamic therapy for oral cancer.

机构信息

The University of Sydney, School of Chemical and Biomolecular Engineering, NSW 2006, Australia.

出版信息

Nanoscale. 2020 Oct 22;12(40):20598-20603. doi: 10.1039/d0nr05210h.

Abstract

Novel conjugated carbon dots (CDs) were synthesized as two-photon active photosensitisers to unleash lethal reactive oxygen species (ROS) for nucleus-targeting photodynamic therapy (PDT). To enhance the therapeutic efficiency and preclude non-specific CD uptake, we employed a combination of folic acid and curcumin for two-photon NIR-triggered ROS generation and enhanced internalization in the nucleus. Consequently, enhanced destruction of cancer cells occurred by directly attacking the DNA. The intrinsic ROS generation and nucleus-targeting ability of CDs introduced multifunctional two-photon active nanoprobes within a single platform for enhanced PDT in oral cancer theranostics.

摘要

新型共轭碳点(CDs)被合成作为双光子活性光增敏剂,以释放致死的活性氧(ROS),用于核靶向光动力疗法(PDT)。为了提高治疗效率并避免非特异性 CD 摄取,我们采用叶酸和姜黄素的组合,用于双光子近红外触发 ROS 的产生和在核内的增强内化。因此,通过直接攻击 DNA,增强了癌细胞的破坏。CDs 的固有 ROS 产生和核靶向能力在单个平台内引入了多功能双光子活性纳米探针,用于增强口腔癌治疗中的 PDT。

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