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Hydrogen-bonded silicene nanosheets of engineered bandgap and selective degradability for photodynamic therapy

Authors :
Min Ge
Jianjun Liu
Han Lin
Xiang Guo
Chenyao Wu
Deliang Xu
Xiangyu Lu
Zhixing Chen
Wujie Qiu
Jianlin Shi
Yanling You
Chenyang Wei
Source :
Biomaterials. 278:121172
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

Silicon, a highly biocompatible and ubiquitous chemical element in living systems, exhibits great potentials in biomedical applications. However, the silicon-based nanomaterials such as silica and porous silicon have been largely limited to only serving as carriers for delivery systems, due to the lack of intrinsic functionalities of silicon. This work presents the facile construction of a two-dimensional (2D) hydrogen-bonded silicene (H-silicene) nanosystem which is highlighted with tunable bandgap and selective degradability for tumor-specific photodynamic therapy facilely by surface covalent modification of hydrogen atoms. Briefly, the H-silicene nanosheet material is selectively degradable in normal neutral tissues but rather stable in the mildly acidic tumor microenvironment (TME) for achieving efficient photodynamic therapy (PDT). Such a 2D hydrogen-bonded silicene nanosystem featuring the tunable bandgap and tumor-selective degradability provides a new paradigm for the application of multi-functional two-dimensional silicon-based biomaterials towards the diagnosis and treatments of cancer and other diseases.

Details

ISSN :
01429612
Volume :
278
Database :
OpenAIRE
Journal :
Biomaterials
Accession number :
edsair.doi.dedup.....8c420f2a0f7cd1f461824fd6e661ad73
Full Text :
https://doi.org/10.1016/j.biomaterials.2021.121172