Literature DB >> 26280226

Phage-mediated counting by the naked eye of miRNA molecules at attomolar concentrations in a Petri dish.

Xin Zhou1, Peng Cao2, Ye Zhu3, Wuguang Lu2, Ning Gu1, Chuanbin Mao3,4.   

Abstract

The ability to count biomolecules such as cancer-biomarker miRNAs with the naked eye is seemingly impossible in molecular diagnostics. Here, we show an ultrasensitive naked-eye-counting strategy for quantifying miRNAs by employing T7 phage-a bacteria-specific virus nanoparticle-as a surrogate. The phage is genetically engineered to become fluorescent and capable of binding a miRNA-capturing gold nanoparticle (GNP) in a one-to-one manner. Target miRNAs crosslink the resultant phage-GNP couple and miRNA-capturing magnetic microparticles, forming a sandwich complex containing equimolar phage and miRNA. The phage is then released from the complex and developed into one macroscopic fluorescent plaque in a Petri dish by plating it in a host bacterial medium. Counting the plaques by the naked eye enables the quantification of miRNAs with detection limits of ∼3 and ∼5 aM for single-target and two-target miRNAs, respectively. This approach offers ultrasensitive and convenient quantification of disease biomarkers by the naked eye.

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Year:  2015        PMID: 26280226      PMCID: PMC4924527          DOI: 10.1038/nmat4377

Source DB:  PubMed          Journal:  Nat Mater        ISSN: 1476-1122            Impact factor:   43.841


  35 in total

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  16 in total

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Review 4.  Encoding activities of non-coding RNAs.

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Review 5.  Enhancement of Photodynamic Cancer Therapy by Physical and Chemical Factors.

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Review 6.  Phage engineering and the evolutionary arms race.

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