Literature DB >> 20369213

DNA interactions with a Methylene Blue redox indicator depend on the DNA length and are sequence specific.

Elaheh Farjami1, Lilia Clima, Kurt V Gothelf, Elena E Ferapontova.   

Abstract

A DNA molecular beacon approach was used for the analysis of interactions between DNA and Methylene Blue (MB) as a redox indicator of a hybridization event. DNA hairpin structures of different length and guanine (G) content were immobilized onto gold electrodes in their folded states through the alkanethiol linker at the 5'-end. Binding of MB to the folded hairpin DNA was electrochemically studied and compared with binding to the duplex structure formed by hybridization of the hairpin DNA to a complementary DNA strand. Variation of the electrochemical signal from the DNA-MB complex was shown to depend primarily on the DNA length and sequence used: the G-C base pairs were the preferential sites of MB binding in the duplex. For short 20 nts long DNA sequences, the increased electrochemical response from MB bound to the duplex structure was consistent with the increased amount of bound and electrochemically readable MB molecules (i.e. MB molecules that are available for the electron transfer (ET) reaction with the electrode). With longer DNA sequences, the balance between the amounts of the electrochemically readable MB molecules bound to the hairpin DNA and to the hybrid was opposite: a part of the MB molecules bound to the long-sequence DNA duplex seem to be electrochemically mute due to long ET distance. The increasing electrochemical response from MB bound to the short-length DNA hybrid contrasts with the decreasing signal from MB bound to the long-length DNA hybrid and allows an "off"-"on" genosensor development.

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Year:  2010        PMID: 20369213     DOI: 10.1039/c0an00049c

Source DB:  PubMed          Journal:  Analyst        ISSN: 0003-2654            Impact factor:   4.616


  10 in total

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3.  Methylene Blue functionalized carbon nanodots combined with different shape gold nanostructures for sensitive and selective SARS-CoV-2 sensing.

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Journal:  Sens Actuators B Chem       Date:  2022-06-17       Impact factor: 9.221

4.  Longer amplicons provide better sensitivity for electrochemical sensing of viral nucleic acid in water samples using PCB electrodes.

Authors:  Shruti Ahuja; M Santhosh Kumar; Ruchira Nandeshwar; Kiran Kondabagil; Siddharth Tallur
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5.  DNA-Polylactide Modified Biosensor for Electrochemical Determination of the DNA-Drugs and Aptamer-Aflatoxin M1 Interactions.

Authors:  Veronika Stepanova; Vladimir Smolko; Vladimir Gorbatchuk; Ivan Stoikov; Gennady Evtugyn; Tibor Hianik
Journal:  Sensors (Basel)       Date:  2019-11-14       Impact factor: 3.576

6.  Strategies for the preparation of non-amplified and amplified genomic dengue gene samples for electrochemical DNA biosensing applications.

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7.  Single DNA Origami Detection by Nanoimpact Electrochemistry.

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Authors:  Delali K Boccorh; Peter A Macdonald; Colm W Boyle; Andrew J Wain; Leonard E A Berlouis; Alastair W Wark
Journal:  Nanoscale Adv       Date:  2021-09-21

9.  Zepto-molar electrochemical detection of Brucella genome based on gold nanoribbons covered by gold nanoblooms.

Authors:  Amid Rahi; Naghmeh Sattarahmady; Hossein Heli
Journal:  Sci Rep       Date:  2015-12-14       Impact factor: 4.379

10.  Methylene blue covalently attached to single stranded DNA as electroactive label for potential bioassays.

Authors:  Raquel García-González; Agustín Costa-García; M Teresa Fernández-Abedul
Journal:  Sens Actuators B Chem       Date:  2013-10-16       Impact factor: 7.460

  10 in total

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