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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Critical-sized full-thickness skin defect regeneration using ovine small intestinal submucosa with or without mesenchymal stem cells in rat model
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Critical-sized full-thickness skin defect regeneration using ovine small intestinal submucosa with or without mesenchymal stem cells in rat model

机译:临界大小的全厚皮皮肤缺损再生使用绵羊小肠粘膜下颌粘膜或没有间充质干细胞在大鼠模型中

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摘要

Decellularized extracellular matrices (ECM) based materials are routinely used for a variety of clinical applications. Hereof, in vivo application of decellularized ovine small intestinal submucosal (DOSIS) layer as, a scaffold is yet to be investigated. In this study, the effectiveness of the DOSIS scaffold, with or without rat bone marrow mesenchymal stem cells (BM-MSCs), in full-thickness wound healing of critical-sized defect was experimentally studied in a rat model. The experimental groups included; group I (control), group II (DOSIS), and group III (BM-MSCs-seeded DOSIS). Wound healing of all groups was examined and compared clinically and histopathologically on days 7, 14, and 21 postoperation. Our results represented BM-MSCs-seeded DOSIS accelerated wound contraction and healing compared to both the DOSIS alone and control groups. Epithelization was close to completion 21 days postoperation in DOSIS alone. In OSIS with BM-MSCs group, epithelization was faster and had fully taken place at the subsequent time points. DOSIS layer, as cell-free form with low substantially DNA content, accelerated healing of rat skin wound defects that was created at critical-size and full-thickness. In conclusion, decellularized OSIS alone and in combination with BM-MSCs has the potential to be used as a wound graft material in skin regenerative medicine. (C) 2017 Wiley Periodicals, Inc.
机译:基于渐变的细胞外基质(ECM)的材料是常规用于各种临床应用的。这里,在体内施加脱细胞绵羊小肠粘膜下颌骨(Dosis)层作为,尚未研究支架。在这项研究中,在大鼠模型中实验研究了在大鼠突出缺陷的全厚伤口愈合中,具有或不具有大鼠骨髓间充质干细胞(BM-MSCs)的患者骨髓间充质干细胞(BM-MSC)的有效性。包括实验组; I族(对照),II族(Dosis)和III组(BM-MSCs种植体)。检查所有组的伤口愈合,并在第7天,14天和21天临床上和组织病理学上进行比较。我们的结果代表了BM-MSCs播种的Dosis加速伤口收缩和愈合,与单独的单独和对照组相比。上皮化接近完成21天,单独术后21天。在癌症中,具有BM-MSCs组,上皮化速度更快,并在随后的时间点完全发生。 Dooss层,作为无细胞形式,具有低基本DNA含量的细胞形式,大鼠皮肤伤口缺陷的加速愈合,缺陷在临界尺寸和全厚度下产生。总之,单独的脱细胞症和与BM-MSC的组合具有潜力用作皮肤再生医学中的卷绕移植物。 (c)2017 Wiley期刊,Inc。

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