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Mathematical modelling of glycosaminoglycan production by stem cell aggregates incorporated with growth factor-releasing polymer microspheres

机译:用生长因子释放聚合物微球的干细胞聚集体产生糖胺聚糖产量的数学建模

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摘要

Systems composed of high density cells incorporated with growth factor-releasing polymer microspheres have recently been shown to promote chondrogenic differentiation and cartilage formation. Within these systems, the effects of spatial and temporal patterning of growth factor release on hyaline cartilage-specific extracellular matrix production have been examined. However, at present, it is unclear which microsphere densities and growth factor delivery profiles are optimal for inducing human mesenchymal stem cell differentiation and glycosaminoglycan production. A mathematical model to describe glycosaminoglycan production as a function of initial microsphere loading and microsphere degradation rate over a period of 3 weeks is presented. Based on predictions generated by this model, it may be feasible to design a bioactive microsphere system with specific spatiotemporal growth factor presentation characteristics to promote glycosaminoglycan production at controllable rates. Copyright (C) 2014 John Wiley & Sons, Ltd.
机译:最近已被证明由掺入生长因子释放聚合物微球的高密度细胞组成的系统,以促进软骨形成分化和软骨形成。在这些系统中,已经研究了在透明软骨特异性细胞外基质生产上进行生长因子释放的空间和时间图案化的影响。然而,目前,目前尚不清楚哪种微球密度和生长因子输送型材是诱导人间充质干细胞分化和糖胺聚糖生产的最佳选择。提出了一种数学模型,用于描述糖胺聚糖产量作为初始微球载荷和微球降解速率的函数,在3周的时间内。基于该模型产生的预测,设计具有特定的时空生长因子呈现特征的生物活性微球系统可能是可行的,以促进可控速率下的糖胺聚糖产量。版权所有(c)2014 John Wiley&Sons,Ltd。

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