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Modelling multi-scale cell–tissue interaction of tissue-engineered muscle constructs

机译:模拟组织工程化肌肉构造的多尺度细胞-组织相互作用

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摘要

Expectation on engineered tissue substitute continues to grow, and for an effective development of a functional tissue and to control its quality, cellular mechanoresponse plays a key role. Although the mechanoresponse – in terms of cell–tissue interaction across scales – has been understood better in recent years, there are still technical limitations to quantitatively monitor the processes involved in the development of both native and engineered tissues. Computational (in silico) studies have been utilised to complement the experimental limitations and successfully applied to the prediction of tissue growth. We here review recent activities in the area of combined experimental and computational analyses of tissue growth, especially in the tissue engineering context, and highlight the advantages of such an approach for the future of the tissue engineering, using our own case study of predicting musculoskeletal tissue engineering construct development.
机译:对工程组织替代物的期望不断增长,对于功能性组织的有效发展并控制其质量,细胞机械反应起着关键作用。尽管近年来人们对机械反应(跨尺度的细胞-组织相互作用)有了更好的了解,但仍然存在技术上的局限性,无法定量监测天然组织和工程组织的发育过程。计算(计算机)研究已被用来补充实验的局限性,并成功地应用于组织生长的预测。我们在这里回顾组织生长的组合实验和计算分析领域中的最新活动,尤其是在组织工程方面,并使用我们自己的预测骨骼肌肉组织的案例研究,突出了这种方法对组织工程的未来的优势。工程构造开发。

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