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一种用于模拟组织工程实验室实验的计算机虚拟生物反应器。

An in silico bioreactor for simulating laboratory experiments in tissue engineering.

作者信息

Galbusera Fabio, Cioffi Margherita, Raimondi Manuela T

机构信息

IRCCS Istituto Ortopedico Galeazzi, Milan, Italy.

出版信息

Biomed Microdevices. 2008 Aug;10(4):547-54. doi: 10.1007/s10544-008-9164-9.

Abstract

This paper presents a software framework for the computational modeling of tissue engineering experiments, aimed to supplement and extend the empirical techniques currently employed in tissue engineering. The code included a model of cell population dynamics coupled to a finite element model of oxygen diffusion and consumption at the macroscale level, including the scaffold and the culture medium, and at the level of the scaffold microarchitecture. Cells were modeled as discrete entities moving in a continuum space, under the action of adhesion and repulsion forces. Oxygen distribution was calculated with the transient diffusion equation; oxygen consumption by cells was modeled by using the Michaelis-Menten equation. Other phenomena that can be formulated as a differential problem could be added in a straightforward manner to the code, due to the use of a general purpose finite element library. Two scaffold geometries were considered: a fiber scaffold and a scaffold with interconnected spherical pores. Cells were predicted to form clusters and adhere to the scaffold walls. Although the code demonstrated the ability to provide a robust performance, a calibration of the parameters employed in the model, based on specific laboratory experiments, is now required to verify the reliability of the results.

摘要

本文提出了一种用于组织工程实验计算建模的软件框架,旨在补充和扩展目前组织工程中使用的经验技术。该代码包括一个细胞群体动力学模型,该模型与宏观尺度(包括支架和培养基)以及支架微结构层面的氧扩散和消耗的有限元模型相耦合。细胞被建模为在连续空间中移动的离散实体,受到粘附力和排斥力的作用。用瞬态扩散方程计算氧分布;用米氏方程对细胞的氧消耗进行建模。由于使用了通用有限元库,其他可表述为微分问题的现象可以直接添加到代码中。考虑了两种支架几何形状:纤维支架和具有相互连接的球形孔的支架。预测细胞会形成簇并附着在支架壁上。尽管该代码展示了提供强大性能的能力,但现在需要基于特定的实验室实验对模型中使用的参数进行校准,以验证结果的可靠性。

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