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Nanoparticle-based signal generation and amplification in microfluidic devices for bioanalysis

期刊

ANALYST
卷 138, 期 22, 页码 6709-6720

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3an01321a

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资金

  1. National Key Scientific Research Program (973 Program) [2012CB933302]
  2. Shenzhen Key Laboratory Funding Scheme of Shenzhen Municipal Government
  3. General Research Fund of the Hong Kong Special Administrative Region, China [CityU_103312]

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Signal generation and amplification based on nanomaterials and microfluidic techniques have both attracted considerable attention separately due to the demands for ultrasensitive and high-throughput detection of biomolecules. This article reviews the latest development of signal amplification strategies based on nanoparticles for bioanalysis and their integration and applications in microfluidic systems. The applications of nanoparticles in bioanalysis were categorized based on the different approaches of signal amplification, and the microfluidic techniques were summarized based on cell analysis and biomolecule detection with a focus on the integration of nanoparticle-based amplification in microfluidic devices for ultrasensitive bioanalysis. The advantages and limitations of the combination of nanoparticles-based amplification with microfluidic techniques were evaluated, and the possible developments for future research were discussed.

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