新型微流体方法的蛋白质微阵列:最新进展。

Chandra K Dixit, Gerson R Aguirre
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引用次数: 13

摘要

基于微流控技术的微拼接技术可以在有限的微米尺度区域内以高精度对识别元素进行图案化。这种受控的模式使得高度多路复用阵列的发展成为可能。这种阵列技术于2001年初首次推出,具有革命性的微阵列开发和分析物检测的巨大潜力。随后,针对微阵列应用,开发了几种微流控方法。在这篇综述中,我们讨论了这些新的方法和途径,它们利用微流体技术的特性来显著改善微阵列技术的各个物理方面,如增强印迹均匀性,固定化生物分子的稳定性,减少分析时间,降低成本和笨重的仪器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Protein Microarrays with Novel Microfluidic Methods: Current Advances.

Protein Microarrays with Novel Microfluidic Methods: Current Advances.

Protein Microarrays with Novel Microfluidic Methods: Current Advances.

Protein Microarrays with Novel Microfluidic Methods: Current Advances.

Microfluidic-based micromosaic technology has allowed the pattering of recognition elements in restricted micrometer scale areas with high precision. This controlled patterning enabled the development of highly multiplexed arrays multiple analyte detection. This arraying technology was first introduced in the beginning of 2001 and holds tremendous potential to revolutionize microarray development and analyte detection. Later, several microfluidic methods were developed for microarray application. In this review we discuss these novel methods and approaches which leverage the property of microfluidic technologies to significantly improve various physical aspects of microarray technology, such as enhanced imprinting homogeneity, stability of the immobilized biomolecules, decreasing assay times, and reduction of the costs and of the bulky instrumentation.

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来源期刊
自引率
0.00%
发文量
0
审稿时长
11 weeks
期刊介绍: High-Throughput (formerly Microarrays, ISSN 2076-3905) is a multidisciplinary peer-reviewed scientific journal that provides an advanced forum for the publication of studies reporting high-dimensional approaches and developments in Life Sciences, Chemistry and related fields. Our aim is to encourage scientists to publish their experimental and theoretical results based on high-throughput techniques as well as computational and statistical tools for data analysis and interpretation. The full experimental or methodological details must be provided so that the results can be reproduced. There is no restriction on the length of the papers. High-Throughput invites submissions covering several topics, including, but not limited to: Microarrays, DNA Sequencing, RNA Sequencing, Protein Identification and Quantification, Cell-based Approaches, Omics Technologies, Imaging, Bioinformatics, Computational Biology/Chemistry, Statistics, Integrative Omics, Drug Discovery and Development, Microfluidics, Lab-on-a-chip, Data Mining, Databases, Multiplex Assays.
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