4.7 Article

Integrated paper-based detection chip with nucleic acid extraction and amplification for automatic and sensitive pathogen detection

期刊

SENSORS AND ACTUATORS B-CHEMICAL
卷 261, 期 -, 页码 288-296

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2018.01.165

关键词

Pathogen identification; Molecular diagnostics; Sample pretreatment; Nucleic acid amplification; Lateral flow strip

资金

  1. National Natural Science Foundation of China [21475048]
  2. National Science Fund for Distinguished Young Scholars of Guangdong Province [2014A030306008]
  3. Project of Guangzhou Science and Technology Plan [201508020003]
  4. Program of the Pearl River Young Talents of Science and Technology in Guangzhou [2013J2200021]
  5. Special Support Program of Guangdong Province [2014TQ01R599]
  6. Outstanding Young Teacher Training Program of Guangdong Province [H52015004]

向作者/读者索取更多资源

Molecular diagnostics with high sensitivity and specificity are essential for the early detection of infectious diseases caused by pathogens. However, it has not reached its full potential in point-of-care diagnosis because of the technically demanding and labor-intensive methods, which limit its accessibility in low-resource areas. Herein, we propose an integrated genetic analysis platform that fully automates sample pretreatment, nucleic acid amplification and endpoint detection. Magnetic silica beads were employed to isolate DNA from lysate to simplify the device design and operation. A helical continuous flow polymerase chain reaction (PCR) reactor was divided into three sections with different temperatures to perform the denaturing, annealing and extension phases of the PCR. Additionally, the final detection was performed using a nucleic acid paper-based detection chip, and the results were automatically analyzed by software. Using this device, as few as 104 CFU/mL of Listeria monocytogenes can be detected. This device prevents cross-contamination, greatly reduces the number of operation steps, and improves detection efficiency. Further, it has the potential to be utilized for rapid decision making related to pathogen containment and to eliminate the requirements for end-users with professional skills and specialized laboratory facilities. (C) 2018 Elsevier B.V. All rights reserved.

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