Physico-Chemical Characterization and Antimicrobial Properties of Hybrid Film Based on Saponite and Phloxine B

This research was aimed at the preparation of a hybrid film based on a layered silicate saponite (Sap) with the immobilized photosensitizer phloxine B (PhB). Sap was selected because of its high cation exchange capacity, ability to exfoliate into nanolayers, and to modify different surfaces. The X-r...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2021-01, Vol.26 (2), p.325
Hauptverfasser: Dadi, Nitin Chandra Teja, Dohál, Matúš, Medvecká, Veronika, Bujdák, Juraj, Koči, Kamila, Zahoranová, Anna, Bujdáková, Helena
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Sprache:eng
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Zusammenfassung:This research was aimed at the preparation of a hybrid film based on a layered silicate saponite (Sap) with the immobilized photosensitizer phloxine B (PhB). Sap was selected because of its high cation exchange capacity, ability to exfoliate into nanolayers, and to modify different surfaces. The X-ray diffraction of the films confirmed the intercalation of both the surfactant and PhB molecules in the Sap film. The photosensitizer retained its photoactivity in the hybrid films, as shown by fluorescence spectra measurements. The water contact angles and the measurement of surface free energy demonstrated the hydrophilic nature of the hybrid films. Antimicrobial effectiveness, assessed by the photodynamic inactivation on hybrid films, was tested against a standard strain and against methicillin-resistant bacteria of (MRSA). One group of samples was irradiated (green LED light; 2.5 h) and compared to nonirradiated ones. strains manifested a reduction in growth from 1-log to over 3-log compared to the control samples with Sap only, and defects in cells were proven by scanning electron microscopy. The results proved the optimal photo-physical properties and anti-MRSA potential of this newly designed hybrid system that reflects recent progress in the modification of surfaces for various medical applications.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules26020325