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High Drug Encapsulation Capacity in Cyclodextrin-Based Nanoparticles: Characterization and In Vivo Antitumor Efficacy
Tomoki Kosugi1, Mina Sakuragi2, Madoka Toya3
1Department of Chemistry and Biochemistry, The University of Kitakyushu, 1-1, Hibikino, Wakamatsu, Kitakyushu, Fukuoka 808-0135, Japan.
None:
Insufficient drug encapsulation, typically at about 10 wt %, remains a major challenge in the design of nanotechnology-based drug delivery systems. In this study, we created cyclodextrin-based nanoparticles (CDNP_PEGs), synthesized by the hyperbranched polymerization of cyclodextrins using a diepoxy poly-(ethylene glycol) linker, which exhibited a high drug encapsulation capacity of up to 54 wt % using the xanthone derivative α-mangostin (MGS) as a model compound. Evaluation in a tumor-bearing mouse model indicated that a single intravenous administration via the tail vein induced a significantly greater antitumor effect compared with free MGS. These results demonstrate the potential of CDNP_PEGs as promising high-capacity carriers for the delivery of anticancer drugs.
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