TY - JOUR
T1 - Theranostic Infection-Responsive Coating to In Situ Detect and Prevent Urinary Catheter Blockage
AU - Zhou, Jin
AU - Hou, Sen
AU - Li, Linhao
AU - Yao, Danyu
AU - Liu, Yuanyuan
AU - Jenkins, A. Tobias A.
AU - Fan, Yubo
N1 - Publisher Copyright:
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
PY - 2018/12/21
Y1 - 2018/12/21
N2 - Biofilm formation induced by urease-producing species can cause the increase of urine pH, and eventually lead to the blockage of catheters. In this study, a novel theranostic multilayer coating which combines both early visual warning of catheter blockage and antibacterial efficacy is described. The proposed coating comprised multilayered polymeric architecture using electrostatic self-assembly (ESA) technique. In such a system, an inner layer of hydrogel PAA (poly (acrylic acid)) and middle layer of CS (chitosan) are employed to encapsulate an antibiotic delivery system that has sensitive colorimetric transition response upon pH elevation. The two layers are sealed and capped by a pH-response layer of EUDRAGITS 100. The proposed coating sensor hydrogel exhibits chromatic color transitions (blue–purple–red) upon bacterial infection and provides an indication for both initial bacterial infection and subsequent blockage. Meanwhile, encapsulation of antimicrobials increases the amount of antibiotic resident in the vicinity of bacteria in residual urine solution and thus inhibiting bacterial growth.
AB - Biofilm formation induced by urease-producing species can cause the increase of urine pH, and eventually lead to the blockage of catheters. In this study, a novel theranostic multilayer coating which combines both early visual warning of catheter blockage and antibacterial efficacy is described. The proposed coating comprised multilayered polymeric architecture using electrostatic self-assembly (ESA) technique. In such a system, an inner layer of hydrogel PAA (poly (acrylic acid)) and middle layer of CS (chitosan) are employed to encapsulate an antibiotic delivery system that has sensitive colorimetric transition response upon pH elevation. The two layers are sealed and capped by a pH-response layer of EUDRAGITS 100. The proposed coating sensor hydrogel exhibits chromatic color transitions (blue–purple–red) upon bacterial infection and provides an indication for both initial bacterial infection and subsequent blockage. Meanwhile, encapsulation of antimicrobials increases the amount of antibiotic resident in the vicinity of bacteria in residual urine solution and thus inhibiting bacterial growth.
KW - antibacterial
KW - catheter blockage
KW - catheter-associated urinary tract infection (CAUTI)
KW - chromatic color sensing
KW - polydiacetylene (PDA) vesicles
UR - https://www.scopus.com/pages/publications/85055264687
U2 - 10.1002/admi.201801242
DO - 10.1002/admi.201801242
M3 - 文章
AN - SCOPUS:85055264687
SN - 2196-7350
VL - 5
JO - Advanced Materials Interfaces
JF - Advanced Materials Interfaces
IS - 24
M1 - 1801242
ER -