Rotary Valve-Assisted Fluidic System Coupling with CRISPR/Cas12a for Fully Integrated Nucleic Acid Detection

被引:35
|
作者
Wu, Hui [1 ]
Qian, Siwenjie [1 ]
Peng, Cheng [2 ]
Wang, Xiaofu [2 ]
Wang, Tingzhang [3 ]
Zhong, Xiaoping [3 ]
Chen, Yanju [1 ]
Yang, Qunqing [4 ]
Xu, Junfeng [2 ]
Wu, Jian [1 ,5 ]
机构
[1] Zhejiang Univ, Coll Biosyst Engn & Food Sci, Hangzhou 310058, Peoples R China
[2] Zhejiang Acad Agr Sci, State Key Lab Managing Biot & Chem Threats Qual &, Hangzhou 310021, Peoples R China
[3] Zhejiang Inst Microbiol, Key Lab Microbiol Technol & Bioinformat Zhejiang, Hangzhou 310012, Peoples R China
[4] Zhejiang Police Vocat Acad, Dept Secur & Precaut, Hangzhou 310018, Peoples R China
[5] Minist Agr & Rural Affairs, Key Lab Site Proc Equipment Agr Prod, Hangzhou 310058, Peoples R China
基金
中国国家自然科学基金;
关键词
nucleic acid detection; rotary valve; Vibrio parahaemolyticus; loop-mediated isothermal amplification; CRISPR/Cas12a; ISOTHERMAL AMPLIFICATION LAMP; PURIFICATION; PLATFORM; FOOD;
D O I
10.1021/acssensors.1c01468
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Of late, many nucleic acid analysis platforms have been established, but there is still room for constructing integrated nucleic acid detection systems with high nucleic acid extraction efficiency, low detection cost, and convenient operation. In this work, a simple rotary valve-assisted fluidic chip coupling with CRISPR/Cas12a was established to achieve fully integrated nucleic acid detection. All of the detection reagents were prestored on the fluidic chip. With the aid of the rotary valve and syringe, the liquid flow and stirring can be precisely controlled. The nucleic acid extraction, loop-mediated isothermal amplification (LAMP) reaction, and CRISPR detection could be completed in 80 min. A clean reservoir and an air reservoir on the fluidic chip were designed to effectively remove the remaining ethanol. With Vibrio parahaemolyticus as the targets, the detection sensitivity of the fluidic chip could reach 3.1 x 10(1) copies of target DNA per reaction. A positive sample could be sensitively detected by CRISPR/Cas12a to produce a green fluorescent signal, while a negative sample generated no fluorescent signal. Further, the fluidic chip was successfully applied for detection of spiked shrimp samples, which showed the same detection sensitivity. A great feasibility for real-sample detection was showed by the fluidic chip. The proposed detection platform did not need expensive centrifugal instruments or pumps, which displayed its potential to become a powerful tool for food safety analysis and clinical diagnostics, especially in the resource-limited areas.
引用
收藏
页码:4048 / 4056
页数:9
相关论文
共 50 条
  • [21] Platinum nanoparticles (PtNPs)-based CRISPR/Cas12a platform for detection of nucleic acid and protein in clinical samples
    Liang, Jiajie
    Teng, Peijun
    Hu, Liangshan
    He, Guanbo
    Song, Qifang
    Zhang, Ying
    Peng, Bin
    Li, Gan
    Xiao, Wei
    Cao, Donglin
    Tang, Yong
    ANALYTICA CHIMICA ACTA, 2022, 1225
  • [22] An automated nucleic acid detection platform using digital microfluidics with an optimized Cas12a system
    Zhen Sun
    Kang-Feng Lin
    Ze-Hang Zhao
    Yang Wang
    Xin-Xin Hong
    Jian-Guang Guo
    Qing-Yu Ruan
    Lian-Yu Lu
    Xiao Li
    Rui Zhang
    Chao-Yong Yang
    Bo-An Li
    Science China Chemistry, 2022, 65 : 630 - 640
  • [23] CRISPR-Cas12a-assisted nucleic acid detection (vol 4, 20, 2018)
    Li, Shi-Yuan
    Cheng, Qiu-Xiang
    Wang, Jing-Man
    Li, Xiao-Yan
    Zhang, Zi-Long
    Gao, Song
    Cao, Rui-Bing
    Zhao, Guo-Ping
    Wang, Jin
    CELL DISCOVERY, 2019, 5 (1)
  • [24] Rapid nucleic acid detection of Escherichia coli O157:H7 based on CRISPR/ Cas12a system
    Wang, Shujuan
    Fan, Yiling
    Feng, Zhen
    Song, Minghui
    Li, Qiongqiong
    Jiang, Bo
    Qin, Feng
    Liu, Hao
    Lan, Lefu
    Yang, Meicheng
    FOOD CONTROL, 2021, 130
  • [25] An automated nucleic acid detection platform using digital microfluidics with an optimized Cas12a system
    Zhen Sun
    KangFeng Lin
    ZeHang Zhao
    Yang Wang
    XinXin Hong
    JianGuang Guo
    QingYu Ruan
    LianYu Lu
    Xiao Li
    Rui Zhang
    ChaoYong Yang
    BoAn Li
    Science China(Chemistry), 2022, (03) : 630 - 640
  • [26] An automated nucleic acid detection platform using digital microfluidics with an optimized Cas12a system
    Zhen Sun
    Kang-Feng Lin
    Ze-Hang Zhao
    Yang Wang
    Xin-Xin Hong
    Jian-Guang Guo
    Qing-Yu Ruan
    Lian-Yu Lu
    Xiao Li
    Rui Zhang
    Chao-Yong Yang
    Bo-An Li
    Science China(Chemistry), 2022, 65 (03) : 630 - 640
  • [27] An automated nucleic acid detection platform using digital microfluidics with an optimized Cas12a system
    Sun, Zhen
    Lin, Kang-Feng
    Zhao, Ze-Hang
    Wang, Yang
    Hong, Xin-Xin
    Guo, Jian-Guang
    Ruan, Qing-Yu
    Lu, Lian-Yu
    Li, Xiao
    Zhang, Rui
    Yang, Chao-Yong
    Li, Bo-An
    SCIENCE CHINA-CHEMISTRY, 2022, 65 (03) : 630 - 640
  • [28] Modularization of dual recognized CRISPR/Cas12a system for the detection of Staphylococcus aureus assisted by hydrazone chemistry
    Yang, Jingyi
    Zhao, Yining
    Qian, Lelin
    Yu, Ying
    Zhang, Yuan
    Zhang, Juan
    JOURNAL OF HAZARDOUS MATERIALS, 2024, 476
  • [29] A phage amplification-assisted SEA-CRISPR/Cas12a system for viable bacteria detection
    Xiao, Xiangyang
    Zhang, Chenlu
    Zhang, Li
    Zuo, Chen
    Wu, Wei
    Cheng, Fumei
    Wu, Di
    Xie, Guoming
    Mao, Xiang
    Yang, Yujun
    JOURNAL OF MATERIALS CHEMISTRY B, 2025, 13 (04) : 1372 - 1382
  • [30] Convenient Nucleic Acid Detection Method and Point-of-Care Detection Device Based on CRISPR/Cas12a Molecular Diagnosis
    Hu Fei
    Liu Yanfei
    Li Xichen
    Cao Minghang
    Peng Niancai
    Zhang Zhenxi
    CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2022, 49 (15):