Papain immobilization on heterofunctional membrane bacterial cellulose as a potential strategy for the debridement of skin wounds

We combined the chemical and physical methods of papain immobilization through the aldehyde groups available on oxidized bacterial cellulose (OxBC) to provide high proteolytic activity for future applications as bioactive dressing. Bacterial cellulose (BC) was obtained by the fermentation of Komagat...

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Veröffentlicht in:International journal of biological macromolecules 2020-12, Vol.165 (Pt B), p.3065-3077
Hauptverfasser: Vasconcelos, Niédja Fittipaldi, Cunha, Arcelina Pacheco, Ricardo, Nágila Maria Pontes Silva, Freire, Rosemayre Souza, Vieira, Lídia de Araújo Pinto, Brígida, Ana Iraidy Santa, Borges, Maria de Fátima, Rosa, Morsyleide de Freitas, Vieira, Rodrigo Silveira, Andrade, Fábia Karine
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Sprache:eng
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Zusammenfassung:We combined the chemical and physical methods of papain immobilization through the aldehyde groups available on oxidized bacterial cellulose (OxBC) to provide high proteolytic activity for future applications as bioactive dressing. Bacterial cellulose (BC) was obtained by the fermentation of Komagataeibacter hansenii in Hestrin-Schramm medium for 5 days, followed by purification and oxidation using NaIO4. Surface response methodology was used to optimize papain immobilization (2%, w/v) for 24 h. The independent variables: pH (3–7) and temperature (5 to 45 °C) were investigated. The mathematically validated optimal conditions of 45 °C and pH 7 had a statistical effect on the immobilization yield (IY) of papain in OxBC (52.9%). These ideal conditions were also used for papain immobilization in BC (unoxidized). The IY of 9.1% was lower than that of OxBC. OxBC-Papain and BC-Papain were investigated using thermal analysis, confocal microscopy, and diffusion testing. The OxBC support exhibited a more interactive chemical structure than the BC support, and was capable of immobilizing papain by covalent bonds (-C-NHR) and adsorption (ion exchange), with 93.3% recovered activity, 49.4% immobilization efficiency, and better thermal stability. Papain immobilized to OxBC by adsorption displayed 53% widespread papain activity. The results indicate the potential of prolonged bioactivity in debrided chronic wounds. [Display omitted] •The optimum papain immobilization condition at 2% (w/v) was at 45 °C and pH 7.•Yield immobilization, activity recovered and immobilized were assessed by SRM.•OxBC wet membrane was a heterofunctional support, immobilizing papain chemically and physically.•The association of immobilization mechanisms was confirmed by confocal microscopy.•OxBC membrane immobilized with papain is a strategy to obtain a bioactive dressing.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2020.10.200