A current challenge in materials science and biotechnology is to express a specific and controlled functionality on the large interfacial area of a nanostructured material to create smart biohybrid systems for targeted applications. Here, we report on a biohybrid system featuring poly(vinyl alcohol) as the supporting synthetic polymer and bovine serum albumin as the biofunctional element. The optimal processing conditions to produce these self-standing composite membranes are determined, and the composition and distribution of the bioactive agent within the polymeric matrices are analyzed. A post-processing cross-linking using glutaraldehyde enables this functional membrane to be used as a chemical filter in aqueous environments. By demonstrating that our mats can remove large amounts of ketoprofen from water, we show that the combination of a BSA-induced biofunctionality with a nanostructured fibrous material allows for the development of an efficient biohybrid filtering device for the large and widely used family of nonsteroidal anti-inflammatory drugs (NSAIDs). The crystal structure of the complex between BSA and ketoprofen is determined for the first time and confirms the interaction between the two species.

Castagna, R., Donini, S., Colnago, P., Serafini, A., Parisini, E., Bertarelli, C. (2019). Biohybrid Electrospun Membrane for the Filtration of Ketoprofen Drug from Water. ACS OMEGA, 4(8), 13270-13278 [10.1021/acsomega.9b01442].

Biohybrid Electrospun Membrane for the Filtration of Ketoprofen Drug from Water

Parisini, Emilio;
2019

Abstract

A current challenge in materials science and biotechnology is to express a specific and controlled functionality on the large interfacial area of a nanostructured material to create smart biohybrid systems for targeted applications. Here, we report on a biohybrid system featuring poly(vinyl alcohol) as the supporting synthetic polymer and bovine serum albumin as the biofunctional element. The optimal processing conditions to produce these self-standing composite membranes are determined, and the composition and distribution of the bioactive agent within the polymeric matrices are analyzed. A post-processing cross-linking using glutaraldehyde enables this functional membrane to be used as a chemical filter in aqueous environments. By demonstrating that our mats can remove large amounts of ketoprofen from water, we show that the combination of a BSA-induced biofunctionality with a nanostructured fibrous material allows for the development of an efficient biohybrid filtering device for the large and widely used family of nonsteroidal anti-inflammatory drugs (NSAIDs). The crystal structure of the complex between BSA and ketoprofen is determined for the first time and confirms the interaction between the two species.
2019
Castagna, R., Donini, S., Colnago, P., Serafini, A., Parisini, E., Bertarelli, C. (2019). Biohybrid Electrospun Membrane for the Filtration of Ketoprofen Drug from Water. ACS OMEGA, 4(8), 13270-13278 [10.1021/acsomega.9b01442].
Castagna, Rossella; Donini, Stefano; Colnago, Paolo; Serafini, Andrea; Parisini, Emilio; Bertarelli, Chiara
File in questo prodotto:
File Dimensione Formato  
Castagna-ACSOmega-2019.pdf

accesso aperto

Tipo: Versione (PDF) editoriale
Licenza: Licenza per accesso libero gratuito
Dimensione 5.17 MB
Formato Adobe PDF
5.17 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/915506
Citazioni
  • ???jsp.display-item.citation.pmc??? 4
  • Scopus 31
  • ???jsp.display-item.citation.isi??? 31
social impact