Computed tomography imaging-guided radiotherapy by targeting upconversion nanocubes with significant imaging and radiosensitization enhancements
Лучевая терапия под контролем компьютерной томографии с использованием апконверсионных нанокубов, обеспечивающих значительное улучшение визуализации и радиосенсибилизации
2013-04-29
SCID: 54.1/7u42u5vq
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active tumor targetingcomputed tomography-guided radiotherapyradiosensitizationtheranostic agentsupconversion nanocubes
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Abstract (AI)
The clinical potentials of radiotherapy could not be achieved completely because of the inaccurate positioning and inherent radioresistance of tumours. In this study, a novel active-targeting upconversion theranostic agent (arginine-glycine-aspartic acid-labelled BaYbF5: 2% Er(3+) nanocube) was developed for the first time to address these clinical demands. Heavy metal-based nanocubes (~10 nm) are potential theranostic agents with bifunctional features: computed tomography (CT) contrast agents for targeted tumour imaging and irradiation dose enhancers in tumours during radiotherapy. Remarkably, they showed low toxicity and excellent performance in active-targeting CT imaging and CT imaging-guided radiosensitizing therapy, which could greatly concentrate and enlarge the irradiation dose deposition in tumours to enhance therapeutic efficacy and minimize the damage to surrounding tissues.
Key Findings
1
A novel RGD-labelled BaYbF5:2% Er3+ upconversion nanocube was developed as an actively targeted theranostic agent for radiotherapy.
2
Approximately 10 nm heavy-metal nanocubes provide dual functionality as targeted CT contrast agents and tumour radiosensitizers.
3
CT imaging-guided treatment with the nanocubes concentrated and enhanced radiation dose deposition in tumours while reducing damage to surrounding tissues.
4
The approach addresses inaccurate tumour positioning and intrinsic radioresistance, improving the potential therapeutic efficacy of radiotherapy.
5
The nanocubes demonstrated low toxicity and effective active-targeting CT imaging performance.
Research Object
arginine-glycine-aspartic acid-labelled BaYbF5: 2% Er(3+) upconversion nanocubes used in tumour CT imaging-guided radiotherapy
Research Subject
their targeted CT imaging performance and radiosensitization enhancement of tumour irradiation while minimizing damage to surrounding tissues
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2013-04-29
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