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Staphylococcal biofilm formation as affected by type acidulant
Authors:Antonia Nostro  Luigina Cellini  Giovanna Ginestra  Manuela D'Arrigo  Mara di Giulio  Andreana Marino  Anna Rita Blanco  Angelo Favaloro  Giuseppe Bisignano
Affiliation:1. Dipartimento di Scienze del Farmaco e dei Prodotti per la Salute, Università di Messina, , Messina, Italy;2. Dipartimento di Farmacia, Università ‘G.d'Annunzio’, , Chieti ‐ Pescara, Italy;3. Research & Development S.I.F.I. SpA, , Catania, Italy;4. Dipartimento di Scienze Biomediche e delle Immagini Morfologiche e Funzionali, Università di Messina, , Messina, Italy;5. IRCCS Centro Neurolesi ‘Bonino‐Pulejo’, , Messina, Italy
Abstract:
Staphylococcal growth and biofilm formation in culture medium where pH was lowered with weak organic (acetic and lactic) or strong inorganic (hydrochloric) acids were studied. The effects were evaluated by biomass measurements, cell‐surface hydrophobicity, scanning electron microscopy (SEM), and confocal laser scanning microscopy (CLSM). The results demonstrated that the inhibition was related to type of acidulant and pH value. At pH 5.0, the antibacterial effect was more pronounced in the presence of acetic acid (58–60% growth reduction) compared with that in the presence of lactic (7–16% growth reduction) and hydrochloric acids (23–24% reduction). The biofilm biomass of Staphylococcus aureus and Staphylococcus epidermidis was reduced by 92, 85, 63, and 93, 87, 81% after exposition to acetic, lactic, and hydrochloric acids, respectively. Increasing the pH from 5.0 to 6.0 resulted in a noticeable reduction in the effectiveness of acids. A minor cells hydrophobic character was also documented. The SEM and CLSM revealed a poorly structured and thinner biofilm compared with the dense and multilayered control. Acidic environment could have important implications for food‐processing system to prevent bacterial colonization and control biofilm formation. The findings of this study lead to consider the rational use of the type of acid to achieve acidic environments.
Keywords:Biofilm     Staphylococcus aureus        Staphylococcus epidermidis     acidulant     pH   
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