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High-Speed DNA Genotyping Using Microfabricated Capillary Array Electrophoresis Chips

机译:使用微型毛细管阵列电泳芯片进行高速DNA基因分型

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Capillary array electrophoresis (CAE) chips have been designed and fabricated with the capacity to rapidly (< 160 s) analyze 12 different samples in parallel. Detection of all lanes with 0.3 s temporal resolution was achieved using a laser-excited confocal-fluorescence scanner. The operation and capabilities of these CAE microdevices were first determined by performing electrophoretic separations of pBR322 MspI DNA samples. Genotyping of HLA-H, a candidate gene for the diagnosis of hereditary hemochromatosis, was then performed to demonstrate the rapid analysis of biologically relevant samples. Two-color multiplex fluorescence detection of HLA-H genotypes was accomplished by prelabeling the standard pBR322 MspI DNA ladder with a red emitting bis-intercalation dye (butyl TOTIN) and on-column labeling of the HIA-H DNA with thiazole orange. This work establishes the feasibility of using CAE chips for high-speed, high-throughput genotyping.
机译:毛细管阵列电泳(CAE)芯片的设计和制造具有快速(<160 s)并行分析12个不同样品的能力。使用激光激发的共聚焦荧光扫描仪可以以0.3 s的时间分辨率检测所有车道。首先通过对pBR322 MspI DNA样品进行电泳分离来确定这些CAE微型设备的操作和功能。然后进行HLA-H(一种遗传性血色素沉着症诊断的候选基因)的基因分型,以证明对生物学相关样品的快速分析。 HLA-H基因型的双色多重荧光检测是通过用发红双嵌入染料(丁基TOTIN)预先标记标准pBR322 MspI DNA阶梯并用噻唑橙在柱上标记HIA-H DNA来完成的。这项工作确定了使用CAE芯片进行高速,高通量基因分型的可行性。

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