国家高技术研究发展计划(863)资助项目(2006AA020701).
This work was supported by a grant from The National High Technology Research and Development Program of China (2006AA020701).
在低成本的聚甲基丙烯酸甲酯(PMMA)电泳芯片上,利用双通道共聚焦激光诱导荧光检测系统实现了单链DNA快速高效的分离检测.选用0.8 mm厚度的PMMA薄片加工微管道,一方面降低了检测限,另一方面提高了散热性能.通过线性聚丙烯酰胺筛分胶液以及使用纤维素衍生物对微管道表面进行动态修饰等条件的优化,芯片完成了高分辨率、高重现性的短串联重复序列(STR)等位基因的快速分型检测.两个STR位点D13S317 和CSF1PO的等位基因分型标准物(allelic ladder)和实际样本的PCR扩增产物均在3 min内达到了基线分离,表明低成本的PMMA电泳芯片在法医学及临床医学领域的基因分析方面具有良好的发展潜能.
A novel method for high-performance and high-resolution separation and detection of single-stranded DNA based on low-cost plastic microchips using electrophoresis apparatus equipped with dual wavelength confocal fluorescence detection have been developed. High-quality microchannels are fabricated on a thin poly (methyl methacrylate) (PMMA) plastic sheet (0.8 mm), ensuring superior limits of detection and good dissipation of Joule heat. A reproducible allelic profiling assay for the analysis of short tandem repeat (STR) was developed using replaceable denaturing linear polyacrylamide as the sieving matrix and cellulose derivates as adsorptive modifiers to suppress nonspecific adsorption of DNA samples to the PMMA surfaces. Under optimal conditions, all fragments of the STR allelic ladders of the D13S317 and CSF1PO loci as well as PCR-amplified samples from individuals can be separated unambiguously within 180 s. These results demonstrates the potential of plastic microchips for low-cost genetic analysis.
杨茜,熊 强,姜成涛,李彩霞,孙爱梅,KEITH MITCHELSON,邢婉丽,叶 健,程京.基于低成本聚甲基丙烯酸甲酯(PMMA)电泳芯片的微型DNA分析仪[J].生物化学与生物物理进展,2009,36(4):506-511
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