Department of Polymer Science, The University of Akron, Akron, OH, 44325, USA.
Cook Biotech Incorporated, West Lafayette, IN, 47906, USA.
Biomaterials. 2019 Nov;221:119399. doi: 10.1016/j.biomaterials.2019.119399. Epub 2019 Aug 7.
Hernia repair outcomes have improved with more robust material options for surgeons and optimized surgical techniques. However, ventral hernia repairs remain challenging with an inherent risk of post-surgical adhesions in the peritoneal space which can occur regardless of interventional material or its surgical placement. Herein, amino acid-based poly(ester urea)s (PEUs) with varied amount of an allyl ether side chains were modified post polymerization modification with the zwitterionic sulfnate group (3-((3-((3-mercaptopropanoyl)oxy)propyl) dimethylammonio)propane-1-sulfonate) to promote anti-adhesive properties. These alloc-PEUs were processed using roll-to-roll fabrication methods to afford films that were amenable to surface functionalization via a zwitterion-thiol. Functional group availability on the surface was confirmed via fluorescence microscopy, x-ray photoelectron spectroscopy (XPS), and quartz crystal microbalance (QCM) measurements. Zwitterionic treated PEUs exhibited reduced fibrinogen adsorption in vitro when compared to unfunctionalized control polymer. A rat intrabdominal cecal abrasion adhesion model was used to assess the extent and tenacity of adhesion formation in the presence of the PEUs. The 10% alloc-PEU zwitterion functionalized material was found to reduce the extent and tenacity of adhesions when compared to adhesion controls and the unfunctionalized PEU controls.
随着外科医生更强大的材料选择和优化的手术技术,疝修补术的效果已经得到改善。然而,腹疝修补仍然具有挑战性,腹膜腔内存在术后粘连的固有风险,无论干预材料及其手术放置如何,这种粘连都可能发生。在此,通过后聚合修饰将具有不同量烯丙基醚侧链的氨基酸基聚酯脲(PEU)用两性离子磺酸盐基团(3-((3-((3-巯基丙酰基)氧基)丙基)二甲氨基)丙烷-1-磺酸盐)进行修饰,以促进抗粘连性能。这些分配型 PEU 使用卷对卷制造方法进行加工,以获得可通过两性离子-硫醇进行表面功能化的薄膜。通过荧光显微镜、X 射线光电子能谱(XPS)和石英晶体微天平(QCM)测量确认了表面上功能基团的可用性。与未功能化的对照聚合物相比,在体外,带正电荷的 PEU 表现出减少的纤维蛋白原吸附。使用大鼠腹腔盲肠磨损粘连模型评估了在存在 PEU 时粘连形成的程度和坚固性。与粘连对照和未功能化的 PEU 对照相比,10%分配型 PEU 两性离子功能化材料被发现减少了粘连的程度和坚固性。