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BioMEMS and Cellular Biology: Perspectives and Applications

机译:BioMEMS和细胞生物学:观点和应用

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摘要

The ability to culture cells has revolutionized hypothesis testing in basic cell and molecular biology research. It has become a standard methodology in drug screening, toxicology, and clinical assays, and is increasingly used in regenerative medicine. However, the traditional cell culture methodology essentially consisting of the immersion of a large population of cells in a homogeneous fluid medium and on a homogeneous flat substrate has become increasingly limiting both from a fundamental and practical perspective. Microfabrication technologies have enabled researchers to design, with micrometer control, the biochemical composition and topology of the substrate, and the medium composition, as well as the neighboring cell type in the surrounding cellular microenvironment. Additionally, microtechnology is conceptually well-suited for the development of fast, low-cost in vitro systems that allow for high-throughput culturing and analysis of cells under large numbers of conditions. In this interview, Albert Folch explains these limitations, how they can be overcome with soft lithography and microfluidics, and describes some relevant examples of research in his lab and future directions.
机译:培养细胞的能力彻底改变了基础细胞和分子生物学研究中的假设检验。它已成为药物筛选,毒理学和临床分析的标准方法,并越来越多地用于再生医学。然而,从基本和实践的角度来看,传统的细胞培养方法基本上包括将大量细胞浸入均质的流体介质中和均质的平坦基质上。微细加工技术使研究人员能够通过千分尺控制来设计基质的生化成分和拓扑结构,培养基成分以及周围细胞微环境中的邻近细胞类型。此外,微技术在概念上非常适合开发快速,低成本的体外系统,该系统可在大量条件下进行高通量培养和细胞分析。在这次采访中,阿尔伯特·福尔奇(Albert Folch)解释了这些局限性,以及如何通过软光刻和微流控技术克服这些局限性,并描述了他实验室中的一些相关研究实例以及未来的发展方向。

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