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Combining regenerative medicine strategies to provide durable reconstructive options: auricular cartilage tissue engineering

机译:结合再生医学策略以提供持久的重建选择:耳软骨组织工程

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摘要

Recent advances in regenerative medicine place us in a unique position to improve the quality of engineered tissue. We use auricular cartilage as an exemplar to illustrate how the use of tissue-specific adult stem cells, assembly through additive manufacturing and improved understanding of postnatal tissue maturation will allow us to more accurately replicate native tissue anisotropy. This review highlights the limitations of autologous auricular reconstruction, including donor site morbidity, technical considerations and long-term complications. Current tissue-engineered auricular constructs implanted into immune-competent animal models have been observed to undergo inflammation, fibrosis, foreign body reaction, calcification and degradation. Combining biomimetic regenerative medicine strategies will allow us to improve tissue-engineered auricular cartilage with respect to biochemical composition and functionality, as well as microstructural organization and overall shape. Creating functional and durable tissue has the potential to shift the paradigm in reconstructive surgery by obviating the need for donor sites.
机译:再生医学的最新进展使我们处于改善工程组织质量的独特位置。我们以耳软骨为例来说明如何使用组织特异性成体干细胞,通过增材制造进行组装以及对出生后组织成熟度的更好理解将使我们能够更准确地复制天然组织各向异性。这篇综述强调了自体耳廓重建的局限性,包括供体部位的发病率,技术考虑因素和长期并发症。已经观察到目前植入有免疫能力的动物模型中的组织工程化耳廓构造会发生炎症,纤维化,异物反应,钙化和降解。结合仿生再生医学策略,我们将可以改善组织工程化的耳软骨的生化组成和功能,以及微观结构的组织和整体形状。通过消除对供体部位的需求,创建功能性和耐久的组织具有改变重建手术范式的潜力。

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