4.7 Article

Borophosphate glasses as active agents for antimicrobial hydrogels

Journal

INTERNATIONAL JOURNAL OF PHARMACEUTICS
Volume 644, Issue -, Pages -

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ELSEVIER
DOI: 10.1016/j.ijpharm.2023.123323

Keywords

Borophosphate glasses; Hydrogel; Antimicrobial activity; Transition metal-free agent

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Here, we report the synthesis of transition-metal-free potassium borophosphate glasses and their application as bactericidal and bacteriostatic material. The antimicrobial activity was achieved by making the glass soluble in water through a simple change in the boron and phosphorus molar ratio. Hydrogel formulations were developed using these glasses and tested for their antimicrobial activity.
Herein we report the synthesis of transition-metal-free potassium borophosphate glasses and their application as bactericidal and bacteriostatic material. The antimicrobial activity was achieved through a simple change in the molar ratio of boron and phosphorus atoms, making borophosphate glass soluble in water. The glasses were analyzed by X-ray powder diffraction, Raman spectroscopy, laser-induced breakdown spectroscopy, and water absorption. The addition of a boron compound is required to obtain potassium-based phosphate glasses. Moreover, the change in the phosphorus and boron molar ratio (P/B), 2, 1 or 0.5 affects the glass solubilization in water, which increases with the phosphorus content. The glass materials were submitted to tests of biological activity against the bacteria Staphylococcus aureus, Escherichia coli, and Pseudomonas aeruginosa. These watersoluble borophosphate glasses were employed in the development of hydrogel formulations using Carbopol (R). Phosphorous-rich samples at a concentration of 15 % (w/w) in hydrogel showed better antimicrobial activity against S. aureus and E. coli, when compared to other samples, including commercial alcohol hand sanitizer gel, with an average size of the inhibition halo of 24.02 +/- 1.43 and 19.24 +/- 1.63 mm, respectively.

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