TY - JOUR
T1 - A Supramolecular Bifunctional Hydrogel with Zero-Order Release Kinetics to Resist Bacterial Infection and Foreign Body Response of Implants
AU - Chen, Sijia
AU - Li, Lin
AU - Gu, Yunqing
AU - Luo, Fang
AU - Chen, Kunyu
AU - Lou, Yan
AU - Huang, Quan
AU - Hu, Jingjing
AU - Cheng, Yiyun
N1 - Publisher Copyright:
© 2025 Chinese Chemical Society. All rights reserved.
PY - 2025/4
Y1 - 2025/4
N2 - Supramolecular hydrogels demonstrate considerable potential in drug delivery owing to their distinctive features, including bio-adhesiveness, self-healing behaviors, biodegradability, and biocompatibility. Nevertheless, the fabrication of supramolecular hydrogels utilizing exclusively clinically approved drugs remain challenging, typically necessitating chemical modifications of the drugs to facilitate the gelation process. In this study, we report a novel type of supramolecular hydrogel through the direct assembly of two clinically approved drugs, tobramycin and mycophenolic acid, via combined electrostatic and hydrophobic interactions. The hydrogel shows adjustable bio-adhesiveness, zero-order release kinetics, good biocompatibility, and maintained antibacterial and immunosuppressive activities. It efficiently inhibits bacterial infections and foreign body responses, and accelerates tissue healing in several subcutaneous/intraosseous implantation models accompanied by bacteria infections. This work provides a facile and promising strategy to fabricate supramolecular hydrogels with stable drug release kinetics using clinically approved drugs. [Figure presented].
AB - Supramolecular hydrogels demonstrate considerable potential in drug delivery owing to their distinctive features, including bio-adhesiveness, self-healing behaviors, biodegradability, and biocompatibility. Nevertheless, the fabrication of supramolecular hydrogels utilizing exclusively clinically approved drugs remain challenging, typically necessitating chemical modifications of the drugs to facilitate the gelation process. In this study, we report a novel type of supramolecular hydrogel through the direct assembly of two clinically approved drugs, tobramycin and mycophenolic acid, via combined electrostatic and hydrophobic interactions. The hydrogel shows adjustable bio-adhesiveness, zero-order release kinetics, good biocompatibility, and maintained antibacterial and immunosuppressive activities. It efficiently inhibits bacterial infections and foreign body responses, and accelerates tissue healing in several subcutaneous/intraosseous implantation models accompanied by bacteria infections. This work provides a facile and promising strategy to fabricate supramolecular hydrogels with stable drug release kinetics using clinically approved drugs. [Figure presented].
KW - antibacterial hydrogel
KW - drug delivery
KW - foreign body response
KW - supramolecular hydrogel
KW - zero-order release
UR - https://www.scopus.com/pages/publications/105001980035
U2 - 10.31635/ccschem.024.202404276
DO - 10.31635/ccschem.024.202404276
M3 - 文章
AN - SCOPUS:105001980035
SN - 2096-5745
VL - 7
SP - 1027
EP - 1042
JO - CCS Chemistry
JF - CCS Chemistry
IS - 4
ER -