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Cell Culture on MEMS Platforms: A Review

机译:MEMS平台上的细胞培养:综述

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Microfabricated systems provide an excellent platform for the culture of cells, and are an extremely useful tool for the investigation of cellular responses to various stimuli. Advantages offered over traditional methods include cost-effectiveness, controllability, low volume, high resolution, and sensitivity. Both biocompatible and bio-incompatible materials have been developed for use in these applications. Biocompatible materials such as PMMA or PLGA can be used directly for cell culture. However, for bio-incompatible materials such as silicon or PDMS, additional steps need to be taken to render these materials more suitable for cell adhesion and maintenance. This review describes multiple surface modification strategies to improve the biocompatibility of MEMS materials. Basic concepts of cell-biomaterial interactions, such as protein adsorption and cell adhesion are covered. Finally, the applications of these MEMS materials in Tissue Engineering are presented.
机译:超细加工系统为细胞培养提供了一个极好的平台,并且是研究细胞对各种刺激反应的极为有用的工具。与传统方法相比,其优势包括成本效益,可控制性,小体积,高分辨率和灵敏度。已经开发出生物相容性和生物相容性的材料用于这些应用中。生物相容性材料(例如PMMA或PLGA)可直接用于细胞培养。但是,对于生物不兼容的材料(例如硅或PDMS),需要采取其他步骤以使这些材料更适合细胞粘附和维持。这篇综述描述了多种表面改性策略,以提高MEMS材料的生物相容性。涵盖了细胞生物材料相互作用的基本概念,例如蛋白质吸附和细胞粘附。最后,介绍了这些MEMS材料在组织工程中的应用。

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