中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
A scintillating nanoplatform with upconversion function for the synergy of radiation and photodynamic therapies for deep tumors

文献类型:期刊论文

作者Y. S. Feng; X. M. Liu; Q. Q. Li; S. L. Mei; K. F. Wu; J. Yuan; L. P. Tu; I. Que; F. Tamburini; F. Baldazzi
刊名Journal of Materials Chemistry C
出版日期2022
卷号10期号:2页码:688-695
ISSN号2050-7526
DOI10.1039/d1tc04930e
英文摘要Collaborative therapy is regarded as an effective approach in increasing the therapeutic efficacy of cancer. In this work, we have proposed and validated the concept of upconversion lumienscence image guided synergy of photodynamic therapy (PDT) and radiotherapy (RT) for deep cancer, via a specially designed nanoplatform integrating near infrared (NIR) light activated luminescence upconversion and X-ray induced scintillation. Upon NIR light irradiation, the nanoplatform emits highly monochromatic red light solely for imaging the targeted cancer cells without triggering therapy; however, when the irradiation turns to a low dose of X-rays, scintillation will occur which induces effectively the PDT destroying the cancer cells together with X-ray induced RT. The novel theranostic nanoplatform is constructed in such a way that the interactions between the upconversion core and the outmost scintillating shell are blocked effectively by an inert layer between them. This structural design not only enables a nearly perfect excitation energy delivery (similar to 100% at a spectral overlapping wavelength of similar to 540 nm) from the outermost scintellating layer to the surface-anchored photosensitizers and so a maximum yield of radical oxygen species, but also achieves a strong NIR induced upconversion luminescence for imaging. Since PDT and RT attack different parts of a cancer cell, this synergy is more effective in destroying cancer than a single therapy, resulting in the reduction of the X-ray irradiation dosage. As a proof of principle, the theranostic effect is validated by in vitro and in vivo experiments, exhibiting the great potential of this sort of nanoplatform in deep cancer treatment.
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源URL[http://ir.ciomp.ac.cn/handle/181722/65613]  
专题中国科学院长春光学精密机械与物理研究所
推荐引用方式
GB/T 7714
Y. S. Feng,X. M. Liu,Q. Q. Li,et al. A scintillating nanoplatform with upconversion function for the synergy of radiation and photodynamic therapies for deep tumors[J]. Journal of Materials Chemistry C,2022,10(2):688-695.
APA Y. S. Feng.,X. M. Liu.,Q. Q. Li.,S. L. Mei.,K. F. Wu.,...&C. J. Yao and H. Zhang.(2022).A scintillating nanoplatform with upconversion function for the synergy of radiation and photodynamic therapies for deep tumors.Journal of Materials Chemistry C,10(2),688-695.
MLA Y. S. Feng,et al."A scintillating nanoplatform with upconversion function for the synergy of radiation and photodynamic therapies for deep tumors".Journal of Materials Chemistry C 10.2(2022):688-695.

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来源:长春光学精密机械与物理研究所

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