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增强丝纳米纤维气凝胶的比表面积和机械性能,用于潜在的止血应用。

Enhanced specific surface area and mechanical property of silk nanofibers aerogel for potential hemostasis applications.

机构信息

Industrial College of Carbon Fiber and New Materials, School of Chemical Engineering and Materials, Changzhou Institute of Technology, Changzhou 213000, China; China National Textile and Apparel Council Key Laboratory for Silk Functional Materials and Technology, Soochow University, Suzhou 215123, China.

Industrial College of Carbon Fiber and New Materials, School of Chemical Engineering and Materials, Changzhou Institute of Technology, Changzhou 213000, China.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 3):134345. doi: 10.1016/j.ijbiomac.2024.134345. Epub 2024 Aug 3.

Abstract

Biopolymer aerogel is a new type of material with potential applications in the biomedical field. Silk fibroin is of particular interest as a raw material with good biocompatibility and degradable. However, the low mechanical strength and small specific surface area of silk fibroin aerogels limit its further development. Herein, a fast water absorption, highly specific surface area and mechanically strong of aerogels were prepared using low crystal silk fibroin nanofibers (SNF), sol-gel process, solvent exchange and supercritical carbon dioxide (CO) drying method. The resulting Aero-Sc displayed highly specific surface area (251 m/g), porosity (97.6 %) and water absorption capacity (1200 %). Furthermore, with rapid water absorption and stronger erythrocyte adhesion, the Aero-Sc showed highly effective hemostasis in vitro. In vivo, animal experiments on rat liver hemorrhage model confirmed that SNF aerogels have a less blood loss (312 ± 29 mg) and faster hemostatic time (92 ± 13 s) than commercially gelatin sponge (p < 0.05). The unique properties of silk fibroin nanofibers aerogel developed in this study has great potential to be a safe and effective hemostatic medical device.

摘要

生物聚合物气凝胶是一种具有潜在应用于生物医学领域的新型材料。丝素蛋白作为一种具有良好生物相容性和可降解性的原料备受关注。然而,丝素蛋白气凝胶的机械强度低和比表面积小限制了其进一步发展。在此,使用低结晶丝素蛋白纳米纤维(SNF)、溶胶-凝胶法、溶剂交换和超临界二氧化碳(CO)干燥法制备了一种具有快速吸水性、高比表面积和强机械性能的气凝胶。所得的 Aero-Sc 显示出高比表面积(251 m/g)、孔隙率(97.6%)和吸水性(1200%)。此外,由于具有快速吸水性和更强的红细胞粘附性,Aero-Sc 在体外表现出高度有效的止血作用。在体内,大鼠肝脏出血模型的动物实验证实,SNF 气凝胶的失血量(312 ± 29 mg)比商业明胶海绵(p < 0.05)更少,止血时间(92 ± 13 s)更快。本研究开发的丝素蛋白纳米纤维气凝胶具有独特的性能,有望成为一种安全有效的止血医疗器械。

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