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In vitro ovine articular chondrocyte proliferation: experiments and modelling

机译:体外绵羊关节软骨细胞增殖:实验和模型

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摘要

This study focuses on analysis of cultures of chondrocytes from ovine articular cartilage. Isolated cells were seeded in Petri dishes, then expanded to confluence and phenotypically characterized by flow cytometry. The sigmoidal temporal profile of total counts was obtained by classic haemocytometry and corresponding cell size distributions were measured electronically using a Coulter Counter. A mathematical model recently proposed ( ) was adopted for quantitative interpretation of these experimental data. The model is based on a 1‐D (that is, mass‐structured), single‐staged population balance approach capable of taking into account contact inhibition at confluence. The model’s parameters were determined by fitting measured total cell counts and size distributions. Model reliability was verified by predicting cell proliferation counts and corresponding size distributions at culture times longer than those used when tuning the model’s parameters. It was found that adoption of cell mass as the intrinsic characteristic of a growing chondrocyte population enables sigmoidal temporal profiles of total counts in the Petri dish, as well as cell size distributions at ‘balanced growth’, to be adequately predicted.
机译:这项研究的重点是分析来自绵羊关节软骨的软骨细胞的培养。将分离的细胞接种在培养皿中,然后扩增至汇合,并通过流式细胞仪进行表型鉴定。通过经典的血细胞计数获得总计数的S形时间分布,并使用库尔特计数器以电子方式测量相应的细胞大小分布。最近提出的数学模型()被用于这些实验数据的定量解释。该模型基于一维(即质量结构)单阶段人口平衡方法,能够考虑汇合时的接触抑制。通过拟合测得的总细胞数和大小分布来确定模型的参数。通过预测比调整模型参数时所用的培养时间长的细胞增殖计数和相应的大小分布,来验证模型的可靠性。研究发现,将细胞质量作为不断增长的软骨细胞种群的固有特征,可以充分预测皮氏培养皿中总计数的S形时间分布以及“平衡生长”时的细胞大小分布。

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