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MEMS 微井和微柱阵列:高通量基于细胞检测的新方法。

MEMS microwell and microcolumn arrays: novel methods for high-throughput cell-based assays.

机构信息

Institute of Biomedical Engineering, College of Engineering, College of Medicine, National Taiwan University, No.1, Sec.1, Jen-Ai Road, Taipei, 100, Taiwan.

出版信息

Lab Chip. 2011 Nov 7;11(21):3619-25. doi: 10.1039/c0lc00696c. Epub 2011 Sep 9.

Abstract

Although the cell-based assay is becoming more popular for high throughput drug screening and the functional characterization of disease-associated genes, most researchers in these areas do not use it because it is a complex and expensive process. We wanted to create a simple method of performing an on-chip cell-based assay. To do this, we used micro-electro-mechanical systems (MEMS) to fabricate a microwell array chip comprised of a glass substrate covered with a photoresist film patterned to form multiple microwells and tested it in two reverse transfection experiments, an exogenous gene expression study and an endogenous gene knockdown study. It was used effectively in both. Then, using the same MEMS technology, we fabricated a complementary microcolumn array to be used as a drug carrier device to topically apply drugs to cells cultured in the microwell array. We tested the effectiveness of microwell-microcolumn on-chip cell-based assay by using it in experiments to identify epidermal growth factor receptor (EGFR) activity inhibitors, for which it was found to provide effective high throughput and high content functional screening. In conclusion, this new method of cell-based screening proved to be a simple and efficient method of characterizing gene function and discovering drug leads.

摘要

虽然基于细胞的检测方法在高通量药物筛选和疾病相关基因的功能表征方面越来越受欢迎,但这些领域的大多数研究人员并不使用它,因为它是一个复杂且昂贵的过程。我们希望创建一种简单的方法来进行基于芯片的细胞检测。为此,我们使用微机电系统 (MEMS) 制造了一个微井阵列芯片,该芯片由一个玻璃基板组成,上面覆盖有一层光刻胶薄膜,该薄膜经过图案化处理以形成多个微井,并在两个反向转染实验(外源性基因表达研究和内源性基因敲低研究)中进行了测试。它在这两个实验中都得到了有效应用。然后,我们使用相同的 MEMS 技术制造了一个互补的微柱阵列,用作药物载体装置,将药物局部施加到在微井阵列中培养的细胞上。我们通过使用它来进行表皮生长因子受体 (EGFR) 活性抑制剂的实验来测试微井-微柱芯片上基于细胞的检测方法的有效性,发现它为高通量和高内涵功能筛选提供了有效的方法。总之,这种新的基于细胞的筛选方法被证明是一种简单有效的基因功能表征和药物发现的方法。

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