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Recent Advances in DNA Microarray Technology: an Overview on Production Strategies and Detection Methods

机译:DNA微阵列技术的最新进展:生产策略和检测方法概述

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摘要

Over the past decades, there was a huge effort in molecular diagnostic science for developing fast and multi-analysis assays. Thanks to the advances in sequencing of the human genome and all protein encoded, new technologies for diagnosis have been developed. Among the various technological solutions for diagnostic applications, the microarray technique attracted the attention of a wide range of research groups and industries. Microarrays are power methodology for the measurements of gene expression, bacterial/viral species identification, and mutation detection. The microarray capacity of a parallel and high-throughput monitoring of biomolecules triggered important applications in medical research, as well as in drug resistance and pharmacogenomics, together with the development of sensing applications for molecular diagnostics. The fabrication techniques today on the market, such as spotting, nanostamping, and photolithography, have been here described, as well as the most recent processes for an effective surface functionalization, aimed to a proper and reliable microarray printing. The detection strategies have been discussed as well.
机译:在过去的几十年中,分子诊断科学在开发快速和多种分析方法方面付出了巨大的努力。由于人类基因组和所有编码蛋白质的测序技术的进步,已经开发了用于诊断的新技术。在用于诊断应用的各种技术解决方案中,微阵列技术吸引了众多研究团体和行业的关注。微阵列是用于基因表达,细菌/病毒种类鉴定和突变检测的有效方法。生物分子的并行和高通量监测的微阵列能力触发了医学研究,耐药性和药物基因组学的重要应用,以及分子诊断的传感应用的发展。此处已经描述了当今市场上的制造技术,例如点样,纳米压印和光刻,以及旨在进行适当且可靠的微阵列打印的有效表面功能化的最新工艺。还讨论了检测策略。

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