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通过光致表面还原赋予无金属碳点可见光诱导的强氧化能力用于光催化抗菌和肿瘤治疗。

Visible-light-induced strong oxidation capacity of metal-free carbon nanodots through photo-induced surface reduction for photocatalytic antibacterial and tumor therapy.

机构信息

Joint Key Laboratory of the Ministry of Education, Institute of Applied Physics and Materials Engineering, University of Macau, 999078, Macau.

Cancer Center, Faculty of Health Sciences, University of Macau, 999078, Macau.

出版信息

J Colloid Interface Sci. 2023 Aug 15;644:107-115. doi: 10.1016/j.jcis.2023.04.032. Epub 2023 Apr 20.

Abstract

Biocompatible metal-free carbon dots (CDs) with good photo-induced strong oxidation capacity in aqueous solutions are scarce for high-performance photocatalytic antibacterial and tumor therapy. In this work, we achieved effective visible light-induced cell death and antibacterial performance based on biocompatible metal-free CDs. The visible-light-induced reducing ability of the surface electron-withdrawing structure of the CDs allowed for the remaining photo-induced holes with high oxidation capacity to oxidize water molecules and generate hydroxyl radicals. Antibiotic-resistant bacteria were effectively inhibited by the CDs under xenon lamp irradiation with 450 nm long pass filter. Moreover, CD-based tumor photocatalytic therapy in mice was achieved using a xenon lamp with 450 nm long pass filter (0.3 W cm).

摘要

在水相溶液中具有良好的光致强氧化能力的生物相容性无金属碳点(CDs)稀缺,难以实现用于高性能光催化抗菌和肿瘤治疗。在这项工作中,我们基于生物相容性无金属 CDs 实现了有效的可见光诱导细胞死亡和抗菌性能。CDs 表面吸电子结构的可见光诱导还原能力使剩余的具有高氧化能力的光致空穴氧化水分子并产生羟基自由基。在氙灯照射下,用 450nm 长通滤光片,抗生素耐药菌被 CDs 有效抑制。此外,通过使用带有 450nm 长通滤光片(0.3Wcm)的氙灯,在小鼠中实现了基于 CD 的肿瘤光催化治疗。

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