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Septal cartilage tissue engineering: new horizons.

机译:间隔软骨组织工程:新视野。

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Cartilage tissue engineering is a dynamically changing field that has the potential to address some of the tissue repair challenges seen in nasal and craniofacial reconstructive surgeries. The scope of the problem includes limited autologous tissue availability, donor site morbidity associated with the harvesting of these tissue grafts, and the risk of an immune reaction to allogenic or synthetic implants that might be used as alternatives. Current tissue engineering strategies involve harvesting a small biopsy specimen from a patient and then isolating chondrocytes through enzymatic digestion of the extracellular matrix. These isolated chondrocytes can be expanded in monolayer and reseeded into a three-dimensional scaffold that could potentially be used as autologous surgical grafts. Using cell-expansion techniques, it would be feasible to generate abundant amounts of cartilage in defined shapes and sizes. The ideal tissue-engineered cartilage would resemble native tissue in terms of its biochemical, structural, and metabolic properties so that it could restore stability, function, and contour to the damaged or defective facial region. In this article, emerging technology and major challenges are described to highlight recent advances and overall trends within septal cartilage tissue engineering.
机译:软骨组织工程是一个动态变化的领域,有可能解决在鼻和颅面重建手术中遇到的一些组织修复难题。问题的范围包括自体组织可用性有限,与这些组织移植物的收获相关的供体部位发病率以及对可能用作替代物的同种异体或合成植入物发生免疫反应的风险。当前的组织工程策略包括从患者那里采集少量的活检标本,然后通过细胞外基质的酶消化分离软骨细胞。这些分离的软骨细胞可以单层扩增,并重新接种到三维支架中,可以用作自体手术移植物。使用细胞扩增技术,以定义的形状和大小产生大量的软骨是可行的。理想的组织工程软骨就其生化,结构和代谢特性而言,将类似于天然组织,从而可以恢复受损,缺损的面部区域的稳定性,功能和轮廓。在本文中,描述了新兴技术和主要挑战,以强调间隔软骨组织工程学的最新进展和总体趋势。

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