量子点
材料科学
癌症
磁共振成像
生物相容性材料
纳米技术
癌细胞
荧光
癌症研究
癌症治疗
光热治疗
生物医学工程
生物物理学
医学
光学
放射科
生物
内科学
物理
作者
Yingying Li,Peisen Zhang,Wen Tang,Kevin J. McHugh,Stephen V. Kershaw,Mingxia Jiao,Xiaodan Huang,Sergii Kalytchuk,Collin F. Perkinson,Saisai Yue,Yuanyuan Qiao,Lichong Zhu,Lihong Jing,Mingyuan Gao,Buxing Han
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-04-20
卷期号:16 (5): 8076-8094
被引量:40
标识
DOI:10.1021/acsnano.2c01153
摘要
Improving the effectiveness of cancer therapy will require tools that enable more specific cancer targeting and improved tumor visualization. Theranostics have the potential for improving cancer care because of their ability to serve as both diagnostics and therapeutics; however, their diagnostic potential is often limited by tissue-associated light absorption and scattering. Herein, we develop CuInSe2@ZnS:Mn quantum dots (QDs) with intrinsic multifunctionality that both enable the accurate localization of small metastases and act as potent tumor ablation agents. By leveraging the growth kinetics of a ZnS shell on a biocompatible CuInSe2 core, Mn doping, and folic acid functionalization, we produce biocompatible QDs with high near-infrared (NIR)-II fluorescence efficiency up to 31.2%, high contrast on magnetic resonance imaging (MRI), and preferential distribution in 4T1 breast cancer tumors. MRI-enabled contrast of these nanoprobes is sufficient to timely identify small metastases in the lungs, which is critically important for preventing cancer spreading and recurrence. Further, exciting tumor-resident QDs with NIR light produces both fluorescence for tumor visualization through radiative recombination pathways as well as heat and radicals through nonradiative recombination pathways that kill cancer cells and initiate an anticancer immune response, which eliminates tumor and prevents tumor regrowth in 80% of mice.
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