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Photobleaching-mediated charge-convertible cyclodextrin nanoparticles achieve deep tumour penetration for rectal cancer theranostics

Cited 15 time in Web of Science Cited 14 time in Scopus
Authors

Nguyen, Duy-Thuc; Baek, Min-Jun; Lee, Sang Min; Kim, Dahan; Yoo, So-Yeol; Lee, Jae-Young; Kim, Dae-Duk

Issue Date
2024-11
Publisher
NATURE PORTFOLIO
Citation
NATURE NANOTECHNOLOGY, Vol.19 No.11, pp.1723-1734
Abstract
Although charge-converting nanoparticles (NPs) potentially penetrate tumours deeply, conventional charge conversion strategies possess limitations, including low selectivity and slow, inconsistent conversion rate within the tumour microenvironment. In this study, we synthesized a zwitterionic near-infrared cyclodextrin derivative of heptamethine cyanine and complexed it with pheophorbide-conjugated ferrocene to produce multifunctional theranostic nanotherapeutics. Our NPs demonstrated enhanced tumour-targeting ability, enabling the highly specific imaging of rectal tumours, with tumour-to-rectum signal ratios reaching up to 7.8. The zwitterionic surface charge of the NPs was rapidly converted to a cationic charge within the tumours on 880 nm near-infrared laser irradiation, promoting the tumoural penetration of NPs via transcytosis. After penetration, photodynamic/chemodynamic therapy was initiated using a 660 nm laser. Our NPs eradicated clinically relevant-sized heterotopic tumours (similar to 250 mm(3)) and orthotopic rectal tumours, displaying their potential as theranostic nanoplatforms for targeting rectal cancer.
ISSN
1748-3387
URI
https://hdl.handle.net/10371/216534
DOI
https://doi.org/10.1038/s41565-024-01757-4
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  • College of Pharmacy
  • Department of Pharmacy
Research Area Biomaterial-based nano-platforms for cancer drug delivery and imaging, Formulation design and development, Functional protein expression and evaluation for drug delivery and therapy applications

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