PEG化によるβ-シクロデキストリンの粘膜付着性の軽減:19F拡散NMR解析からの洞察
Kim Trang Huu Nguyen1, Yong Ba1
1Department of Chemistry and Biochemistry, California State University, Los Angeles, 5151 State University Drive, Los Angeles, CA 91016, USA.
Abstract:
β-Cyclodextrin (β-CD)-based materials are widely used in drug delivery, yet their interactions with mucosal barriers remain insufficiently understood. Because the mucus layer coating epithelial surfaces can hinder drug transport, elucidating β-CD-mucin interactions is critical for optimizing cyclodextrin-based carriers. In this study, we examined whether PEGylation can attenuate the mucoadhesive behavior of β-CD. Monomethoxy poly(ethylene glycol)-modified β-CDs (MPEG-β-CDs) were evaluated using 19F self-diffusion NMR spectroscopy coupled with a kinetic diffusion model describing reversible binding to stationary substrates. Mucin hydrogels were prepared from bovine submaxillary mucin and served as a model mucus environment. Diffusion coefficients were extracted from the 19F NMR signals of 1-fluoroadamantane (1FA) molecules encapsulated within HP-β-CD or MPEG-β-CD cavities. The results demonstrate that PEGylation substantially reduces β-CD-mucin adhesion, with longer PEG chains (2000 Da) providing more effective steric shielding than shorter chains (500 Da). These findings indicate that PEGylation can protect β-CD-included drugs during transport across mucosal barriers by minimizing unwanted β-CD-mucin interactions.
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