Silver Nanowire Reinforced Conductive and Injectable Colloidal Gel for Effective Wound Healing Via Electrical Stimulation
The remarkable biocapacity, injectability, and adaptability of colloidal gels lead to their widespread use in tissue engineering as irregular defect implants. However, multifunctionalities including electroconductivity and antibacterial property are highly required for colloidal gels. In addition, t...
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Veröffentlicht in: | Advanced healthcare materials 2024-09, Vol.13 (22), p.e2301420-n/a |
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Sprache: | eng |
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Zusammenfassung: | The remarkable biocapacity, injectability, and adaptability of colloidal gels lead to their widespread use in tissue engineering as irregular defect implants. However, multifunctionalities including electroconductivity and antibacterial property are highly required for colloidal gels. In addition, the inherently weak mechanical property of physically crosslinked colloidal gels limits their application. Herein, Ag nanowires (Ag NWs)‐reinforced colloidal gels composed of biocompatible gelatin nanoparticles and polydopamine‐modified Ag NWs through the controlled electrostatic assembly, which are injectable and conductive, are presented. 1D Ag NWs can significantly improve the mechanical and electrical properties of the colloidal gel while maintaining its inherent excellent injectability. Owing to the network of Ag NWs, the storage modulus and conductivity of the optimized Ag NW colloidal gel are 7.5 and 13 times higher, respectively, than those of the colloidal gel made up of polydopamine‐modified Ag nanoparticles with equivalent Ag concentration. Further, this Ag NW colloidal gel can adapt to sharp wounds on skin, which accelerates the healing of an MRSA‐infected wound via electrical stimulation.
A series of Ag nanowire‐reinforced colloidal gels is designed to accelerate the healing of MRSA‐infected wounds via electrical stimulation. Due to the formation of Ag NW network, 1D Ag NWs significantly improve the mechanical and electrical properties of the colloidal gel while maintaining its inherent excellent injectability. |
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ISSN: | 2192-2640 2192-2659 2192-2659 |
DOI: | 10.1002/adhm.202301420 |