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The Effect of Oxygen Tension on Human Articular Chondrocyte Matrix Synthesis: Integration of Experimental and Computational Approaches

机译:氧张力对人关节软骨细胞基质合成的影响:实验和计算方法的整合。

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Significant oxygen gradients occur within tissue engineered cartilaginous constructs. Although oxygen tension is an important limiting parameter in the development of new cartilage matrix, its precise role in matrix formation by chondrocytes remains controversial, primarily due to discrepancies in the experimental setup applied in different studies. In this study, the specific effects of oxygen tension on the synthesis of cartilaginous matrix by human articular chondrocytes were studied using a combined experimentalcomputational approach in a “scaffold-free” 3D pellet culture model. Key parameters including cellular oxygen uptake rate were determined experimentally and used in conjunction with a mathematical model to estimate oxygen tension profiles in 21-day cartilaginous pellets. A threshold oxygen tension (pO_2≈8% atmospheric pressure) for human articular chondrocytes was estimated from these inferred oxygen profiles and histological analysis of pellet sections. Human articular chondrocytes that experienced oxygen tension below this threshold demonstrated enhanced proteoglycan deposition. Conversely, oxygen tension higher than the threshold favored collagen synthesis. This study has demonstrated a close relationship between oxygen tension and matrix synthesis by human articular chondrocytes in a “scaffold-free” 3D pellet culture model, providing valuable insight into the understanding and optimization of cartilage bioengineering approaches.
机译:在组织工程化的软骨构造中会出现明显的氧梯度。尽管氧张力是开发新软骨基质的重要限制参数,但其在软骨细胞形成基质中的确切作用仍存在争议,这主要是由于在不同研究中使用的实验设置存在差异。在这项研究中,在“无支架” 3D颗粒培养模型中,采用组合实验计算方法研究了氧张力对人关节软骨细胞合成软骨基质的具体影响。实验确定了包括细胞氧吸收率在内的关键参数,并将其与数学模型结合使用以估计21天软骨颗粒中的氧张力分布。根据这些推断的氧分布和沉淀切片的组织学分析,估计了人类关节软骨细胞的阈值氧张力(pO_2≈8%大气压)。经历低于该阈值的氧张力的人关节软骨细胞显示出增强的蛋白聚糖沉积。相反,高于阈值的氧张力有利于胶原蛋白的合成。这项研究证明了在“无支架”的3D颗粒培养模型中,氧张力与人类关节软骨细胞合成基质之间的密切关系,为了解和优化软骨生物工程方法提供了宝贵的见识。

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