Cryogenic Exfoliation of 2D Stanene Nanosheets for Cancer Theranostics

被引:1
作者
Jiang Ouyang [1 ,2 ,3 ]
Ling Zhang [3 ]
Leijiao Li [4 ]
Wei Chen [2 ]
Zhongmin Tang [2 ]
Xiaoyuan Ji [2 ]
Chan Feng [2 ]
Na Tao [3 ]
Na Kong [2 ]
Tianfeng Chen [1 ]
You-Nian Liu [3 ]
Wei Tao [2 ]
机构
[1] The First A liated Hospital,Department of Chemistry,Jinan University
[2] Center for Nanomedicine and Department of Anesthesiology,Brigham and Women's Hospital,Harvard Medical School
[3] College of Chemistry and Chemical Engineering,Central South University
[4] School of Chemistry and Environmental Engineering,Changchun University of Science and Technology
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TB383.1 []; R730.5 [肿瘤治疗学]; TQ134.32 [];
学科分类号
070205 ; 080501 ; 0817 ; 100214 ; 1406 ;
摘要
Stanene(Sn)-based materials have been extensively applied in industrial production and daily life, but their potential biomedi-cal application remains largely unex-plored, which is due to the absence of the appropriate and e ective methods for fabricating Sn-based biomaterials. Herein, we explored a new approach combining cryogenic exfoliation and liquid-phase exfoliation to successfully manufacture two-dimensional(2D) Sn nanosheets(SnNSs). The obtained SnNSs exhibited a typical sheet-like structure with an average size of ~ 100 nm and a thickness of ~ 5.1 nm. After PEGylation, the resulting PEGylated SnNSs(SnNSs@PEG) exhibited good stability, superior biocompatibility, and excellent photothermal performance, which could serve as robust photothermal agents for multi-modal imaging(fluorescence/photoacoustic/photothermal imaging)-guided photothermal elimination of cancer. Furthermore, we also used first-principles density functional theory calculations to investigate the photothermal mechanism of SnNSs, revealing that the free electrons in upper and lower layers of SnNSs contribute to the conversion of the photo to thermal. This work not only introduces a new approach to fab-ricate 2D SnNSs but also establishes the SnNSs-based nanomedicines for photonic cancer theranostics. This new type of SnNSs with great potential in the field of nanomedicines may spur a wave of developing Sn-based biological materials to benefit biomedical applications.
引用
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页码:114 / 131
页数:18
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