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用于软骨细胞三维培养的具有明确且均匀培养环境的聚二甲基硅氧烷微生物反应器的开发。

Development of PDMS microbioreactor with well-defined and homogenous culture environment for chondrocyte 3-D culture.

作者信息

Wu Min Hsien, Urban Jill P G, Cui Zheng, Cui Zhan Feng

机构信息

Department of Engineering Science, University of Oxford, UK.

出版信息

Biomed Microdevices. 2006 Dec;8(4):331-40. doi: 10.1007/s10544-006-9597-y.

Abstract

Perfusion cell culture is believed to provide a stable culture environment due to the continuous supply of nutrients and removal of waste. However, the culture scales used in most cases were large, where the culture conditions can not be regarded as homogenous because of chemical gradients. To improve this, the concept of miniaturization is applied to 3-D cell culture. In this study, a simple perfusion microbioreactor was developed based on mass transport simulation to find out the reasonable culture scales with relatively lower chemical gradients. Besides, PDMS surface was treated with surfactant solution to reduce non-specific serum protein adsorption, which keeps the culture conditions steady. Chondrocyte 3-D culture using the proposed microbioreactors was compared with similar perfusion culture with a larger culture scale. Results showed that surfactant-treated PDMS surface could reduce serum protein adsorption by 85% over the native one. Also, microbioreactors were proved to provide a stable culture environment (e.g. pH) over the culture period. Cell culture scale of 200 microm thick culture construct was justified to have relatively lower chemical gradients than the larger scale perfusion culture. As a whole, the proposed culture system is capable of providing a well-defined and homogenous culture environment.

摘要

由于营养物质的持续供应和废物的清除,灌注细胞培养被认为能够提供一个稳定的培养环境。然而,大多数情况下使用的培养规模较大,由于化学梯度的存在,培养条件不能被视为均匀一致。为了改善这一情况,微型化的概念被应用于三维细胞培养。在本研究中,基于传质模拟开发了一种简单的灌注微生物反应器,以找出具有相对较低化学梯度的合理培养规模。此外,用表面活性剂溶液处理聚二甲基硅氧烷(PDMS)表面,以减少非特异性血清蛋白吸附,从而保持培养条件稳定。将使用所提出的微生物反应器进行的软骨细胞三维培养与具有更大培养规模的类似灌注培养进行了比较。结果表明,经表面活性剂处理的PDMS表面比天然表面可将血清蛋白吸附减少85%。此外,微生物反应器被证明在培养期间能够提供一个稳定的培养环境(如pH值)。200微米厚培养构建体的细胞培养规模被证明比更大规模的灌注培养具有相对较低的化学梯度。总体而言,所提出的培养系统能够提供一个明确且均匀的培养环境。

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