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微通道生物反应器中人类成纤维细胞培养的参数研究。

A parametric study of human fibroblasts culture in a microchannel bioreactor.

作者信息

Korin Natanel, Bransky Avishay, Dinnar Uri, Levenberg Shulamit

机构信息

Biomedical Engineering, Technion, Haifa, Israel 32000.

出版信息

Lab Chip. 2007 May;7(5):611-7. doi: 10.1039/b702392h. Epub 2007 Mar 21.

Abstract

The culture of cells in a microbioreactor can be highly beneficial for cell biology studies and tissue engineering applications. The present work provides new insights into the relationship between cell growth, cell morphology, perfusion rate, and design parameters in microchannel bioreactors. We demonstrate the long-term culture of mammalian (human foreskin fibroblasts, HFF) cells in a microbioreactor under constant perfusion in a straightforward simple manner. A perfusion system was used to culture human cells for more than two weeks in a plain microchannel (130 microm x 1 mm x 2 cm). At static conditions and at high flow rates (>0.3 ml h(-1)), the cells did not grow in the microchannel for more than a few days. For low flow rates (<0.2 ml h(-1)), the cells grew well and a confluent layer was obtained. We show that the culture of cells in microchannels under perfusion, even at low rates, affects cell growth kinetics as well as cell morphology. The oxygen level in the microchannel was evaluated using a mass transport model and the maximum cell density measured in the microchannel at steady state. The maximum shear stress, which corresponds to the maximum flow rate used for long term culture, was 20 mPa, which is significantly lower than the shear stress cells may endure under physiological conditions. The effect of channel size and cell type on long term cell culture were also examined and were found to be significant. The presented results demonstrate the importance of understanding the relationship between design parameters and cell behavior in microscale culture system, which vary from physiological and traditional culture conditions.

摘要

在微生物反应器中进行细胞培养对细胞生物学研究和组织工程应用可能极为有益。目前的工作为微通道生物反应器中细胞生长、细胞形态、灌注速率和设计参数之间的关系提供了新的见解。我们以一种直接简单的方式展示了在恒定灌注条件下,哺乳动物(人包皮成纤维细胞,HFF)细胞在微生物反应器中的长期培养。使用灌注系统在一个普通微通道(130微米×1毫米×2厘米)中培养人类细胞超过两周。在静态条件下以及高流速(>0.3毫升·小时⁻¹)时,细胞在微通道中生长不超过几天。对于低流速(<0.2毫升·小时⁻¹),细胞生长良好并形成汇合层。我们表明,即使在低流速下,微通道中灌注培养的细胞也会影响细胞生长动力学以及细胞形态。使用传质模型评估微通道中的氧气水平,并测量微通道中稳态下的最大细胞密度。对应于长期培养所用最大流速的最大剪切应力为20毫帕,这明显低于细胞在生理条件下可能承受的剪切应力。还研究了通道尺寸和细胞类型对长期细胞培养的影响,发现其影响显著。所呈现的结果证明了理解微尺度培养系统中设计参数与细胞行为之间关系的重要性,该系统与生理和传统培养条件不同。

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