Lab-on-a-chip devices for microbial monitoring and detection in water

被引:17
|
作者
Liu, W.-T.
Lay, C.
机构
[1] Inst Microelect, Singapore 117685, Singapore
[2] Natl Univ Singapore, Dept Environm Sci & Engn, Singapore 117576, Singapore
来源
SUSTAINABLE AND SAFE WATER SUPPLIES | 2007年 / 7卷 / 02期
关键词
DNA microarray; flow cytometry; immunofluorescent assay; lab-on-a-chip; pathogen;
D O I
10.2166/ws.2007.051
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
According to the World Health Organization, diarrhoea is one of the four main diseases caused by environmental exposure and represents the most common water related disease. In developing countries, the access to safe drinking water is still utopian. Moreover, water is not an endless resource anymore; therefore alternative water supplies need to be investigated. Since water is becoming a worldwide issue, there is an increasing effort to ensure its quality and safety through the development of rapid and effective system of diagnostic which could be applied even in remote places in poor countries. The possibility to diagnose on site and in real time an infectious agent is one of the most challenging goals in lab-on-a-chip technologies. This review describes and discusses the potentialities of microfluidic technology in this new emerging field.
引用
收藏
页码:165 / 172
页数:8
相关论文
共 50 条
  • [41] Additive manufacturing of Lab-on-a-Chip devices: Promises and Challenges
    Zhu, Feng
    Macdonald, Niall P.
    Cooper, Jonathan M.
    Wlodkowic, Donald
    [J]. MICRO/NANO MATERIALS, DEVICES, AND SYSTEMS, 2013, 8923
  • [42] NANO PARTICLE FILTRATION MODULE FOR LAB-ON-A-CHIP DEVICES
    Shen, C.
    Pham, H. T. M.
    Sarro, P. M.
    [J]. MEMS 2010: 23RD IEEE INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS, TECHNICAL DIGEST, 2010, : 1067 - 1070
  • [43] Polymer Nanofiber Deposition in Lab-on-a-Chip Devices By Electrospinning
    Pardy, Tamas
    Joemaa, Rauno
    Ender, Ferenc
    Rang, Toomas
    Hegedus, Kristof
    Balogh-Weiser, Diana
    [J]. 2020 17TH BIENNIAL BALTIC ELECTRONICS CONFERENCE (BEC), 2020,
  • [44] Chitosan to electroaddress biological components in lab-on-a-chip devices
    Liu, Y.
    Shi, X. -W.
    Kim, E.
    Robinson, L. M.
    Nye, C. K.
    Ghodssi, R.
    Rubloff, G. W.
    Bentley, W. E.
    Payne, G. F.
    [J]. CARBOHYDRATE POLYMERS, 2011, 84 (02) : 704 - 708
  • [45] Single cells as experimentation units in lab-on-a-chip devices
    Le Gac, Severine
    van den Berg, Albert
    [J]. TRENDS IN BIOTECHNOLOGY, 2010, 28 (02) : 55 - 62
  • [46] Roll-to-roll fabricated lab-on-a-chip devices
    Vig, Asger Laurberg
    Makela, Tapio
    Majander, Paivi
    Lambertini, Vito
    Ahopelto, Jouni
    Kristensen, Andrs
    [J]. JOURNAL OF MICROMECHANICS AND MICROENGINEERING, 2011, 21 (03)
  • [47] Fabrication of Platinum Microstructures for Sensors and Lab-on-a-Chip devices
    Luitz, Manuel
    Lunzer, Markus
    Mader, Markus
    Kotz-Helmer, Frederik
    Rapp, Bastian E.
    [J]. MICROFLUIDICS, BIOMEMS, AND MEDICAL MICROSYSTEMS XX, 2022, 11955
  • [48] Integrated optical devices for lab-on-a-chip biosensing applications
    Estevez, M-Carmen
    Alvarez, Mar
    Lechuga, Laura M.
    [J]. LASER & PHOTONICS REVIEWS, 2012, 6 (04) : 463 - 487
  • [49] Deceptively simple bonding for cheap lab-on-a-chip devices
    不详
    [J]. TCE, 2006, (780): : 19 - 19
  • [50] MODELING OF LAB-ON-A-CHIP DEVICES FOR FOOD QUALITY ANALYSIS
    Atalay, Yegermal Tesfaw
    Vermeir, Steven
    Witters, Daan
    Vergauwe, Nicolas
    Verboven, Pieter
    Nicolai, Bart M.
    Lammertyn, Jeroen
    [J]. 6TH INTERNATIONAL CONFERENCE ON SIMULATION AND MODELLING IN THE FOOD AND BIO-INDUSTRY (FOODSIM 2010), 2010, : 163 - 166