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Effect of carbodiimide-derivatized hyaluronic acid gelatin on preventing postsurgical intra-abdominal adhesion formation and promoting healing in a rat model

机译:碳二亚胺衍生的透明质酸明胶在大鼠模型中预防手术后腹腔内粘连形成和促进愈合的作用

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Adhesions often occur after abdominal surgery. It could cause chronic pelvic pain, intestinal obstruction, and infertility. A hydrogel biomaterial, carbodiimide-derivatized hyaluronic acid gelatin (cd-HA gelatin), has been successfully used to reduce adhesion formation after flexor tendon grafting. This study investigated the efficacy of cd-HA gelatin in preventing postsurgical peritoneal adhesions in a rat model. The surgical traumas were created on the underlying muscle of the abdominal wall and the serosal layer of the cecum. The wounds were covered with or without cd-HA gelatin. Animals were euthanized at day 14 after surgery. Adhesion formation was assessed with adhesion degree and adhesion breaking strength. The healing of abdominal wall was evaluated with biomechanical testing and histological analysis. The adhesions occurred in all rats (n=12) without cd-HA gelatin treatment. The application of cd-HA gelatin significantly reduced the adhesion rate from 100% to 58%. The decrease of adhesion breaking strength also manifested that cd-HA gelatin could reduce postsurgical intra-abdominal adhesion formation. Moreover, it was found that cd-HA gelatin was a safe material and could promote tissue healing. The cd-HA gelatin hydrogel could reduce the formation of intra-abdominal adhesions without adversely effects on wound healing. (c) 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 104A: 1175-1181, 2016.
机译:腹部手术后常发生粘连。它可能导致慢性骨盆疼痛,肠梗阻和不育。水凝胶生物材料碳二亚胺衍生的透明质酸明胶(cd-HA明胶)已成功用于减少屈肌腱移植后的粘连形成。这项研究调查了cd-HA明胶在大鼠模型中预防手术后腹膜粘连的功效。手术创伤是在腹壁的下层肌肉和盲肠浆膜层上产生的。用或不用cd-HA明胶覆盖伤口。在手术后第14天对动物实施安乐死。用粘合度和粘合破坏强度评估粘合形成。通过生物力学测试和组织学分析评估腹壁的愈合。在没有cd-HA明胶处理的所有大鼠(n = 12)中发生粘连。 cd-HA明胶的应用将粘附率从100%显着降低到58%。粘连断裂强度的降低还表明cd-HA明胶可以减少术后腹腔内粘连的形成。此外,发现cd-HA明胶是安全的材料,并且可以促进组织愈合。 cd-HA明胶水凝胶可减少腹腔内粘连的形成,而对伤口愈合没有不利影响。 (c)2016 Wiley Periodicals,Inc.J Biomed Mater Res Part A:104A:1175-1181,2016年。

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