The active moieties of the anti-biofilm natural compounds zosteric (ZA) and salicylic (SA) acids have been covalently immobilized on a low density polyethylene (LDPE) surface. The grafting procedure provided new non-toxic eco-friendly materials (LDPE-CA and LDPE-SA) with anti-biofilm properties superior to the conventional biocide-based approaches and with features suitable for applications in challenging fields where the use of antimicrobial agents is limited. Microbiological investigation proved that LDPE-CA and LDPE-SA: (1) reduced Escherichia coli biofilm biomass by up to 61% with a mechanism that did not affect bacterial viability; (2) significantly affected biofilm morphology, decreasing biofilm thickness, roughness, substratum coverage, cell and matrix polysaccharide bio-volumes by >80% and increasing the surface to bio-volume ratio; (3) made the biofilm more susceptible to ampicillin and ethanol. Since no molecules were leached from the surface, they remained constantly effective and below the lethal level; therefore, the risk of inducing resistance was minimized.

Zosteric acid and salicylic acid bound to a low density polyethylene surface successfully control bacterial biofilm formation / C. Cattò, G. James, F. Villa, S. Villa, F. Cappitelli. - In: BIOFOULING. - ISSN 0892-7014. - (2018 May 04). [Epub ahead of print]

Zosteric acid and salicylic acid bound to a low density polyethylene surface successfully control bacterial biofilm formation

C. Cattò
Primo
;
F. Villa;S. Villa
Penultimo
;
F. Cappitelli
Ultimo
2018

Abstract

The active moieties of the anti-biofilm natural compounds zosteric (ZA) and salicylic (SA) acids have been covalently immobilized on a low density polyethylene (LDPE) surface. The grafting procedure provided new non-toxic eco-friendly materials (LDPE-CA and LDPE-SA) with anti-biofilm properties superior to the conventional biocide-based approaches and with features suitable for applications in challenging fields where the use of antimicrobial agents is limited. Microbiological investigation proved that LDPE-CA and LDPE-SA: (1) reduced Escherichia coli biofilm biomass by up to 61% with a mechanism that did not affect bacterial viability; (2) significantly affected biofilm morphology, decreasing biofilm thickness, roughness, substratum coverage, cell and matrix polysaccharide bio-volumes by >80% and increasing the surface to bio-volume ratio; (3) made the biofilm more susceptible to ampicillin and ethanol. Since no molecules were leached from the surface, they remained constantly effective and below the lethal level; therefore, the risk of inducing resistance was minimized.
English
zosteric acid; salicylic acid; anti-biofilm; biohybrid material; surface functionalization
Settore AGR/16 - Microbiologia Agraria
Settore CHIM/08 - Chimica Farmaceutica
Articolo
Esperti anonimi
Ricerca applicata
Pubblicazione scientifica
   Materiali innovativi per dispositivi medicali basati su superfici biofunzionalizzate e con proprietà Materiali innovativi per dispositivi medicali basati basati su superfici biofunzionalizzate e con propietà antivegetative
   FONDAZIONE CARIPLO
   2011-0277
4-mag-2018
Taylor & Francis
13
Epub ahead of print
Periodico con rilevanza internazionale
This work was supported by the Fondazione Cariplo [grant number 2011−0277].
https://doi.org/10.1080/08927014.2018.1462342
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Zosteric acid and salicylic acid bound to a low density polyethylene surface successfully control bacterial biofilm formation / C. Cattò, G. James, F. Villa, S. Villa, F. Cappitelli. - In: BIOFOULING. - ISSN 0892-7014. - (2018 May 04). [Epub ahead of print]
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C. Cattò, G. James, F. Villa, S. Villa, F. Cappitelli
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/573086
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