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Strategies for Enhancing the Accumulation and Retention of Extracellular Matrix in Tissue-Engineered Cartilage Cultured in Bioreactors

机译:增强在生物反应器中培养的组织工程软骨中细胞外基质的积累和保留的策略

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摘要

Production of tissue-engineered cartilage involves the synthesis and accumulation of key constituents such as glycosaminoglycan (GAG) and collagen type II to form insoluble extracellular matrix (ECM). During cartilage culture, macromolecular components are released from nascent tissues into the medium, representing a significant waste of biosynthetic resources. This work was aimed at developing strategies for improving ECM retention in cartilage constructs and thus the quality of engineered tissues produced in bioreactors. Human chondrocytes seeded into polyglycolic acid (PGA) scaffolds were cultured in perfusion bioreactors for up to 5 weeks. Analysis of the size and integrity of proteoglycans in the constructs and medium showed that full-sized aggrecan was being stripped from the tissues without proteolytic degradation. Application of low (0.075 mL min−1) and gradually increasing (0.075–0.2 mL min−1) medium flow rates in the bioreactor resulted in the generation of larger constructs, a 4.0–4.4-fold increase in the percentage of GAG retained in the ECM, and a 4.8–5.2-fold increase in GAG concentration in the tissues compared with operation at 0.2 mL min−1. GAG retention was also improved by pre-culturing seeded scaffolds in flasks for 5 days prior to bioreactor culture. In contrast, GAG retention in PGA scaffolds infused with alginate hydrogel did not vary significantly with medium flow rate or pre-culture treatment. This work demonstrates that substantial improvements in cartilage quality can be achieved using scaffold and bioreactor culture strategies that specifically target and improve ECM retention.
机译:组织工程软骨的生产涉及关键成分如糖胺聚糖(GAG)和II型胶原蛋白的合成和积累,形成不溶性细胞外基质(ECM)。在软骨培养期间,大分子成分从新生组织释放到培养基中,这代表了生物合成资源的大量浪费。这项工作旨在制定策略,以改善ECM在软骨构造中的保留,从而提高生物反应器中产生的工程组织的质量。植入聚乙醇酸(PGA)支架中的人软骨细胞在灌注生物反应器中培养长达5周。对构建体和培养基中蛋白聚糖的大小和完整性的分析表明,从组织中剥离了完整的聚集蛋白聚糖,而没有蛋白水解降解。在生物反应器中应用低(0.075 mL min-1)并逐渐增加(0.075–0.2 mL min-1)介质流速导致生成更大的构建体,保留在其中的GAG百分比增加4.0–4.4倍与在0.2 mL min-1的操作相比,组织中GAG浓度增加了4.8-5.2倍。通过在生物反应器培养之前将接种的支架在烧瓶中预培养5天,GAG保留也得到了改善。相反,在注入藻酸盐水凝胶的PGA支架中,GAG保留量随培养基流速或预培养处理而无明显变化。这项工作表明,使用专门针对和改善ECM保留能力的支架和生物反应器培养策略,可以实现软骨质量的显着改善。

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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