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Fetal abdominal wall repair with a collagen biomatrix in an experimental sheep model for gastroschisis

机译:在实验性胃痉挛绵羊模型中使用胶原蛋白生物基质修复胎儿腹壁

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摘要

We evaluated the regeneration of the abdominal wall using a dual-layer collagen biomatrix, and the protective effect on the bowel of fetal abdominal wall repair in a fetal sheep model for gastroschisis. In 14 fetal lambs, the abdominal wall was opened at 79 days' gestation, creating a gastroschisis. In group 1, the gastroschisis was left uncovered. In group 2, the bowel was repositioned, and the defect was closed by suturing a collagen biomatrix into the abdominal wall. A cesarean section was performed at 140 days' gestation, and macroscopic and histological evaluation was performed. In the five lambs with a gastroschisis, the eviscerated part of the bowel was coalescent, showed extensive adhesions, and was covered by fibrous peel. In group 2, the abdominal wall had closed, with a firm connection to the native abdominal wall. The biomatrix was largely degraded and replaced by connective tissue with collagen and fibroblasts, neovascularisation, and scattered muscle cells. Minor or no adhesions of the bowel and no peel formation were observed. Abdominal wall tissue replacement using a collagen biomatrix was feasible in fetal lambs, resulting in a closed abdominal wall at birth. Immediate closure of the gastroschisis strongly diminished or prevented bowel adhesions and peel formation.
机译:我们评估了使用双层胶原蛋白生物基质对腹壁的再生,以及在胃裂殖症的胎羊模型中对胎腹壁修复肠的保护作用。妊娠79天时,在14只胎羊中打开腹壁,造成胃痉挛。在第1组中,胃s裂未发现。在第2组中,将肠重新定位,并通过将胶原生物基质缝合到腹壁来闭合缺损。妊娠140天进行剖宫产,并进行宏观和组织学评估。在五只有胃裂症的小羊中,肠的内脏部分聚结,表现出广泛的粘连,并被纤维皮覆盖。在第2组中,腹壁已关闭,与原始腹壁的连接牢固。生物基质被大大降解,并被结缔组织替换为胶原蛋白和成纤维细胞,新血管形成和分散的肌肉细胞。观察到肠的粘连很少或没有粘连,并且没有形成皮。在胎儿羔羊中使用胶原蛋白生物基质进行腹壁组织置换是可行的,从而在出生时导致腹壁闭合。立即关闭胃痉挛可大大减少或防止肠粘连和皮形成。

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