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Color-Coding of Microchip RT-PCR Test System for SARS-CoV-2 Detection

机译:用于SARS-COV-2检测的Microchip RT-PCR测试系统的颜色编码

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An RT-PCR based microchip test system for the detection of SARS-CoV-2 offers pre-loaded and lyophilized reagents in the microchip. However, the 30- and 48-microwell formats of the microchip being miniaturized and performing 1.2 μl reaction, seek visual attention during sample addition. Therefore, adding colorants as color indicator in the lyophilized matrix in the microchips or adding to sample or master mix can impart not only user-friendliness to the task of liquid handling but also precision, and color-codes for easy identification of multiple kits in the layout of the microchip without compromising PCR data quality. A panel of colorants was screened for their background intensity, spectral inertness towards detection channels of AriaDNATM analyzer, interference with the reporter dyes (FAM, Cy5 and ROX), and visibility of optimal concentration in the microwell. The concentration of the colorant displaying insignificant impact on the quality of the amplification (Ct, fluorescence, and sensitivity) in comparison to no-colorant control was chosen for inclusion in the test kit. Tartrazine, Acid Red, Brilliant Blue and FAST Green colorants lyophilized with the reagents in the SARS-CoV-2 microchips were found to be stable and suitable. Storage of microchips with Fast Green colorant was tested at 40°C, 22°C, 4°C, and -20°C for 70 days and was found to be suitable and compatible with different master mixes available as liquid or lyophilized. Additionally, the microchips pre-loaded with lyophilized reagents in the presence and absence of two colorants Tartrazine and Fast Green were validated with clinical samples of SARS-COV-2. No significant impact of these colorants both intra- and inter-microchips was observed on the Ct and intensity of amplification for the tested samples in comparison to no-colorant control. The data suggested that the tested colorants can be used to color the sample, or the master mix or PCR mix for user-friendly liquid handling in empty microchips. For the microchip with pre-loaded and lyophilized reagents, the colorant can be added to lyophilized mixture for precision liquid handling and color-coding of lyophilized kits in the microchips. The manufacturing quality of the lyophilized microchips can also improve with colorant loaded reagent mix.
机译:用于检测SARS-COV-2的RT-PCR基础的微芯片测试系统提供预加载和微芯片中的冻干试剂。然而,微芯片的30-和48微孔格式小型化和进行1.2μL反应,在样品添加期间寻求视觉注意。因此,在微芯片中的冻干矩阵中添加着色剂作为颜色指示器或添加到样品或主混音可以不仅可以赋予液体处理的任务,而且可以赋予液体处理的任务,以及用于容易识别多个试剂盒的精度和颜色码的用户友好性。微芯片的布局而不影响PCR数据质量。筛选着色剂面板,用于其背景强度,朝着ARIADNATM分析仪的检测通道的光谱惰性,干扰报告染料(FAM,CY5和ROX),以及微孔中最佳浓度的可见性。选择与无色剂对照相比,对放大(CT,荧光和敏感性)的质量显示的着色剂的浓度被选自用于夹在试剂盒中。发现用SARS-COV-2微芯片中的试剂冻干的塔拉鸟,酸红色,亮蓝和快速的绿色着色剂是稳定的,合适的。用快速绿色着色剂储存微芯片在40℃,22℃,4℃和-20℃下测试70天,并发现与液体或冻干的不同主混合物相适合并与不同的主混合物相容。另外,用SARS-COV-2的临床样品验证,在存在和不存在两种着色剂塔拉嗪和快速绿色的情况下预先装载冻干试剂的微芯片。与无色剂控制相比,在测试样品的CT和扩增强度上没有显着影响这些着色剂的内部和微芯片均未观察到。数据表明,测试着色剂可用于为空心微芯片中的用户友好液体处理来梳理样品,或主混合物或PCR混合。对于具有预负载和冻干的试剂的微芯片,可以将着色剂添加到冻干混合物中以进行微芯片中的冻干试剂盒的精密液体处理和颜色编码。冻干微芯片的制造质量还可以通过着色剂负载试剂混合物来改善。

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