渗透
组织工程
化学
基质(化学分析)
材料科学
生物医学工程
化学工程
复合材料
医学
膜
工程类
生物化学
作者
Xiaohua Wu,Wenxin Xu,Xuantao Huang,Nianhua Dan,Yining Chen,Zhengjun Li,Yunbing Wang
标识
DOI:10.1021/acs.biomac.4c01847
摘要
Emergency repair of complicated full-thickness abdominal wall defects remains one of the most common and challenging surgical emergencies globally. Here, an integrated polydopamine permeating-cross-linking strategy was innovatively proposed to convert porcine acellular dermal matrix (pADM) into versatile, degradation-resistant biopatches (PDA-pADM) for efficiently repairing full-thickness abdominal wall defects. The strategy significantly addresses the challenge that natural-property improvement and biocompatibility of biomaterials are difficult to balance. Molecularly, dopamine (DA) molecules could fully permeate into the collagen fibers of the acellular dermal matrix and then automatically trigger the interfacial in situ polymerization of dopamine monomers among collagen fibers to achieve the efficient cross-linking of pADM. Surprisingly, the enzymatic durability of the biopatch shows significant improvements, extending the original duration from 3 to 20 d. Comprehensive in vivo experiments have shown that PDA-pADM can effectively promote angiogenesis and inhibit inflammatory response, so as to achieve regeneration and repair of abdominal wall damage.
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