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Polysaccharide-based films for the prevention of unwanted postoperative adhesions at biological interfaces

机译:基于多糖的薄膜,用于预防生物界面处的不需要的术后粘连

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摘要

Postoperative adhesions protect, repair, and supply nutrients to injured tissues; however, such adhesions often remain permanent and complicate otherwise successful surgeries by tethering tissues together that are normally separated. An ideal adhesion barrier should not only effectively prevent unwanted adhesions but should be easy to use, however, those that are currently available have inconsistent efficacy and are difficult to handle or to apply. A robust hydrogel film composed of alginate and a photo-crosslinkable hyaluronic acid (HA) derivative (glycidyl methacrylate functionalized hyaluronic acid (GMHA)) represents a solution to this problem. A sacrificial porogen (urea) was used in the film manufacture process to impart macropores that yield films that are more malleable and tougher than equivalent films produced without the sacrificial porogen. The robust mechanical behavior of these templated alginate/GMHA films directly facilitated handling characteristics of the barrier film. In a rat peritoneal abrasion model for adhesion formation, the polysaccharide films successfully prevented adhesions with statistical equivalence to the leading anti-adhesion technology on the market, Seprafilm (R).
机译:术后粘连保护,修复和供应营养物,对受伤组织;然而,这种粘连通常保持永久性并且通过通常分离的组织将组织一起进行另外成功的手术。理想的粘附屏障不仅应有效地防止不需要的粘连,而是应该易于使用,但是当前可用的那些有效性不一致,并且难以处理或涂抹。由藻酸盐和光交联的透明质酸(HA)衍生物(甲基丙烯酸缩水甘油酯官能化透明质酸(GMHA)组成的鲁棒水凝胶膜代表了该问题的溶液。在薄膜制造方法中使用牺牲致孔剂(尿素),以赋予宏孔,其产生比没有牺牲孔胶产生的等同膜更具薄膜和更难度的薄膜。这些模板藻酸盐/ GMHA薄膜的强大力学行为直接促进了阻挡膜的处理特性。在粘附形成的大鼠腹膜磨损模型中,多糖膜成功地防止了与统计当量的粘连,以对市场上的领先的防粘连技术,Seprafilm(R)。

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