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Surface modification of thermoplastics - towards the plastic biochip for high yhroughput screening devices

机译:热塑性塑料的表面改性-面向用于高通量筛选设备的塑料生物芯片

摘要

Microarrays have become one of the most convenient tools for high throughput screening, supporting major advances in genomics and proteomics. Other important applications can be found in medical diagnostics, detection of biothreats, drug discovery, etc. Integration of microarrays with microfluidic devices can be highly advantageous in terms of portability, shorter analysis time and lower consumption of expensive biological analytes. since fabrication of microfluidic devices using traditional materials such as glass is rather expensive, there is great interest in employing polymeric materials as a low cost alternative that is suitable for mass production. A number of commercially available plastic materials were reviewed for this purpose and poly(methylmethacrylate) Zeonor 1060R and Zeonex E48R were identified as promising candidates, for which methods for surface modification and covalent immobilization of DNA oligonucleotides were developed. In addition, we present proof-of-concept plastic-based microarrays with and without integration with microfluidics.
机译:微阵列已成为用于高通量筛选的最便捷的工具之一,支持基因组学和蛋白质组学的重大进步。其他重要应用可以在医学诊断,生物威胁检测,药物发现等方面找到。将微阵列与微流控设备集成在便携性,较短的分析时间和较低的昂贵生物分析物消耗方面可以是非常有利的。由于使用诸如玻璃之类的传统材料制造微流体装置相当昂贵,因此人们对采用聚合物材料作为适合大规模生产的低成本替代方案非常感兴趣。为此目的,审查了许多可商购的塑料材料,并确定聚甲基丙烯酸甲酯Zeonor 1060R和Zeonex E48R是有前途的候选物,为此开发了表面修饰和DNA寡核苷酸共价固定的方法。此外,我们提出了带有或不带有微流体技术的基于概念验证的基于塑料的微阵列。

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