止血
丝素
止血剂
胶粘剂
体内
生物相容性材料
丝绸
生物医学工程
伤口愈合
止血剂
材料科学
血小板
化学
纳米技术
外科
图层(电子)
医学
复合材料
免疫学
生物
生物技术
作者
Jaeyun Lee,Eunjin Kim,Ki‐Joo Kim,Jong Won Rhie,Kye Il Joo,Hyung Joon
出处
期刊:Small
[Wiley]
日期:2024-01-07
被引量:5
标识
DOI:10.1002/smll.202308833
摘要
Abstract Topical hemostatic agents are preferred for application to sensitive bleeding sites because of their immediate locoregional effects with less tissue damage. However, the majority of commercial hemostatic agents fail to provide stable tissue adhesion to bleeding wounds or act as physical barriers against contaminants. Hence, it has become necessary to investigate biologically favorable materials that can be applied and left within the body post‐surgery. In this study, a dual‐sided nanofibrous dressing for topical hemostasis is electrospun using a combination of two protein materials: bioengineered mussel adhesive protein (MAP) and silk fibroin (SF). The wound‐adhesive inner layer is fabricated using dihydroxyphenylalanine (DOPA)‐containing MAP, which promotes blood clotting by aggregation of hemocytes and activation of platelets. The anti‐adhesive outer layer is composed of alcohol‐treated hydrophobic SF, which has excellent spinnability and mechanical strength for fabrication. Because both proteins are fully biodegradable in vivo and biocompatible, the dressing would be suitable to be left in the body. Through in vivo evaluation using a rat liver damage model, significantly reduced clotting time and blood loss are confirmed, successfully demonstrating that the proposed dual‐sided nanofibrous dressing has the right properties and characteristics as a topical hemostatic agent having dual functionality of hemostasis and physical protection.
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