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Plastic Polymers for Efficient DNA Microarray Hybridization: Application to Microbiological Diagnostics

机译:用于高效DNA微阵列杂交的塑料聚合物:在微生物学诊断中的应用

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摘要

Fabrication of microarray devices using traditional glass slides is not easily adaptable to integration into microfluidic systems. There is thus a need for the development of polymeric materials showing a high hybridization signal-to-background ratio, enabling sensitive detection of microbial pathogens. We have developed such plastic supports suitable for highly sensitive DNA microarray hybridizations. The proof of concept of this microarray technology was done through the detection of four human respiratory viruses that were amplified and labeled with a fluorescent dye via a sensitive reverse transcriptase PCR (RT-PCR) assay. The performance of the microarray hybridization with plastic supports made of PMMA [poly(methylmethacrylate)]-VSUVT or Zeonor 1060R was compared to that with high-quality glass slide microarrays by using both passive and microfluidic hybridization systems. Specific hybridization signal-to-background ratios comparable to that obtained with high-quality commercial glass slides were achieved with both polymeric substrates. Microarray hybridizations demonstrated an analytical sensitivity equivalent to approximately 100 viral genome copies per RT-PCR, which is at least 100-fold higher than the sensitivities of previously reported DNA hybridizations on plastic supports. Testing of these plastic polymers using a microfluidic microarray hybridization platform also showed results that were comparable to those with glass supports. In conclusion, PMMA-VSUVT and Zeonor 1060R are both suitable for highly sensitive microarray hybridizations.
机译:使用传统的载玻片制造微阵列设备不容易适应集成到微流体系统中。因此,需要开发显示高杂交信噪比的聚合物材料,从而能够灵敏地检测微生物病原体。我们已经开发了适用于高度敏感的DNA微阵列杂交的塑料支持物。通过检测四种人类呼吸道病毒(通过敏感的逆转录酶PCR(RT-PCR)分析扩增并标记了荧光染料),完成了这种微阵列技术的概念验证。通过使用被动和微流体杂交系统,将与由PMMA [聚(甲基丙烯酸甲酯)]-VSUVT或Zeonor 1060R制成的塑料支持物的微阵列杂交性能与与高质量载玻片微阵列的性能进行了比较。两种聚合物底物均可实现与高质量商用载玻片可比的特定杂交信噪比。微阵列杂交显示出相当于每个RT-PCR约100个病毒基因组拷贝的分析灵敏度,比以前报道的在塑料支持物上的DNA杂交的灵敏度高至少100倍。使用微流控微阵列杂交平台对这些塑料聚合物进行的测试也显示出与玻璃载体可比的结果。总之,PMMA-VSUVT和Zeonor 1060R均适用于高灵敏度的微阵列杂交。

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