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Processed xenogenic cartilage as innovative biomatrix for cartilage tissue engineering: effects on chondrocyte differentiation and function

机译:加工的异种软骨作为软骨组织工程的创新生物基质:对软骨细胞分化和功能的影响

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One key point in the development of new bioimplant matrices for the reconstruction and replacement of cartilage defects is to provide an adequate microenvironment to ensure chondrocyte migration and de novo synthesis of cartilage-specific extracellular matrix (ECM). A recently developed decellularization and sterilization process maintains the three-dimensional (3D) collagen structure of native septal cartilage while increasing matrix porosity, which is considered to be crucial for cartilage tissue engineering. Human primary nasal septal chondrocytes were amplified in monolayer culture and 3D-cultured on processed porcine nasal septal cartilage scaffolds. The influence of chondrogenic growth factors on neosynthesis of ECM proteins was examined at the protein and gene expression levels. Seeding experiments demonstrated that processed xenogenic cartilage matrices provide excellent environmental properties for human nasal septal chondrocytes with respect to cell adhesion, migration into the matrix and neosynthesis of cartilage-specific ECM proteins, such as collagen type II and aggrecan. Matrix biomechanical stability indicated that the constructs retrieve full stability and function during 3D culture for up to 42 days, proportional to collagen type II and GAG production. Thus, processed xenogenic cartilage offers a suitable environment for human nasal chondrocytes and has promising potential for cartilage tissue engineering in the head and neck region. Copyright (C) 2012 John Wiley & Sons, Ltd.
机译:开发用于重建和置换软骨缺损的新生物植入物基质的一个关键点是提供适当的微环境,以确保软骨细胞迁移和从头合成软骨特异性细胞外基质(ECM)。最近开发的脱细胞和灭菌过程可保持天然中隔软骨的三维(3D)胶原结构,同时增加基质孔隙度,这对于软骨组织工程至关重要。人单鼻鼻中隔软骨细胞在单层培养中扩增,并在经过处理的猪鼻中隔软骨支架上进行3D培养。在蛋白质和基因表达水平上检查了软骨生长因子对ECM蛋白质新合成的影响。播种实验表明,经过处理的异种软骨基质为人类鼻中隔软骨细胞提供了优异的环境特性,包括细胞粘附,向基质的迁移以及新合成的软骨特异性ECM蛋白(例如II型胶原和蛋白聚糖)。基质的生物力学稳定性表明,该构建体在3D培养过程中可恢复长达42天的完全稳定性和功能,与II型胶原和GAG的产生成比例。因此,加工的异种软骨为人的鼻软骨细胞提供了合适的环境,并且在头颈部区域的软骨组织工程中具有有希望的潜力。版权所有(C)2012 John Wiley&Sons,Ltd.

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