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独立于评估的 DNA 片段扩增系统。

Evaluation-independent system for DNA section amplification.

机构信息

Department of Convergence Software, Hallym University, Chuncheon, South Korea.

Bio-IT Research Center, Hallym University, Chuncheon, South Korea.

出版信息

Biomed Eng Online. 2018 Nov 6;17(Suppl 2):150. doi: 10.1186/s12938-018-0580-7.

Abstract

BACKGROUND

In general, the image analysis of nucleic acid for detecting DNA is dependent on the gel documentation system. These experiments may deal with harmful staining agents and are time consuming. To address these issues, real-time polymerase chain reaction (PCR) devices have been developed. The advantages of real-time PCR are its capabilities for real-time diagnosis, improved sensitivity, and digitization of measurement results. However, real-time PCR equipment is still too bulky and expensive for use in small hospitals and laboratories.

METHODS

This paper describes an evaluation-independent real-time PCR system that differs from conventional systems in that it uses a side-illumination optical detection system and a temperature adjustment coefficient for DNA detection. The overall configuration of the evaluation-independent system includes the PCR chip and system hardware and software. The use of the side-illumination method for detection enables the system size to be reduced compared to systems using a typical illumination method. Furthermore, the results of a PCR test are strongly affected by the reaction temperature. Thus, extremely precise control of the temperature of the reaction is needed to obtain accurate results and good reliability. We derived a temperature compensation coefficient that allows us to compensate for the differences between the measured temperature of the negative temperature coefficient (NTC) thermistor sensor and the real temperature of the thermocouple.

RESULTS

Applying the temperature compensation coefficient parameter using the NTC thermistor and using the side-illumination method resulted in an increase in the initial sensor value. The occurrence of the DNA section amplification decreased to 22 cycles from 24 cycles.

CONCLUSIONS

The proposed system showed comparable performance to that of an existing real-time PCR, even with the use of simpler and smaller optical devices.

摘要

背景

一般来说,用于检测 DNA 的核酸图像分析依赖于凝胶文件系统。这些实验可能涉及到有害的染色剂,且耗时。为了解决这些问题,已经开发出了实时聚合酶链反应(PCR)设备。实时 PCR 的优点在于其实时诊断的能力、提高的灵敏度以及测量结果的数字化。然而,实时 PCR 设备对于小型医院和实验室来说仍然过于庞大和昂贵。

方法

本文介绍了一种独立于评估的实时 PCR 系统,该系统与传统系统的不同之处在于它使用了侧向照明光学检测系统和用于 DNA 检测的温度调整系数。独立评估系统的整体配置包括 PCR 芯片和系统硬件和软件。与使用典型照明方法的系统相比,使用侧向照明方法进行检测可使系统尺寸缩小。此外,PCR 测试的结果受到反应温度的强烈影响。因此,为了获得准确的结果和良好的可靠性,需要对反应温度进行极其精确的控制。我们推导出了一个温度补偿系数,该系数允许我们补偿负温度系数(NTC)热敏电阻传感器测量温度与热电偶实际温度之间的差异。

结果

使用 NTC 热敏电阻和侧向照明方法应用温度补偿系数参数后,初始传感器值增加。DNA 部分扩增的发生从 24 个循环减少到 22 个循环。

结论

即使使用更简单、更小的光学器件,所提出的系统也表现出与现有实时 PCR 相当的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56de/6219044/a27b59c3c19c/12938_2018_580_Fig1_HTML.jpg

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