Ultrasound-responsive glycopolymer micelles for targeted dual drug delivery in cancer therapy

Controlled drug release of nanoparticles was achieved by irreversibly disrupting polymer micelles through high-intensity focused ultrasound (HIFU) induction. An ultrasound-responsive block copolymer was synthesized, comprising an end-functional Eosin Y fluorophore, 2-tetrahydropyranyl acrylate (THPA...

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Veröffentlicht in:Biomaterials science 2023-09, Vol.11 (18), p.6149-6159
Hauptverfasser: Lin, Shanmeng, Zhu, Liwei, Li, Zhiying, Yue, Siyuan, Wang, Zhaohan, Xu, Youwei, Zhang, Yichuan, Gao, Quan, Chen, Jie, Yin, Ting, Niu, Lili, Geng, Jin
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Sprache:eng
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Zusammenfassung:Controlled drug release of nanoparticles was achieved by irreversibly disrupting polymer micelles through high-intensity focused ultrasound (HIFU) induction. An ultrasound-responsive block copolymer was synthesized, comprising an end-functional Eosin Y fluorophore, 2-tetrahydropyranyl acrylate (THPA), and acrylate mannose (MAN). The block copolymer was then self-assembled to produce micelles. The chemotherapy drug dasatinib (DAS) and the sonodynamic therapy agent methylene blue (MB) were encapsulated by the self-assembly of the block copolymer. This targeted nanoparticle enables sonodynamic therapy through high-intensity focused ultrasound while triggering nanoparticle disassembly for controlled drug release. The ultrasound-mediated, non-invasive strategy provides external spatiotemporal control for targeted tumour treatment. Controlled drug release of nanoparticles was achieved by irreversibly disrupting polymer micelles through high-intensity focused ultrasound (HIFU) induction.
ISSN:2047-4830
2047-4849
DOI:10.1039/d3bm01101a