Abstract
Here, we report the simple construction of a supramolecular glycomaterial for the targeted delivery of antibiotics to P. aeruginosa in a photothermally-controlled manner. A galactose-pyrene conjugate (Gal-pyr) was developed to self-assemble with graphene nanoribbon-based nanowires via π-π stacking to produce a supramolecular glycomaterial, which exhibits a 1250-fold enhanced binding avidity toward a galactose-selective lectin when compared to Gal-pyr. The as-prepared glycomaterial when loaded with an antibiotic that acts as an inhibitor of the bacterial folic acid biosynthetic pathway eradicated P. aeruginosa-derived biofilms under near-infrared light irradiation due to the strong photothermal effect of the nanowires accelerating antibiotic release.
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CITATION STYLE
Shang, Y., Zhang, S., Gan, H. Q., Yan, K. C., Xu, F., Mai, Y., … He, X. P. (2023). Targeted photothermal release of antibiotics by a graphene nanoribbon-based supramolecular glycomaterial. Chemical Communications, 59(8), 1094–1097. https://doi.org/10.1039/d2cc05879k
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