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An animal model study for tissue-engineered trachea fabricated from a biodegradable scaffold using chondrocytes to augment repair of tracheal stenosis.

机译:用软骨细胞增强可修复气管狭窄的可生物降解支架制成的组织工程气管的动物模型研究。

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INTRODUCTION: We have designed an engineered graft fabricated from a biodegradable scaffold using chondrocytes and applied this construct to augment repair of tracheal stenosis. This study investigated the feasibility of using such tissue-engineered airways with autologous chondrocytes in a rabbit model. MATERIAL AND METHODS: Chondrocytes were isolated and expanded from the auricular cartilage of New Zealand white rabbits, then seeded onto composite 3-layer scaffolds consisting of a collagen sheet, a polyglycolic acid mesh, and a copolymer (l-lactide/epsilon-caprolactone) coarse mesh. The engineered grafts were implanted into a 0.5 x 0.8-cm defect created in the midventral portion of the cervical trachea. Gelatin sponges that slowly released basic fibroblast growth factor (b-FGF) were then placed on the constructs, which were retrieved 1 or 3 months after implantation. RESULTS: The biodegradable scaffold seeded with chondrocytes could maintain airway structure up to 3 months after implantation. Tracheal epithelial regeneration occurred in the internal lumen of this composite scaffold. Three months after implantation, staining of the sections showed cartilage accumulation in the engineered tracheal wall. CONCLUSION: This composite biodegradable scaffold may be useful for developing engineered trachea. A gelatin sponge slowly releasing b-FGF might enhance chondrogenesis.
机译:简介:我们设计了一种工程软骨,该软骨是用软骨细胞由可生物降解的支架制成的,并应用这种构建物来增强气管狭窄的修复。这项研究调查了在兔模型中将这种组织工程气道与自体软骨细胞一起使用的可行性。材料与方法:分离软骨细胞并从新西兰白兔的耳软骨中扩增,然后接种到由胶原片,聚乙醇酸网和共聚物(1-丙交酯/ε-己内酯)组成的复合三层支架上粗网格。经过工程改造的移植物被植入在颈气管腹中部形成的0.5 x 0.8 cm缺损中。然后将缓慢释放碱性成纤维细胞生长因子(b-FGF)的明胶海绵放在构建体上,植入后1或3个月取回。结果:植入软骨细胞的可生物降解支架可在植入后3个月内保持气道结构。气管上皮再生发生在该复合支架的内腔中。植入后三个月,切片的染色显示在工程气管壁中软骨积聚。结论:这种可生物降解的复合材料支架可用于开发工程气管。缓慢释放b-FGF的明胶海绵可能会增强软骨形成。

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