A platelet-mimicking theranostic platform for cancer interstitial brachytherapy

Interstitial brachytherapy (BT) is a promising radiation therapy for cancer; however, the efficacy of BT is limited by tumor radioresistance. Recent advances in materials science and nanotechnology have offered many new opportunities for BT. In this work, we developed a biomimetic nanotheranostic pl...

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Veröffentlicht in:Theranostics 2021-01, Vol.11 (15), p.7589-7599
Hauptverfasser: Lyu, Meng, Chen, Mingzhu, Liu, Lujie, Zhu, Daoming, Wu, Xianjia, Li, Yang, Rao, Lang, Bao, Zhirong
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Sprache:eng
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Zusammenfassung:Interstitial brachytherapy (BT) is a promising radiation therapy for cancer; however, the efficacy of BT is limited by tumor radioresistance. Recent advances in materials science and nanotechnology have offered many new opportunities for BT. In this work, we developed a biomimetic nanotheranostic platform for enhanced BT. Core-shell Au@AuPd nanospheres (CANS) were synthesized and then encapsulated in platelet (PLT)-derived plasma membranes. The resulting PLT/CANS nanoparticles efficiently evaded immune clearance and specifically accumulated in tumor tissues due to the targeting capabilities of the PLT membrane coating. Under endoscopic guidance, a BT needle was manipulated to deliver appropriate radiation doses to orthotopic colon tumors while sparing surrounding organs. Accumulated PLT/CANS enhanced the irradiation dose deposition in tumor tissue while alleviating tumor hypoxia by catalyzing endogenous H O to produce O . After treatment with PLT/CANS and BT, 100% of mice survived for 30 days. Our work presents a safe, robust, and efficient strategy for enhancing BT outcomes when adapted to treatment of intracavitary and unresectable tumors.
ISSN:1838-7640
1838-7640
DOI:10.7150/thno.61259