State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Economical Forest Cultivation and Utilization of 2011 Collaborative Innovation Center in Hunan Province, Hunan Key Laboratory of Biomedical Nanomaterials and Devices, Hunan University of Technology, Zhuzhou 412007, China.
J Nanosci Nanotechnol. 2020 Apr 1;20(4):2165-2170. doi: 10.1166/jnn.2020.17328.
The high-throughput nucleic acid detection system provides a good solution for detecting nucleic acids more safely, rapidly and accurately, which greatly improves the detection efficiency. Highthroughput nucleic acid detection mainly includes three steps: signal acquisition, signal amplification and signal processing. Therefore, obtaining the purified nucleic acid is the primary task of the nucleic acid detection, and the quality of the nucleic acid has a significant impact on results. In this paper, we employed the magnetic nanoparticle technology for extracting nucleic acids based on the platform of large liquid handling workstation and designed a matching vibrating module. The involved steps of core method, magnetic bead nucleic acid extraction technology, are mainly concerned with the cell lysis, nucleic acid binding, nucleic acid purification and magnetic particles elution. During the extraction process, specific temperature is required for the lysis and elution. It was shown that the temperature control part designed in this paper has the reliable stability, high accuracy by using the incremental proportion-integration-differentiation (PID) algorithm, with the control accuracy up to ±0.5 °C. The temperature regulating time is about 90 s, which can meet the experimental requirements. Besides, the vibrating uniformity of this module was further verified by protein concentration test, which proved that the module has the excellent performance and can be consistent with the experimental indictors of the nucleic acid extraction.
高通量核酸检测系统为更安全、快速和准确地检测核酸提供了良好的解决方案,大大提高了检测效率。高通量核酸检测主要包括三个步骤:信号采集、信号放大和信号处理。因此,获得纯化的核酸是核酸检测的首要任务,核酸的质量对结果有显著影响。在本文中,我们基于大型液体处理工作站平台,采用磁性纳米粒子技术提取核酸,并设计了匹配的振动模块。核心方法、磁珠核酸提取技术的主要步骤涉及细胞裂解、核酸结合、核酸纯化和磁性颗粒洗脱。在提取过程中,需要特定的温度进行裂解和洗脱。结果表明,本文设计的温度控制部分采用增量比例积分微分(PID)算法,具有可靠的稳定性和高精度,控制精度可达±0.5°C。温度调节时间约为 90 s,可满足实验要求。此外,通过蛋白质浓度测试进一步验证了该模块的振动均匀性,证明了该模块具有优异的性能,可以与核酸提取的实验指标一致。