伤口愈合
普鲁兰
自愈水凝胶
疤痕
细胞外基质
伤口闭合
生物医学工程
肉芽组织
伤口敷料
医学
化学
外科
材料科学
多糖
复合材料
高分子化学
生物化学
作者
Kellen Chen,Dharshan Sivaraj,Michael F. Davitt,Melissa C. Leeolou,Dominic Henn,Sydney R. Steele,Savana L. Huskins,Artem A. Trotsyuk,Hudson C. Kussie,Autumn H. Greco,Jagannath Padmanabhan,David Perrault,Alsu I. Zamaleeva,Michael T. Longaker,Geoffrey C. Gurtner
摘要
Biological scaffolds such as hydrogels provide an ideal, physio-mimetic of native extracellular matrix (ECM) that can improve wound healing outcomes after cutaneous injury. While most studies have focused on the benefits of hydrogels in accelerating wound healing, there are minimal data directly comparing different hydrogel material compositions. In this study, we utilized a splinted excisional wound model that recapitulates human-like wound healing in mice and treated wounds with three different collagen hydrogel dressings. We assessed the feasibility of applying each dressing and performed histologic and histopathologic analysis on the explanted scar tissues to assess variations in collagen architecture and alignment, as well as the tissue response. Our data indicate that the material properties of hydrogel dressings can significantly influence healing time, cellular response, and resulting architecture of healed scars. Specifically, our pullulan-collagen hydrogel dressing accelerated wound closure and promoted healed tissue with less dense, more randomly aligned, and shorter collagen fibres. Further understanding of how hydrogel properties affect the healing and resulting scar architecture of wounds may lead to novel insights and further optimization of the material properties of wound dressings.
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