首页> 外文期刊>Biomechanics and modeling in mechanobiology >Predicting tenocyte expression profiles and average molecular concentrations in Achilles tendon ECM from tissue strain and fiber damage
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Predicting tenocyte expression profiles and average molecular concentrations in Achilles tendon ECM from tissue strain and fiber damage

机译:从组织菌株和纤维损伤预测腱鞘ECM中的胎骨表达谱和平均分子浓度

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摘要

In this study, we propose a method for quantitative prediction of changes in concentrations of a number of key signaling, structural and effector molecules within the extracellular matrix of tendon. To achieve this, we introduce the notion of elementary cell responses (ECRs). An ECR defines a normal reference secretion profile of a molecule by a tenocyte in response to the tenocyte's local strain. ECRs are then coupled with a model for mechanical damage of tendon collagen fibers at different straining conditions of tendon and then scaled up to the tendon tissue level for comparison with experimental observations. Specifically, our model predicts relative changes in ECM concentrations of transforming growth factor beta, interleukin 1 beta, collagen type I, glycosaminoglycan, matrix metalloproteinase 1 and a disintegrin and metalloproteinase with thrombospondin motifs 5, with respect to tendon straining conditions that are consistent with the observations in the literature. In good agreement with a number of in vivo and in vitro observations, the model provides a logical and parsimonious explanation for how excessive mechanical loading of tendon can lead to under-stimulation of tenocytes and a degenerative tissue profile, which may well have bearing on a better understanding of tendon homeostasis and the origin of some tendinopathies.
机译:在该研究中,我们提出了一种用于定量预测肌腱细胞外基质内许多关键信号传导,结构和效应分子的浓度的变化的方法。为实现这一目标,我们介绍了基本细胞响应的概念(ECRS)。 ECR响应于Tenocyte的局部菌株,通过Tenocyte定义分子的正常参考分泌谱。然后与肌腱不同紧张条件下的肌腱胶原纤维的机械损伤的模型偶联,然后与实验观察相比,缩放到肌腱组织水平。具体而言,我们的模型预测转化生长因子β,白细胞介素1β,胶原蛋白I,糖胺蛋白酶蛋白,基质金属蛋白酶1和患有血压出素图案5的肌腱抑制条件的相对变化,其与血栓间隙素5相对于文献中的观察。与许多体内和体外观察的良好一致,该模型提供了一种逻辑和显着的解释,用于肌腱的过度机械负荷可能导致刺激肌腱细胞和退行性组织概况,这可能很好地承受更好地了解肌腱稳态和一些肌腱病的起源。

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