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使用计算模拟评估自由成型制造支架的有效扩散率。

Evaluation of the effective diffusivity of a freeform fabricated scaffold using computational simulation.

作者信息

Woo Jung Jin, Yi Hee-Gyeong, Kang Tae-Yun, Yong Woon-Jae, Jin Songwan, Yun Won-Soo, Cho Dong-Woo

机构信息

Department of Mechanical Engineering, POSTECH, San 31, Hyoja-dong, Nam-gu, Pohang, Gyeongbuk 790-784, Korea.

出版信息

J Biomech Eng. 2013 Aug;135(8):84501. doi: 10.1115/1.4024570.

Abstract

In scaffold-based tissue engineering, sufficient oxygen and nutrient supply into cells within a scaffold is essential to increase cell viability and the proliferation rate. Generally, oxygen and nutrients reach the cells through the media by diffusion in vitro or in vivo, assuming there is no convection flow through a scaffold with small-sized pores. The scaffold diffusion rate depends mainly on the scaffold pore architecture. Thus, understanding the effect of scaffold pore architecture on the diffusion mechanism is necessary to design an efficient scaffold model. This study proposes a computational method to estimate diffusivity using the finite element analysis (FEA). This method can be applied to evaluate and analyze the effective diffusivity of a freeform fabricated 3D scaffold. The diffusion application module of commercial FEA software was used to calculate the spatial oxygen concentration gradient in a scaffold model medium. The effective diffusivities of each scaffold could be calculated from the oxygen concentration data, which revealed that the scaffold pore architecture influences its effective diffusivity. The proposed method has been verified experimentally and can be applied to design pore architectures with efficient diffusion by increasing our understanding of how the diffusion rate within a scaffold is affected by its pore architecture.

摘要

在基于支架的组织工程中,向支架内的细胞充分供应氧气和营养物质对于提高细胞活力和增殖率至关重要。一般来说,假设没有对流通过具有小孔径的支架,氧气和营养物质在体外或体内通过培养基扩散到达细胞。支架扩散速率主要取决于支架的孔隙结构。因此,了解支架孔隙结构对扩散机制的影响对于设计高效的支架模型是必要的。本研究提出了一种使用有限元分析(FEA)来估计扩散系数的计算方法。该方法可用于评估和分析自由制造的三维支架的有效扩散系数。使用商业有限元分析软件的扩散应用模块来计算支架模型介质中的空间氧浓度梯度。可以从氧浓度数据计算每个支架的有效扩散系数,这表明支架孔隙结构会影响其有效扩散系数。所提出的方法已通过实验验证,通过加深我们对支架内扩散速率如何受其孔隙结构影响的理解,可应用于设计具有高效扩散的孔隙结构。

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