4.8 Article

2′-Fluoro ribonucleic acid modified DNA dual-probe sensing strategy for enzyme-amplified electrochemical detection of double-strand DNA of PML/RARα related fusion gene

期刊

BIOSENSORS & BIOELECTRONICS
卷 112, 期 -, 页码 170-176

出版社

ELSEVIER ADVANCED TECHNOLOGY
DOI: 10.1016/j.bios.2018.04.012

关键词

2 '-Fluoro ribonucleic acid; Dual-probe sensing strategy; Enzyme-amplified electrochemical detection; Double-strand DNA; PML/RAR alpha

资金

  1. Natural Science Foundation of China [21775023, 21705021]
  2. Social Development Guiding Programs of Fujian Province of China [2015Y0059, 2017Y0023]
  3. Training Project of Young Backbone Talents in Health and Family Planning System of Fujian Province of China [2017-ZQN-85]
  4. Technology-Benefiting-People Program of Xiamen City of China [3502Z20164001]
  5. Joint Funds for the Innovation of Science and Technology, Fujian Province [2016Y9055]

向作者/读者索取更多资源

In the study, a novel sensing strategy based on dual-probe mode, which involved two groups of 2'-fluoro ribonucleic acid (2'-F RNA) modified probes, was designed for the detection of synthetic target double-strand DNA (dsDNA) of PML/RAR alpha fusion genes in APL. And each pair of probes contained a thiolated capture probe (Cl or C2) immobilized on one of electrode surfaces in the dual-channel electrochemical biosensor and a biotinylated reporter probe (R1 or R2). The two groups of 2'-F RNA modified probes were separately complementary with the corresponding strand (Sa or Sb) from target dsDNA in order to prevent renaturation of target dsDNA. Through flanking target dsDNA, two sandwitch complexes (C1/Sa/R1 and C2/Sb/R2) were separately shaped by capture probes (Cl and C2) and free reporter probes (R1 and R2) in hybridization solution on the surfaces of different electrodes after the thermal denaturation. The biotin-modified enzyme which produced the measurable electrochemical current signal was localized to the surface by affinity binding between biotin with streptavidin. Under the optimal condition, the biosensor was able to detect 84 fM target dsDNA and showed a good specificity in PBS hybridization solution. Otherwise, the investigations of the specificity and sensitivity of the biosensor were carried out further in the mixed hybridization solution containing different kinds of mismatch sequences as interference background. It can be seen that under a certain interference background, the method still exhibited excellent selectivity and specificity for the discrimination between the fully-complementary and the mismatch sequences. The results of our research laid a good basis of further detection research in practical samples.

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