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用于多功能伤口敷料应用的止血性高岭土-聚氨酯泡沫复合材料。

Hemostatic kaolin-polyurethane foam composites for multifunctional wound dressing applications.

机构信息

Chemistry Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, D.C. 20375, USA.

Chemistry Division, Naval Research Laboratory, 4555 Overlook Avenue SW, Washington, D.C. 20375, USA.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Oct 1;79:702-709. doi: 10.1016/j.msec.2017.05.084. Epub 2017 May 14.

Abstract

There are numerous challenges associated with the acute care of traumatic limb injuries in forward military settings. A lack of immediate medical facilities necessitates that the wound dressing perform multiple tasks including exudate control, infection prevention, and physical protection of the wound for extended periods of time. Here, kaolin was incorporated into recently developed robust polyurethane (PU) hydrogel foams at 1-10wt% in an effort to impart hemostatic character. ATR-IR and gel fraction analysis demonstrated that the facile, one-pot synthesis of the PU hydrogel was unaffected by kaolin loading, as well as the use of a non-toxic catalyst, which significantly improved cytocompatibility of the materials. Kaolin was generally well dispersed throughout the PU matrix, though higher loadings exhibited minor evidence of aggregation. Kaolin-PU composites exhibited burst release of ciprofloxacin over 2h, the initial release rates of which increased with kaolin loading. Kaolin loading imparted excellent hemostatic character to the PU foams at relatively low loading levels (5wt%). This work demonstrates the simple and inexpensive synthesis of robust, hemostatic, and absorptive kaolin-PU foams that have promising potential as multifunctional wound dressing materials.

摘要

在前线军事环境中,创伤性肢体损伤的急性护理存在诸多挑战。由于缺乏即时医疗设施,伤口敷料需要执行多项任务,包括控制渗出物、预防感染,并在较长时间内对伤口提供物理保护。在这里,高岭土以 1-10wt%的比例被掺入到最近开发的强大的聚氨酯(PU)水凝胶泡沫中,以赋予其止血特性。ATR-IR 和凝胶分数分析表明,高岭土负载以及使用无毒催化剂对 PU 水凝胶的简便一锅合成没有影响,这极大地提高了材料的细胞相容性。高岭土通常在整个 PU 基质中均匀分散,但较高的负载量表现出轻微的聚集迹象。高岭土-PU 复合材料在 2 小时内迅速释放环丙沙星,其初始释放速率随高岭土负载量的增加而增加。高岭土的负载量在相对较低的负载水平(5wt%)下赋予了 PU 泡沫优异的止血特性。这项工作展示了简单且廉价的合成方法,得到了强大的、具有止血和吸收性能的高岭土-PU 泡沫,具有作为多功能伤口敷料材料的巨大潜力。

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