Skip to Main Content (Press Enter)

Logo UNIMORE
  • ×
  • Home
  • Corsi
  • Insegnamenti
  • Professioni
  • Persone
  • Pubblicazioni
  • Strutture
  • Terza Missione
  • Attività
  • Competenze

UNI-FIND
Logo UNIMORE

|

UNI-FIND

unimore.it
  • ×
  • Home
  • Corsi
  • Insegnamenti
  • Professioni
  • Persone
  • Pubblicazioni
  • Strutture
  • Terza Missione
  • Attività
  • Competenze
  1. Pubblicazioni

Flexible Printed Organic Electrochemical Transistors for the Detection of Uric Acid in Artificial Wound Exudate

Articolo
Data di Pubblicazione:
2020
Citazione:
Flexible Printed Organic Electrochemical Transistors for the Detection of Uric Acid in Artificial Wound Exudate / Galliani, M., Diacci, C., Berto, M., Sensi, M., Beni, V., Berggren, M., Borsari, M., Simon, D.T., Biscarini, F., Bortolotti, C.A.. - In: ADVANCED MATERIALS INTERFACES. - ISSN 2196-7350. - 7:23(2020), pp. 2001218-2001225. [10.1002/admi.202001218]
Abstract:
Low-cost, minimally invasive sensors able to provide real-time monitoring of wound infection can enable the optimization of healthcare resources in chronic wounds management. Here, a novel printed organic electrochemical transistors (OECT) biosensor for monitoring uric acid (UA), a bacterial infection biomarker in wounds, is demonstrated in artificial wound exudate. The sensor exploits the enzymatic conversion of UA to 5-hydroxyisourate, catalyzed by Uricase entrapped in a dual-ionic-layer hydrogel membrane casted onto the gate. The sensor response is based on the catalytic oxidation of the hydrogen peroxide, generated as part of the Uricase regeneration process, at the Pt modified gate. The proposed dual membrane avoids the occurrence of nonspecific faradic reactions as, for example, the direct oxidation of UA or other electroactive molecules that would introduce a potentially false negative response. The biosensor is robust and its response is reproducible both in phosphate buffer saline and in complex solutions mimicking the wound exudate. The sensor has a high sensitivity in the range encompassing the pathological levels of UA in wounds (<200 μm) exhibiting a limit of detection of 4.5 μm in artificial wound exudate. All these characteristics make this OECT-based biosensor attractive for wound monitoring interfaced to the patient.
Tipologia CRIS:
Articolo su rivista
Keywords:
enzymatic detection; flexible biosensors; organic electrochemical transistors; uric acid; wound care
Elenco autori:
Galliani, M.; Diacci, C.; Berto, M.; Sensi, M.; Beni, V.; Berggren, M.; Borsari, M.; Simon, D. T.; Biscarini, F.; Bortolotti, C. A.
Autori di Ateneo:
BERTO MARCELLO
BISCARINI FABIO
BORSARI Marco
BORTOLOTTI Carlo Augusto
SENSI MATTEO
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1212467
Link al Full Text:
https://iris.unimore.it//retrieve/handle/11380/1212467/741472/Galliani_2020.pdf
Pubblicato in:
ADVANCED MATERIALS INTERFACES
Journal
  • Utilizzo dei cookie

Realizzato con VIVO | Designed by Cineca | 26.7.0.0