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Efficacy of a novel synthetic material to close exposed fascial defects.

机译:新型合成材料用于闭合暴露的筋膜缺陷的功效。

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BACKGROUND: After developing a synthetic composite material (TMS-1) made from a porous polypropylene mesh (placed in apposition to fascia) coated on the "visceral" side with solid polyurethane, we compared its efficacy with that of porous polytetrafluoroethylene, polypropylene, and primary fascial closure when the repairs were left exposed to the environment. METHODS: We created 1 cm2 abdominal wall defects in each of the four abdominal quadrants of rats (n = 12). We used porous polytetrafluoroethylene, polypropylene, and TMS-1 to repair three defects; the fourth we primarily closed. The skin was left open in all cases, leaving the fascial closures exposed. A second group of rats (n = 24) had the same operation, except that peritonitis was induced using a standard fecal inoculation technique. When the rats were killed 2 weeks later, a "blinded" observer using a standard scale assessed the surface area and severity of adhesions formed. RESULTS: When compared with the other synthetic materials, the surface area of adhesions formed was significantly less after primary closure in clean conditions; in contaminated conditions, it was less than porous polytetrafluoroethylene, polypropylene, and the same as TMS-1. Furthermore, in contaminated conditions, the severity of adhesions beneath TMS-1 was the same as primary closure and significantly less than those beneath the polypropylene. CONCLUSION: The overall superiority of TMS-1 over porous polytetrafluoroethylene and polypropylene in septic conditions justifies further experiments to define its long-term efficacy in the repair of large defects.
机译:背景:在开发了一种由复合聚氨酯材料制成的合成复合材料(TMS-1),该材料是由多孔聚氨酯网(并置在筋膜上)涂在“内脏”面上并用固态聚氨酯制成的,我们将其与多孔聚四氟乙烯,聚丙烯和维修暴露于环境中时进行的主要筋膜闭合术。方法:我们在大鼠的四个腹象限(n = 12)中的每一个中都造成了1 cm2的腹壁缺损。我们使用了多孔聚四氟乙烯,聚丙烯和TMS-1来修复三个缺陷:第四,我们主要关闭。在所有情况下,皮肤都保持开放状态,使筋膜闭合处暴露。除了使用标准的粪便接种技术诱发腹膜炎外,第二组大鼠(n = 24)具有相同的操作。两周后杀死大鼠时,使用标准量表的“盲人”观察者评估了表面积和形成的粘连的严重性。结果:与其他合成材料相比,在清洁条件下初次封闭后形成的粘着表面积明显减少;在受污染的条件下,它小于多孔聚四氟乙烯,聚丙烯,并且与TMS-1相同。此外,在受污染的条件下,TMS-1下方的粘附严重性与初次封闭相同,并且显着低于聚丙烯下方。结论:在脓毒症条件下,TMS-1在多孔聚四氟乙烯和聚丙烯方面的整体优势证明了进一步的实验来确定其长期修复大缺陷的有效性。

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