生物活性电纺聚乳酸/绿原酸修饰壳聚糖双层海绵用于急性感染、伤口愈合和快速凝血。

IF 5.8 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Huiling Zhong, Zhen Zhang, Mohong Wang, Yifei Fang, Ke Liu, Junqiang Yin, Jun Wu, Jianhang Du
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引用次数: 0

摘要

急性严重创伤往往伴随着快速失血和高感染风险。基于这些考虑,本研究成功构建了一种具有快速止血和预防感染能力的多功能双层生物活性海绵 PCCT。其外表面为电纺聚乳酸(PLA)纳米纤维薄膜层,确保了其高透气性,并有效防止外部细菌入侵。体外实验结果表明,该薄膜能有效抵御典型革兰氏阴性菌(大肠杆菌)和革兰氏阳性菌(金黄色葡萄球菌)的入侵。海绵内层由绿原酸(CGA)与壳聚糖(CS)接枝形成,并添加了氨甲环酸(TA)。海绵上丰富的阳离子基团与带负电荷的红细胞相互作用,在氨甲环酸的作用下实现了伤口处的快速止血。此外,CS-CGA 海绵支架的高孔隙率和生物活性赋予了水凝胶良好的吸水性、抗菌性和抗炎活性,有效加速了大鼠急性感染伤口的愈合,并表现出良好的生物安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bioactive electrospun polylactic acid/chlorogenic acid-modified chitosan bilayer sponge for acute infection wound healing and rapid coagulation.

Acute severe trauma is often associated with rapid blood loss and a high risk of infection. Based on these concerns, this study successfully constructed a multifunctional dual-layer bioactive sponge PCCT with rapid hemostatic and infection-preventing ability. Its external surface is an electrospun poly(lactic acid) (PLA) nanofiber thin film layer, which ensures its high air permeability and effectively protects against external bacterial invasion. In vitro results showed that the film is effectively resistant to invasion by typical Gram-negative (E. coli) and Gram-positive (S. aureus) bacteria. The inner sponge layer was formed by chlorogenic acid (CGA) grafted with chitosan (CS) and loaded with tranexamic acid (TA). The abundant cationic groups on the sponge interacted with negatively charged erythrocytes and achieved rapid hemostasis at the wound site under the action of TA. In addition, the high porosity and bioactivity of the CS-CGA sponge scaffold endowed the hydrogel with good water absorption, antibacterial properties and anti-inflammatory activity, which effectively accelerated the healing of acute infected wounds in rats and demonstrated favorable biosafety.

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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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