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硕士研究生柴新想的研究论文在Colloids and Surfaces B: Biointerfaces上发表!

由硕士研究生柴新想等完成的研究论文“A three-dimensional printable conductive composite dressing for accelerating wound healing under electrical stimulation”在Colloids and Surfaces B: Biointerfaces上发表!

Abstract: In this study, a bioink based on poly(vinyl alcohol) (PVA) and κ-carrageenan network was prepared using conductive polymer (PEDOT:PSS) as conducting medium, and (+)-Catechin-loaded mesoporous ZnO (CmZnO) as antibacterial and anti-inflammatory active medium. 3D conductive composite dressing was further fabricated by an extrusion 3D printing technology. Our results showed that the as-obtained composite dressing had suitable conductivity, efficient blood clotting capacity, and good adhesiveness. It also showed that the as-fabricated conductive composite had 92.9 % and 95.6 % antibacterial activity against Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli), respectively. Furthermore, the conductive dressing with an optimal electrical stimulation (ES) parameter showed in vivo blood clotting capacity, and it enhanced in vivo wound healing process in a full-thickness skin defect model than commercial dressings by upregulating the gene expression of growth

factors including CD-31 and downregulating inflammatory factor expression of IL-6.