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Bi2S3/Ti3C2-TPP nano-heterostructures induced by near-infrared for photodynamic therapy combined with photothermal therapy on hypoxic tumors

Тип публикацииJournal Article
Дата публикации2024-03-20
SCImago Q1
Tоп 10% SCImago
WOS Q1
БС1
SJR2.517
CiteScore20.2
Impact factor15
ISSN14773155
Medicine (miscellaneous)
Pharmaceutical Science
Molecular Medicine
Applied Microbiology and Biotechnology
Bioengineering
Biomedical Engineering
Краткое описание
Background

Photodynamic therapy (PDT) efficacy of bismuth sulfide (Bi2S3) semiconductor has been severely restricted by its electron–hole pairs (e−h+) separation inefficiency and oxygen (O2) deficiency in tumors, which greatly hinders reactive oxygen species (ROS) generation and further clinical application of Bi2S3 nanoparticles (NPs) in biomedicine.

Results

Herein, novel Bi2S3/titanium carbide (Ti3C2) two-dimensional nano-heterostructures (NHs) are designed to realize multimode PDT of synchronous O2 self-supply and ROS generation combined with highly efficient photothermal tumor elimination for hypoxic tumor therapy. Bi2S3/Ti3C2 NHs were synthesized via the in situ synthesis method starting from Ti3C2 nanosheets (NSs), a classical type of MXene nanostructure. Compared to simple Bi2S3 NPs, Bi2S3/Ti3C2 NHs significantly extend the absorption to the near-infrared (NIR) region and enhance the photocatalytic activity owing to the improved photogenerated carrier separation, where the hole on the valence band (VB) of Bi2S3 can react with water to supply O2 for the electron on the Ti3C2 NSs to generate ·O2 and ·OH through electron transfer. Furthermore, they also achieve 1O2 generation through energy transfer due to O2 self-supply. After the modification of triphenylphosphium bromide (TPP) on Bi2S3/Ti3C2 NHs, systematic in vitro and in vivo evaluations were conducted, revealing that the synergistic-therapeutic outcome of this nanoplatform enables complete eradication of the U251 tumors without recurrence by NIR laser irradiation, and it can be used for computed tomography (CT) imaging because of the strong X-ray attenuation ability.

Conclusion

This work expands the phototherapeutic effect of Bi2S3-based nanoplatforms, providing a new strategy for hypoxic tumor theranostics.

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ГОСТ |
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Jiang H. et al. Bi2S3/Ti3C2-TPP nano-heterostructures induced by near-infrared for photodynamic therapy combined with photothermal therapy on hypoxic tumors // Journal of Nanobiotechnology. 2024. Vol. 22. No. 1. 123
ГОСТ со всеми авторами (до 50) Скопировать
Jiang H., Sun J., Liu F., Zhao Y., Chen X., Dai C., Wen Z. Bi2S3/Ti3C2-TPP nano-heterostructures induced by near-infrared for photodynamic therapy combined with photothermal therapy on hypoxic tumors // Journal of Nanobiotechnology. 2024. Vol. 22. No. 1. 123
RIS |
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TY - JOUR
DO - 10.1186/s12951-024-02391-x
UR - https://doi.org/10.1186/s12951-024-02391-x
TI - Bi2S3/Ti3C2-TPP nano-heterostructures induced by near-infrared for photodynamic therapy combined with photothermal therapy on hypoxic tumors
T2 - Journal of Nanobiotechnology
AU - Jiang, Hanwen
AU - Sun, Jingxian
AU - Liu, Fucong
AU - Zhao, Yuanjiao
AU - Chen, Xin
AU - Dai, Changsong
AU - Wen, Zhaohui
PY - 2024
DA - 2024/03/20
PB - Springer Nature
IS - 1
VL - 22
PMID - 38504272
SN - 1477-3155
ER -
BibTex
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BibTex (до 50 авторов) Скопировать
@article{2024_Jiang,
author = {Hanwen Jiang and Jingxian Sun and Fucong Liu and Yuanjiao Zhao and Xin Chen and Changsong Dai and Zhaohui Wen},
title = {Bi2S3/Ti3C2-TPP nano-heterostructures induced by near-infrared for photodynamic therapy combined with photothermal therapy on hypoxic tumors},
journal = {Journal of Nanobiotechnology},
year = {2024},
volume = {22},
publisher = {Springer Nature},
month = {mar},
url = {https://doi.org/10.1186/s12951-024-02391-x},
number = {1},
pages = {123},
doi = {10.1186/s12951-024-02391-x}
}
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