Bead-based polymerase chain reaction on a microchip

被引:8
|
作者
Hilton, John P. [1 ]
Nguyen, ThaiHuu [1 ]
Barbu, Mihaela [2 ]
Pei, Renjun [2 ]
Stojanovic, Milan [2 ]
Lin, Qiao [1 ]
机构
[1] Columbia Univ, Dept Mech Engn, New York, NY 10027 USA
[2] Columbia Univ, Dept Med, Div Clin Pharmacol & Expt Therapeut, New York, NY 10032 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
Polymerase chain reaction; Bead; DNA capture; DNA purification; Microfluidics; PHASE DNA AMPLIFICATION; BORDETELLA-PERTUSSIS; MAGNETIC PARTICLES; PCR; CHIP; STREPTAVIDIN; MOLECULES; PATHOGENS; DIAGNOSIS; EMULSION;
D O I
10.1007/s10404-012-0993-8
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We present a bead-based approach to microfluidic polymerase chain reaction (PCR), enabling fluorescent detection and sample conditioning in a single microchamber. Bead-based PCR, while not extensively investigated in microchip format, has been used in a variety of bioanalytical applications in recent years. We leverage the ability of bead-based PCR to accumulate fluorescent labels following DNA amplification to explore a novel DNA detection scheme on a microchip. The microchip uses an integrated microheater and temperature sensor for rapid control of thermal cycling temperatures, while the sample is held in a microchamber fabricated from (poly)dimethylsiloxane and coated with Parylene. The effects of key bead-based PCR parameters, including annealing temperature and concentration of microbeads in the reaction mixture, are studied to achieve optimized device sensitivity and detection time. The device is capable of detecting a synthetically prepared section of the Bordetella pertussis genome in as few as 10 temperature cycles with times as short as 15 min. We then demonstrate the use of the procedure in an integrated device; capturing, amplifying, detecting, and purifying template DNA in a single microfluidic chamber. These results show that this method is an effective method of DNA detection which is easily integrated in a microfluidic device to perform additional steps such as sample pre-conditioning.
引用
收藏
页码:749 / 760
页数:12
相关论文
共 50 条
  • [1] Bead-based polymerase chain reaction on a microchip
    John P. Hilton
    ThaiHuu Nguyen
    Mihaela Barbu
    Renjun Pei
    Milan Stojanovic
    Qiao Lin
    Microfluidics and Nanofluidics, 2012, 13 : 749 - 760
  • [2] Magnetic and electrokinetic manipulations on a microchip device for bead-based immunosensing applications
    Ambrosi, Adriano
    Guix, Maria
    Merkoci, Arben
    ELECTROPHORESIS, 2011, 32 (08) : 861 - 869
  • [3] Microchip electrophoresis and the analysis of polymerase chain reaction products
    Chen, SH
    LC GC NORTH AMERICA, 2002, 20 (02) : 164 - +
  • [4] A bead-based single nucleotide polymorphism (SNP) detection using melting temperature on a microchip
    Pei-Chun Kao
    Shih-Torng Ding
    En-Chung Lin
    Kan-Chien Li
    Lon Wang
    Yen-Wen Lu
    Microfluidics and Nanofluidics, 2014, 17 : 477 - 488
  • [5] Bead-based multiplexing
    Perkel, Jeffrey M.
    SCIENTIST, 2006, 20 (08): : 68 - 68
  • [6] A bead-based single nucleotide polymorphism (SNP) detection using melting temperature on a microchip
    Kao, Pei-Chun
    Ding, Shih-Torng
    Lin, En-Chung
    Li, Kan-Chien
    Wang, Lon
    Lu, Yen-Wen
    MICROFLUIDICS AND NANOFLUIDICS, 2014, 17 (03) : 477 - 488
  • [7] A circular ferrofluid driven microchip for rapid polymerase chain reaction
    Sun, Y.
    Kwok, Y. C.
    Nguyen, N. T.
    LAB ON A CHIP, 2007, 7 (08) : 1012 - 1017
  • [8] Electrokinetically synchronized polymerase chain reaction microchip fabricated in polycarbonate
    Chen, JF
    Wabuyele, M
    Chen, HW
    Patterson, D
    Hupert, M
    Shadpour, H
    Nikitopoulos, D
    Soper, SA
    ANALYTICAL CHEMISTRY, 2005, 77 (02) : 658 - 666
  • [9] Role of LncRNA CASC9 in oral carcinoma and its downstream gene expression and mechanism detected by nanomagnetic bead-based polymerase chain reaction
    Liu, Junjie
    Mu, Hong
    Cheng, Xiangyong
    Yuan, Gangying
    Wang, Qinqin
    Cao, Haotian
    MATERIALS EXPRESS, 2021, 11 (07) : 1017 - 1023
  • [10] Bead-Based Multiplexed Droplet Digital Polymerase Chain Reaction in a Single Tube Using Universal Sequences: An Ultrasensitive, Cross-Reaction-Free, and High-Throughput Strategy
    Gu, Zhejia
    Sun, Tong
    Guo, Qingsheng
    Wang, Yao
    Ge, Yunfei
    Gu, Hongchen
    Xu, Gaolian
    Xu, Hong
    ACS SENSORS, 2022, 7 (09): : 2759 - 2766