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利用逆转录聚合酶链反应制造振荡式热循环仪以分析犬瘟热病毒

Fabrication of an Oscillating Thermocycler to Analyze the Canine Distemper Virus by Utilizing Reverse Transcription Polymerase Chain Reaction.

作者信息

Chen Jyh-Jian, Lin Zong-Hong

机构信息

Department of Biomechatronics Engineering, National Pingtung University of Science and Technology, Pingtung 91201, Taiwan.

出版信息

Micromachines (Basel). 2022 Apr 12;13(4):600. doi: 10.3390/mi13040600.

Abstract

The reverse transcription-polymerase chain reaction (RT-PCR) has been utilized as an effective tool to diagnose the infectious diseases of viruses. In the present work, the oscillating thermocycler is fabricated and performed to carry out the one-step RT-PCR process successfully. The ribonucleic acid (RNA) mixture is pipetted into the fixed sample volume inside an aluminum reaction block. The sample oscillates the pathway onto the linear motion control system and through the specific RT-PCR heating zones with individual homemade thermal control modules. The present oscillating thermocycler combines the merits of the chamber type and the CF type systems. Before PCR, the reaction chamber moves to the low-temperature zone to complete the RT stage and synthesize the complementary deoxyribonucleic acid (DNA). Next, the low-temperature zone is regulated to the annealing zone. Furthermore, the reactive sample is moved back and forth among three isothermal zones to complete PCR. No extra heating zone is required for the RT stage. The total length of the moving displacement of the chamber is within 100 mm. The miniaturization of the oscillating thermocycler can be expected. In our oscillatory device, the denaturation zone located between the annealing and extension zones is suggested as the appropriate arrangement of the heating blocks. Heat management without thermal cross-talk is easy. Finally, an improved oscillating device is demonstrated to execute the RT-PCR process directly, utilized to amplify the canine distemper virus templates successfully, which could be well applied to a low-cost DNA analysis system in the future.

摘要

逆转录-聚合酶链反应(RT-PCR)已被用作诊断病毒感染性疾病的有效工具。在本研究中,制造了振荡热循环仪并成功进行了一步法RT-PCR过程。将核糖核酸(RNA)混合物移液到铝反应块内固定的样品体积中。样品在直线运动控制系统上振荡通过特定的RT-PCR加热区,并通过各个自制的热控模块。本振荡热循环仪结合了腔室型和CF型系统的优点。在PCR之前,反应腔室移动到低温区以完成RT阶段并合成互补脱氧核糖核酸(DNA)。接下来,将低温区调节到退火区。此外,反应样品在三个等温区之间来回移动以完成PCR。RT阶段不需要额外的加热区。腔室移动位移的总长度在100毫米以内。可以预期振荡热循环仪的小型化。在我们的振荡装置中,位于退火区和延伸区之间的变性区被认为是加热块的合适布置。无热串扰的热管理很容易。最后,展示了一种改进的振荡装置可直接执行RT-PCR过程,成功用于扩增犬瘟热病毒模板,未来可很好地应用于低成本DNA分析系统。

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