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首页> 外文期刊>Acta biomaterialia >Decellularized skin/adipose tissue flap matrix for engineering vascularized composite soft tissue flaps
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Decellularized skin/adipose tissue flap matrix for engineering vascularized composite soft tissue flaps

机译:脱细胞皮肤/脂肪组织皮瓣基质,用于工程化血管化复合软组织皮瓣

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摘要

Using a perfusion decellularization protocol, we developed a decellularized skin/adipose tissue flap (DSAF) comprising extracellular matrix (ECM) and intact vasculature. Our DSAF had a dominant vascular pedicle, microcirculatory vascularity, and a sensory nerve network and retained three-dimensional (3D) nanofibrous structures well. DSAF, which was composed of collagen and laminin with well-preserved growth factors (e.g., vascular endothelial growth factor, basic fibroblast growth factor), was successfully repopulated with human adipose-derived stem cells (hASCs) and human umbilical vein endothelial cells (HUVECs), which integrated with DSAF and formed 3D aggregates and vessel-like structures in vitro. We used microsurgery techniques to re-anastomose the recellularized DSAF into nude rats. In vivo, the engineered flap construct underwent neovascularization and constructive remodeling, which was characterized by the predominant infiltration of M2 macrophages and significant adipose tissue formation at 3 months postoperatively. Our results indicate that DSAF co-cultured with hASCs and HUVECs is a promising platform for vascularized soft tissue flap engineering. This platform is not limited by the flap size, as the entire construct can be immediately perfused by the recellularized vascular network following simple re-integration into the host using conventional microsurgical techniques.
机译:使用灌注脱细胞方案,我们开发了包括细胞外基质(ECM)和完整脉管系统的脱细胞皮肤/脂肪组织皮瓣(DSAF)。我们的DSAF具有优势的血管蒂,微循环血管和感觉神经网络,并很好地保留了三维(3D)纳米纤维结构。由胶原蛋白和层粘连蛋白以及保存完好的生长因子(例如,血管内皮生长因子,碱性成纤维细胞生长因子)组成的DSAF成功地重新填充了人类脂肪干细胞(hASC)和人脐静脉内皮细胞(HUVEC) ),它与DSAF集成并在体外形成3D聚集体和类似血管的结构。我们使用显微外科手术技术将重组后的DSAF重新解剖成裸鼠。在体内,经工程改造的皮瓣构造经过了新生血管形成和构造性重塑,其特征是术后3个月M2巨噬细胞主要浸润并形成了明显的脂肪组织。我们的结果表明,与hASC和HUVECs共培养的DSAF是用于血管化软组织皮瓣工程的有前途的平台。该平台不受皮瓣大小的限制,因为在使用常规显微外科技术将其简单地重新整合入宿主后,整个构建体可以立即被细胞化的血管网络灌注。

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