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生物反应器中动态骨组织工程模拟技术的进展

The evolution of simulation techniques for dynamic bone tissue engineering in bioreactors.

作者信息

Vetsch Jolanda Rita, Müller Ralph, Hofmann Sandra

机构信息

Institute for Biomechanics, Swiss Federal Institute of Technology Zürich (ETHZ), Switzerland.

出版信息

J Tissue Eng Regen Med. 2015 Aug;9(8):903-17. doi: 10.1002/term.1733. Epub 2013 Apr 29.

Abstract

Bone tissue engineering aims to overcome the drawbacks of current bone regeneration techniques in orthopaedics. Bioreactors are widely used in the field of bone tissue engineering, as they help support efficient nutrition of cultured cells with the possible combination of applying mechanical stimuli. Beneficial influencing parameters of in vitro cultures are difficult to find and are mostly determined by trial and error, which is associated with significant time and money spent. Mathematical simulations can support the finding of optimal parameters. Simulations have evolved over the last 20 years from simple analytical models to complex and detailed computational models. They allow researchers to simulate the mechanical as well as the biological environment experienced by cells seeded on scaffolds in a bioreactor. Based on the simulation results, it is possible to give recommendations about specific parameters for bone bioreactor cultures, such as scaffold geometries, scaffold mechanical properties, the level of applied mechanical loading or nutrient concentrations. This article reviews the evolution in simulating various aspects of dynamic bone culture in bioreactors and reveals future research directions.

摘要

骨组织工程旨在克服当前骨科骨再生技术的缺点。生物反应器在骨组织工程领域被广泛应用,因为它们有助于在可能施加机械刺激的情况下,为培养的细胞提供有效的营养支持。体外培养的有益影响参数很难找到,大多通过反复试验来确定,这会耗费大量的时间和金钱。数学模拟可以辅助找到最佳参数。在过去20年里,模拟已从简单的分析模型发展到复杂而详细的计算模型。它们使研究人员能够模拟生物反应器中接种在支架上的细胞所经历的机械和生物环境。基于模拟结果,可以针对骨生物反应器培养的特定参数给出建议,如支架几何形状、支架机械性能、施加的机械负荷水平或营养物浓度。本文综述了生物反应器中动态骨培养各方面模拟的进展,并揭示了未来的研究方向。

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