TY - JOUR
T1 - Gallium(III)-Mediated Dual-Cross-Linked Alginate Hydrogels with Antibacterial Properties for Promoting Infected Wound Healing
AU - Qin, Jiajun
AU - Li, Ming
AU - Yuan, Ming
AU - Shi, Xinglei
AU - Song, Jiliang
AU - He, Yiyan
AU - Mao, Hongli
AU - Kong, Deling
AU - Gu, Zhongwei
N1 - Publisher Copyright:
© 2022 American Chemical Society.
PY - 2022/5/18
Y1 - 2022/5/18
N2 - The metal gallium has enormous promise in fighting infections by disrupting bacterial iron metabolism via a “Trojan horse” trick. It is well worth trying to study the potential of gallium-mediated hydrogel for treating infected wounds. Herein, on the basis of a conventional gelation strategy of sodium alginate combined with metal ions, Ga3+ has been innovatively given a dual role in a dual-cross-linked hydrogel. It acts nor only as a cross-linking agent to form a hydrogel material but also as a therapeutic agent to slow-release and continuously treat infected wounds. Further photo-cross-linking is introduced to improve the mechanical properties of the hydrogel. Thus, a new gallium ionic- and photo-dual-cross-linked alginate hydrogel, with broad-spectrum antimicrobial activity and strengthened mechanical performance, for the treatment of infected wounds is reported. The morphology, degradability, swelling behavior, rheological properties, and gallium release kinetics together indicated the homogeneous and the strengthened mechanical performance of this hydrogel but did not impede the release of gallium ions. Interestingly, in vitro and in vivo results also demonstrated its favorable biocompatibility, reduced bacterial growth, and accelerated infected wound healing, making the gallium-incorporated hydrogel an ideal antimicrobial dressing.
AB - The metal gallium has enormous promise in fighting infections by disrupting bacterial iron metabolism via a “Trojan horse” trick. It is well worth trying to study the potential of gallium-mediated hydrogel for treating infected wounds. Herein, on the basis of a conventional gelation strategy of sodium alginate combined with metal ions, Ga3+ has been innovatively given a dual role in a dual-cross-linked hydrogel. It acts nor only as a cross-linking agent to form a hydrogel material but also as a therapeutic agent to slow-release and continuously treat infected wounds. Further photo-cross-linking is introduced to improve the mechanical properties of the hydrogel. Thus, a new gallium ionic- and photo-dual-cross-linked alginate hydrogel, with broad-spectrum antimicrobial activity and strengthened mechanical performance, for the treatment of infected wounds is reported. The morphology, degradability, swelling behavior, rheological properties, and gallium release kinetics together indicated the homogeneous and the strengthened mechanical performance of this hydrogel but did not impede the release of gallium ions. Interestingly, in vitro and in vivo results also demonstrated its favorable biocompatibility, reduced bacterial growth, and accelerated infected wound healing, making the gallium-incorporated hydrogel an ideal antimicrobial dressing.
KW - alginate
KW - antibacterial
KW - gallium
KW - homogeneity
KW - hydrogels
UR - http://www.scopus.com/inward/record.url?scp=85130646460&partnerID=8YFLogxK
U2 - 10.1021/acsami.2c02497
DO - 10.1021/acsami.2c02497
M3 - 文章
C2 - 35533377
AN - SCOPUS:85130646460
SN - 1944-8244
VL - 14
SP - 22426
EP - 22442
JO - ACS Applied Materials and Interfaces
JF - ACS Applied Materials and Interfaces
IS - 19
ER -