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用于活细胞微阵列的水凝胶网格的简单台式图案化。

Simple benchtop patterning of hydrogel grids for living cell microarrays.

机构信息

Department of Chemical Engineering, The University of Texas at Austin, 1 University Station C0400, Austin, Texas 78712, USA.

出版信息

Lab Chip. 2010 Feb 7;10(3):379-83. doi: 10.1039/b917493a. Epub 2009 Nov 24.

Abstract

A living cell microarray consists of an orderly arrangement of cells attached to a solid support such as a glass microscope slide. The chief difficulty of obtaining such arrays is the fabrication of substrates patterned with micro-wells, adhesive spots, or other features to guide orderly cell attachment. Here we report a novel method using woven Nylon mesh to micropattern three-dimensional alginate hydrogel grids on glass slides. The Nylon mesh is both inexpensive and off-the-shelf. By using Nylon mesh we have eliminated any need for lithography, clean room equipment, and microarray printers to generate microarray patterns; thus, this technique can be easily adopted by biological research labs that may lack microfabrication expertise and facilities. We have demonstrated that glass slides micropatterned with hydrogel grids guide the orderly attachment of single fibroblast cells and Schwann cell clusters in microarrays. The fibroblast arrays consisted of 70 microm square compartments at a density of 21,000 compartments per cm(2). The Schwann cell arrays consisted of 100 microm square compartments at a density of 6000 per cm(2). This patterning technique addresses the need for a simple, inexpensive, benchtop method for micro-patterning glass slides and obtaining living cell microarrays.

摘要

活细胞微阵列由附着在固体载体(如玻璃载玻片)上的有序排列的细胞组成。获得此类阵列的主要困难在于制造带有微井、粘附点或其他特征的基底,以指导有序的细胞附着。在这里,我们报告了一种使用编织尼龙网在玻璃载玻片上微图案化三维海藻酸盐水凝胶网格的新方法。尼龙网既便宜又现成。通过使用尼龙网,我们消除了对光刻、洁净室设备和微阵列打印机生成微阵列图案的任何需求;因此,这种技术可以很容易地被缺乏微制造专业知识和设施的生物研究实验室采用。我们已经证明,用水凝胶网格微图案化的玻璃载玻片可以指导成纤维细胞和雪旺细胞簇在微阵列中的有序附着。成纤维细胞阵列由 70 微米见方的隔室组成,密度为每平方厘米 21,000 个隔室。雪旺细胞阵列由 100 微米见方的隔室组成,密度为每平方厘米 6,000 个。这种图案化技术满足了对简单、廉价、台式微图案化玻璃载玻片和获得活细胞微阵列的需求。

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