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Compaction Enhances Extracellular Matrix Content and Mechanical Properties of Tissue-Engineered Cartilaginous Constructs

机译:压实增强组织工程软骨构造的细胞外基质含量和力学性能

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摘要

Many cell-based tissue-engineered cartilaginous constructs are mechanically softer than native tissue and have low content and abnormal proportions of extracellular matrix (ECM) constituents. We hypothesized that the load-bearing mechanical properties of cartilaginous constructs improve with the inclusion of collagen (COL) and proteoglycan (PG) during assembly. The objectives of this work were to determine (1) the effect of addition of PG, COL, or COL+PG on compressive properties of 2% agarose constructs and (2) the ability of mechanical compaction to concentrate matrix content and improve the compressive properties of such constructs. The inclusion of COL+PG improved the compressive properties of hydrogel constructs compared with PG or COL alone. Mechanical compaction increased the PG and COL concentrations in and compressive stiffness of the constructs. Chondrocytes included in the constructs maintained high viability after compaction. These results support the concepts that the assembly of cartilaginous constructs with COL+PG and application of mechanical compaction enhance the ECM content and compressive properties of engineered cartilaginous constructs.
机译:许多基于细胞的组织工程化软骨构造在机械上比天然组织柔软,并且含量低且细胞外基质(ECM)成分的比例异常。我们假设,在组装过程中,随着胶原蛋白(COL)和蛋白聚糖(PG)的加入,软骨结构的承载机械性能会提高。这项工作的目的是确定(1)添加PG,COL或COL + PG对2%琼脂糖构建体压缩特性的影响,以及(2)机械压实以浓缩基质含量并改善压缩特性的能力这样的构造。与单独使用PG或COL相比,包含COL + PG改善了水凝胶构建体的压缩性能。机械压实提高了结构中的PG和COL浓度以及抗压刚度。压实后,构建体中包含的软骨细胞保持高生存力。这些结果支持这样的概念,即用COL + PG组装软骨结构和机械压实可以提高工程化软骨结构的ECM含量和压缩性能。

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