Two-photon fluorescence-guided precise photothermal therapy located in a single cancer cell utilizing bifunctional N-doped carbon quantum dots

光热治疗 荧光 量子点 量子产额 材料科学 纳米技术 光电子学 癌细胞 癌症 光学 物理 医学 内科学
作者
Dan Li,Kai Huang,Jiahong She,Yuying Cai,Boyuan Liu,Zhongchao Wei,Yibo Chen,Jinqing Huang,Haihua Fan
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:662: 719-726 被引量:8
标识
DOI:10.1016/j.jcis.2024.02.114
摘要

The utilization of carbon quantum dots (CQDs) for photothermal therapy has emerged as a hot research topic. However, there has been limited research on killing one single cancer cell which is critical in reducing unnecessary damage to the surrounding healthy tissues. In this work, we developed a two-photon fluorescence-guided precise photothermal therapy in a single human malignant melanoma (A375) cancer cell utilizing bifunctional N-doped CQDs. Resulting from the two-photon fluorescence of the CQDs, one single cancer cell can be located and simultaneously destroyed by the photothermal effect of the same CQDs. Specifically, the balanced two-photon absorption cross-section (7000 GM) and photoluminescence quantum yield (8.4 %) of the CQDs enable the fluorescence-guided photothermal treatment to be achieved in only 5 s under the irradiation of 800 nm laser of 27.5 mW, much faster than the control experiment without the guidance of fluorescence. The heat generated by the aggregated CQDs is in sufficient amounts while being confined in a small area, as evidenced by the numerical simulations and photothermal experiments, to limit the range of thermal treatment in the cells. This work provides a new approach for realizing photothermal therapy without minimal damage and establishes a new application scenario of CQDs for precise tumor ablation.
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