Mathematical modeling of ATP release in response to mechanical stimulation of chondrogenic cells

I. Gadjanski, N. Filipovic
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引用次数: 2

Abstract

One of the key challenges in osteochondral tissue engineering is to achieve mechanical properties in the engineered tissue that are equivalent to the native tissue. Detailed knowledge of the mechanotransduction pathways occuring in the native tissue is necessary before manipulation towards the aimed properties in the engineered tissue. Purinergic (ATP-mediated) signaling is proving to be one of the main mechanisms how the chondrogenic cells sense and respond to the mechanical stimulation. In this study we performed experiments to evaluate the mechanosensitive purinergic response of chondrocytes and chondrogenic mesenchymal stem cells and we further developed a mathematical model showing ATP release changes in loaded vs. unloaded cell constructs over time. Such model can be of value in determining the potential for pharmacological manipulation of the purinergic mechanotransduction in the engineered osteochondral tissues.
软骨细胞机械刺激下ATP释放的数学模型
骨软骨组织工程的关键挑战之一是在工程组织中实现与天然组织等效的机械性能。在对工程组织中的目标特性进行操作之前,必须详细了解原生组织中发生的机械转导途径。嘌呤能(atp介导)信号被证明是软骨细胞感知和响应机械刺激的主要机制之一。在这项研究中,我们进行了实验来评估软骨细胞和软骨间充质干细胞的机械敏感性嘌呤能反应,并进一步建立了一个数学模型,显示加载和卸载细胞结构中ATP释放随时间的变化。这种模型在确定工程骨软骨组织中嘌呤能机械转导的药理学操作潜力方面具有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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