微流控
模块化设计
核酸
炸薯条
化学
微流控芯片
纳米技术
计算机科学
材料科学
生物化学
电信
操作系统
作者
Gangpei Cai,Yuxin Huang,Bailiang Chen,Yuemin Shen,Xiaolu Shi,Bo Peng,Shengli Mi,Jiajun Huang
出处
期刊:Talanta
[Elsevier]
日期:2023-04-11
卷期号:259: 124486-124486
被引量:9
标识
DOI:10.1016/j.talanta.2023.124486
摘要
Modular integration of functional components on the chip and increasement in control accuracy through real-time alteration in the force direction of droplets is an effective way to optimize centrifugal microfluidic systems and realize passive components, compact modules, and high-throughput control. Conventional centrifugal microfluidic chips are mainly driven and controlled by centrifugal force and Euler force. The control valves are easily affected by machining precision, making the control unstable. In this study, a novel centrifugal microfluidic system is introduced to improve the freedom and accuracy of chip control while facilitating the design and addition of passive functional components. Furthermore, we modularize the centrifugal microfluidic chip to greatly shorten the period of design and optimization cycle and achieve chip reusability and multi-threaded control. Finally, to verify the feasibility of the modular centrifugal microfluidic chip applied to high-throughput nucleic acid screening, we test the nucleic acid purification and detection colorimetric reactions based on the modular centrifugal microfluidic chip. Among them, Chelex-100 is used to realize the purification of nucleic acid in cell lysate, and the purified solution can realize amplification in the PCR instrument, and the nucleic acid detection results are consistent with the off-chip kit by experimental testing. The system has great flexibility and stability under the acceptable purity of nucleic acid, which indicates that the platform has great potential for large-scale rapid screening applications.
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