首页> 外文期刊>Pediatric surgery international >In vitro construction of scaffold-free cylindrical cartilage using cell sheet-based tissue engineering.
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In vitro construction of scaffold-free cylindrical cartilage using cell sheet-based tissue engineering.

机译:使用基于细胞片的组织工程技术体外构建无支架的圆柱软骨。

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PURPOSE: Tissue-engineered cartilage may offer a solution for the treatment of serious airway disease. This study developed a novel procedure to fabricate a scaffold-free cylindrical cartilage under in vitro conditions, while also evaluating the effect of a dynamic culture on the engineered construct. METHODS: Auricular chondrocytes were harvested from New Zealand white rabbits and cultivated under high-density conditions to form a chondrocyte sheet. The sheet was looped around a silicon tube and cultivated for 6 weeks in dynamic or static conditions. The engineered cylindrical cartilages were evaluated macroscopically and histologically. The expression of collagen, glycosaminoglycan content and mechanical properties were determined. RESULTS: The cylindrical cartilage was sufficiently elastic and stiff to maintain the structure without disruption. Histologically, the construct contained a Safranin-O positive cartilaginous matrix accompanied by the expression of type II collagen. The glycosaminoglycan content increased and reached 72% of the native tracheal cartilage after 6 weeks of cultivation. CONCLUSION: A novel procedure was developed for fabricating engineered cartilage, which maintained the shape and a proper level of rigidity and flexibility, under in vitro conditions using sheet-based tissue engineering techniques. This procedure may allow for the development of a tailor-made autograft and a functionally engineered trachea.
机译:目的:组织工程软骨可能为严重气道疾病的治疗提供解决方案。这项研究开发了一种新颖的程序,可以在体外条件下制造无支架的圆柱形软骨,同时还评估了动态培养对工程构建物的影响。方法:从新西兰白兔中收获耳软骨细胞,并在高密度条件下培养形成软骨细胞片。将片材绕在硅管上并在动态或静态条件下培养6周。宏观和组织学评估了工程化的圆柱软骨。测定胶原蛋白的表达,糖胺聚糖含量和机械性能。结果:圆柱软骨具有足够的弹性和刚度,可以保持结构不被破坏。从组织学上讲,该构建体包含Safranin-O阳性软骨基质,并伴有II型胶原蛋白的表达。培养6周后,糖胺聚糖含量增加并达到天然气管软骨的72%。结论:开发了一种新的程序来制造工程软骨,在体外条件下使用片基组织工程技术可保持其形状以及适当的刚性和柔韧性水平。该程序可以允许开发定制的自体移植物和功能性工程的气管。

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