Park Ji-Ung, Jeong Seol-Ha, Song Eun-Ho, Song Juha, Kim Hyoun-Ee, Kim Sukwha
1 Department of Plastic and Reconstructive Surgery, 26725 Seoul National University , Boramae Hospital, Seoul, Republic of Korea.
2 Department of Materials Science and Engineering, 26725 Seoul National University , Seoul, Republic of Korea.
J Biomater Appl. 2018 Mar;32(8):1011-1023. doi: 10.1177/0885328217751246. Epub 2018 Jan 22.
In this study, we evaluated the surface characterization of a novel chitosan-silica hybridized membrane and highlighted the substantial role of silica in the wound environment. The chemical coupling of chitosan and silica resulted in a more condensed network compared with pure chitosan, which was eventually able to stably maintain its framework, particularly in the wet state. In addition, we closely observed the wound-healing process along with the surface interaction between chitosan-silica and the wound site using large-surface-area wounds in a porcine model. Our evidence indicates that chitosan-silica exerts a synergetic effect of both materials to promote a remarkable wound-healing process. In particular, the silica in chitosan-silica accelerated wound closure including wound contraction, and re-epithelialization via enhancement of cell recruitment, epidermal maturity, neovascularization, and granulation tissue formation compared with pure chitosan and other commercial dressing materials. This advanced wound dressing material may lead to effective treatment for problematic cutaneous wounds and can be further applied for human skin regeneration.
在本研究中,我们评估了一种新型壳聚糖-二氧化硅杂化膜的表面特性,并强调了二氧化硅在伤口环境中的重要作用。与纯壳聚糖相比,壳聚糖与二氧化硅的化学偶联导致形成了更致密的网络结构,最终能够稳定地维持其框架,尤其是在湿态下。此外,我们利用猪模型中的大面积伤口,密切观察了伤口愈合过程以及壳聚糖-二氧化硅与伤口部位之间的表面相互作用。我们的证据表明,壳聚糖-二氧化硅发挥了两种材料的协同作用,以促进显著的伤口愈合过程。特别是,与纯壳聚糖和其他商用敷料材料相比,壳聚糖-二氧化硅中的二氧化硅通过增强细胞募集、表皮成熟、新血管形成和肉芽组织形成,加速了伤口闭合,包括伤口收缩和再上皮化。这种先进的伤口敷料材料可能会有效治疗有问题的皮肤伤口,并可进一步应用于人类皮肤再生。