{"id":67,"date":"2013-09-16T14:56:52","date_gmt":"2013-09-16T18:56:52","guid":{"rendered":"http:\/\/chemistry.cos.ucf.edu\/dmk-biochemlab\/?page_id=67"},"modified":"2023-02-06T16:30:07","modified_gmt":"2023-02-06T21:30:07","slug":"publications","status":"publish","type":"page","link":"https:\/\/sciences.ucf.edu\/chemistry\/dmk-biochemlab\/publications\/","title":{"rendered":"Publications"},"content":{"rendered":"<h2><a href=\"https:\/\/scholar.google.com\/citations?user=Ywj3EtQAAAAJ&amp;hl=en\">Most updated list of publications<\/a><\/h2>\n<h2>2023<\/h2>\n<h2>2022<\/h2>\n<ol>\n<li>C. A. Nix, I. Nottolini, J. D. Caranto, Y. V. Gerasimova, D. M. Kolpashchikov, E. K. H. Saitta (2022) Championing the Involvement of Practitioners in the Biochemistry Educational Research Process: A Phenomenological View of the Early Stages of Collaborative Action Research. <em>Int. J. Higher Ed.<\/em> 11, 114.<\/li>\n<li><u>M. M. Akhmetova, M. S. Rubel<\/u>, O. S. Afanasenko, D. M. Kolpashchikov* (2022) Barley haplotyping using biplex deoxyribozyme nanomachine.<em> Sensors and Actuators Reports<\/em>, 100125.<\/li>\n<li><u>M. O&#8217;Steen,*<\/u> D. M. Kolpashchikov (2022) A Self-Assembling Split Aptamer Multiplex Assay for SARS-COVID19 and Miniaturization of a Malachite Green DNA-based Aptamer<em>. Sensors and Actuators Reports<\/em>, 100125.<\/li>\n<li>Aliev, T. A., Timralieva, A. A., Kurakina, T. A., Katsuba, K. E., Egorycheva, Y. A., <u>Dubovichenko, M. V.,<\/u> Kutyrev, M. A., Shilovskikh, A. A., Orekhov, N., Kondratyuk, N., Semenov, S. N., Kolpashchikov, D. M., Skorb, E. V.* (2022) Designed assembly and disassembly of DNA in supramolecular structure: from ion regulated nuclear formation and machine learning recognition to running DNA cascade, <em>Nano Select<\/em> &#8211; DOI: 10.1002\/nano.202200092.<\/li>\n<li><u>El-Deeb A. A<\/u>., <u>Zablotskaya S. S.,<\/u> <u>Rubel M. S.,<\/u> <u>Nour M. A. Y.,<\/u> Kozlovskaya L. I., Shtro A. A., Komissarov A. B., Kolpashchikov D. M. (2022) Toward a Home Test for COVID 19 Diagnosis: DNA Machine for Amplification-Free SARS-CoV-2 Detection in Clinical Samples https:\/\/chemistry-europe.onlinelibrary.wiley.com\/doi\/10.1002\/cmdc.202200382<em> ChemMedChem<\/em> &#8211; DOI: doi.org\/10.1002\/cmdc.202200382.<\/li>\n<li><u>Nedorezova D. D, Dubovichenko M. V, Belyaeva E. P, Grigorieva E. D, Peresadina A. V.,<\/u> Kolpashchikov D. M. (2022) Specificity of oligonucleotide gene therapy (OGT) agents. <em>Theranostics,<\/em> 12, 7132-7157.<\/li>\n<li>Gerasimova Y.V., <u>Nedorezova D. D.,<\/u> Kolpashchikov D. M. (2022) Split Light up Aptamers as a Probing Tool for Nucleic Acids, <em>Methods,<\/em> 197, 82-88.<\/li>\n<li><u>Gorbenko D. A.,<\/u> Shkodenko L. A., Rubel M. S., Slita A. V., Nikitina E. V., Martens E. A., Kolpashchikov D. M. (2022) DNA nanomachine for visual detection of structured RNA and double stranded DNA. <em>Chem. Commun.<\/em>, 58, 5395 \u2013 5398.<\/li>\n<li>Drozd V.S., Eldeeb A. A., Kolpashchikov D.M., <u>Nedorezova D. D.<\/u>* (2022) Binary antisense oligonucleotide (biASO) agent for cancer marker-dependent degradation of targeted RNA. <em>Nucleic Acid Therapeutics<\/em> (in press)<\/li>\n<\/ol>\n<h2>2021<\/h2>\n<ol>\n<li><u>de Oliveira A.G.G., Mikhail V. Dubovichenko M.V., ElDeeb A.A., Wanjohi J., Zablotskaya S.,<\/u> Kolpashchikov D. M. (2021) RNA cleaving DNA Thresholder Controlled by Concentrations of miRNA Cancer Marker<em> ChemBioChem,<\/em> 22, 1750-1754. doi: 10.1002\/cbic.202000769<\/li>\n<li><u>Molden T. A.;<\/u> <u>Grillo M. C.,<\/u> Kolpashchikov D. M. (2021) Manufacturing Reusable NAND Logic Gates and Their Initial Circuits for DNA Nanoprocessors. <em>Chemistry &#8211; A European Journal<\/em>. 27, 2421 \u2013 2426.<\/li>\n<\/ol>\n<p style=\"text-align: left\">This paper was chosen as a \u2018Hot paper\u2019. Per editorial policy: \u2018Hot Papers are chosen by the Editors for their importance in a rapidly evolving field of high current interest.\u2019<\/p>\n<ol>\n<li>Kolpashchikov D. M., <u>Spelkov<\/u><u> A. A.<\/u> (2021) Binary (Split) Light-up Aptameric Sensors. <em>Angew. Chem. Int. Ed. Engl.,<\/em> 132, 60, 4988-4999.<\/li>\n<\/ol>\n<h2>2020<\/h2>\n<ol>\n<li>Kovtunov E.A., Shkodenko L. A., <u>Goncharova E.A., Nedorezova D.D.,<\/u> Sidorenko S. V., Koshel E. I., Kolpashchikov D. M (2020) Towards Point of Care Diagnostics: Visual Detection of Meningitis Pathogens Directly from Cerebrospinal Fluid. <em>ChemistrySelect, <\/em>5, 14572 \u201314577.<\/li>\n<li><u>Molden T. A.;<\/u> <u>Niccum C. T.,<\/u> Kolpashchikov D. M. (2020) Cut and Paste for Cancer Treatment: a DNA Nanodevice that cuts out an RNA Marker Sequence to Activate a Therapeutic Function <em>Angewandte Chemie, 59, <\/em>21190 \u201321194.<\/li>\n<\/ol>\n<p>This paper was chosen as a \u2018Hot paper\u2019. Per editorial policy: \u2018Hot Papers are chosen by the Editors for their importance in a rapidly evolving field of high current interest.\u2019<\/p>\n<ol>\n<li><u>Ledezma C. E.,<\/u> <u>Cornett E. M.,<\/u> Kolpashchikov D. M. (2020) Click Chemistry-Based Two-Component System for Efficient Inhibition of Human Immunodeficiency Virus (HIV) Reverse Transcriptase (RT). <em>ACS Omega<\/em>, 5<em>, <\/em>4167-4171.<\/li>\n<li>Foguel M. V., Balcarcel, A. M., Reed, M. A., Calvo-Marzal, P., Gerasimova Y. V., Kolpashchikov D. M., Chumbimuni-Torres K. Y. (2020) MVF Sensor Enables Analysis of Nucleic Acids with Stable Secondary Structures. <em>Electroanalysis<\/em>, 32, 835-841.<\/li>\n<li><u>Spelkov A. A., Goncharova E. A., Savin A. M.,<\/u> Kolpashchikov D. M. (2020) Bifunctional RNA-targeting deoxyribozyme nanodevice as a potential theranostic agent. <em>Chemistry &#8211; A European Journal,<\/em> 26, 3489 \u2013 3493.<\/li>\n<li><u>Nedorezova D. D.,<\/u> Fakhardo A. F., <u>Molden T. A.,<\/u> Kolpashchikov D. M. (2020) Deoxyribozyme-based DNA Machines for Cancer Therapy. <em>ChemBioChem<\/em> 21, 607\u2013611.<\/li>\n<\/ol>\n<h2>2019<\/h2>\n<p>1. Nedorezova D.D., Fakhardo A. F., Molden T. A., Kolpashchikov D. M. (2019)\u00a0 Deoxyribozyme-based DNA Machines for Cancer Therapy. Chembiochem, doi: 10.1002\/cbic.201900525.<\/p>\n<p>2. Kolpashchikov D. M. (2019) Evolution of Hybridization Probes to DNA Machines and Robots. Accounts of Chemical Research. 52, 1949-1956.<\/p>\n<p>3. Mills D. M., Foguel M. V., Martin C. P., Trieu T. T., Kamar O., Calvo-Marzal P., Kolpashchikov D. M., Chumbimuni-Torres K. Y. (2019) Rapid detection of different DNA analytes using a single electrochemical sensor. Sensors and Actuators B: Chemical, DOI: https:\/\/doi.org\/10.1016\/j.snb.2019.04.149.<\/p>\n<p>4. Bakshi S. F., Guz N., Zakharchenko A., Minko S., Kolpashchikov D. M., Katz E. (2019) Towards Nanomaterials for Cancer Theranostics: A System of DNA-Modified Magnetic Nanoparticles for Detection and Suppression of RNA Marker in Cancer Cells. Magnetochemistry, 5, 24.<\/p>\n<p>5. Sun S-C., Dou H-Y., Chuang M-C., Kolpashchikov D. M. (2019) Multi-Labeled Electrochemical Sensor for Cost-Efficient Detection of Single Nucleotide Substitutions in Folded Nucleic Acids. Sensors &amp; Actuators B. Chemical, 287, 569-575.<\/p>\n<p>6. Nedorezova D. D., Fakhardo A. F. Nemirich D. V. Bryushkova E. A., Kolpashchikov D. M. (2019) Towards DNA Nanomachines for Cancer Treatment: Achieving Selective and Efficient Cleavage of Folded RNA. Angew. Chem. Int. Ed. Engl., 2019, 58, 4654-4658.<\/p>\n<p>7. Kikuchi N., Reed A., Gerasimova Y. V., Kolpashchikov D. M. (2019) Split Dapoxyl Aptamer for Sequence-Selective Analysis of NASBA amplicons. Analytical Chemistry, 91, 2667-2671.<\/p>\n<p>8. Lyalina T. A., Goncharova E. A., Prokofeva N. Y., Voroshilina E. S., Kolpashchikov D. M. (2019) A DNA Minimachine for Selective and Sensitive Detection of DNA. Analyst, 144, 416-420.<\/p>\n<h2>2018<\/h2>\n<p>1. Lanchuk Y. V., Ulasevich S. A., Fedotova T. A, Kolpashchikov D. M., and Skorb E.V. (2018) Towards sustainable diagnostics: replacing unstable H2O2 by photoactive TiO2 in testing systems for visible and tangible diagnostics affordable by blind people. RSC Advances, 66, 37735-37739.<\/p>\n<p>2. Karadeema R. J. Stancescu M., Steidl T. P. Bertot, S. C. Kolpashchikov D. M. (2018) The Owl Sensor: a \u2018Fragile\u2019 DNA Nanostructure for Analysis of Single Nucleotide Variations Nanoscale, 10, 10116-10122.<\/p>\n<p>3. Evangelista B. A., Kim Y.-S., Kolpashchikov D. M. (2018) FaptaSyme: a Strategy for Converting a Monomer\/Oligomer Non-Selective to Oligomer-Selective Aptameric Sensors. ChemBioChem 19, 1123 \u20131126.<\/p>\n<p>4. Mills D. M., Martin C. P., Armas S. M., Calvo-Marzal P., Kolpashchikov D. M, Chumbimuni-Torres K. Y. (2018) A universal and label-free impedimetric biosensing platform for discrimination of single nucleotide substitutions in long nucleic acid strands. Biosensors &amp; Bioelectronics. 109, 35-42.<\/p>\n<p>5. Bakshi S. F., Guz N., Zakharchenko A., Deng H., Tumanov A., Woodworth C. D., Minko S., Kolpashchikov D. M., Katz E. (2018) Nanoreactors Based on DNAzyme-Functionalized Magnetic Nanoparticles Activated by Magnetic Field. Nanoscale, 10, 1356\u20131365.<\/p>\n<h2>2017<\/h2>\n<p>1. Fedotova T. A. Kolpashchikov D. M. (2017) Liquid-to-Gel Transition for Visual and Tactile Detection of Biological Analytes. Chem. Commun. (Camb.), 53, 12622 \u2013 12625.<br \/>\nThis paper was featured on the front cover of the journal.<br \/>\n<a href=\"https:\/\/www.chemistryworld.com\/news\/tactile-alternative-to-colour-changes\/3008395.article\">T<\/a><a href=\"https:\/\/www.chemistryworld.com\/news\/tactile-alternative-to-colour-changes\/3008395.article\">his article also was highlighted by Chemistry World, monthly chemistry news magazine published by the Royal Society of Chemistry<\/a><\/p>\n<p>2. Kamar O., Sun S. C., Lin C. H., Chung W. Y., Lee M. S., Liao Y. C., Kolpashchikov D. M., Chuang M. C. (2017) A mutation-resistant deoxyribozyme OR gate for highly selective detection of viral nucleic acids. Chem. Commun. (Camb.), 53, 10592-10595.<\/p>\n<p>3. Bakshi S.F., Guz N., Zakharchenko A., Deng H., Tumanov A., Woodworth C. D., Minko S., Kolpashchikov D. M., Katz E. (2017) Magnetic Field-Activated Sensing of mRNA in Living Cells. Journal of the American Chemical Society, 139, 12117-12120.<\/p>\n<p>4. Smith A., Kolpashchikov D. M. (2017) Divide and Control: Comparison of Split and Switch Hybridization Sensor. ChemistrySelect, 2, 5427-5431.<\/p>\n<p>5. Kikuchi N., Kolpashchikov D. M. (2017) Universal Split Spinach Aptamer (USSA) Probe for Nucleic Acid Analysis and DNA\/RNA Computation. Chem. Commun. (Camb.), 53, 4977-4980.<\/p>\n<p>6. Campbell E. A., Peterson E., Kolpashchikov D. M. (2017) Self-Assembling Molecular Logic Gates Based on DNA Crossover Tiles. ChemPhysChem, 18, 1730-1734.<\/p>\n<p>7. Bengtson H. N., Homolka S., Niemann S., Reis A. J., da Silva P. E. A, Gerasimova Y. V., Kolpashchikov D. M. Rohde K. H. (2017) Multiplex Detection of Extensively Drug Resistant Tuberculosis using Binary Deoxyribozyme Sensors. Biosensors &amp; Bioelectronics, 94, 176-183.<\/p>\n<p>8. Mills D. M. Calvo-Marzal P., Pinzon J. M., Armas S., Kolpashchikov D. M., Chumbimuni-Torres K.Y. (2017) A Single Electrochemical Probe Used for Analysis of Multiple Nucleic Acid Sequences. Electroanalysis, 29, 873\u2013879.<\/p>\n<p>9. Gamella M., Zakharchenko A., Guz N., Masi M., Minko S., Kolpashchikov D. M., Iken H., Poghossian A., Sch\u00f6ning, M. J. Katz E. (2017) DNA Computing Systems Activated by Electrochemically-Triggered DNA Release from a Polymer-Brush-Modified Electrode Array. Electroanalysis, 29, 398\u2013408.<\/p>\n<h2>2016<\/h2>\n<ol>\n<li>Cox A. J., Bengtson, H. N., Gerasimova, Y. V., Rohde K. H., Kolpashchikov D. M. (2016) <a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/full\/10.1002\/cbic.201600438\">DNA Antenna Tile-Associated Deoxyribozyme Sensor with Improved Sensitivity<\/a>. <em>ChemBioChem<\/em>. in press.<\/li>\n<li>Gerasimova Y.V., Kolpashchikov D. M. (2016) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.201603265\/abstract\">Towards a DNA Nanoprocessor: Reusable Tile-Integrated DNA Circuits<\/a>.<em> Angewandte Chemie International Edition Engl<\/em>., 55, 10244-10247.<\/li>\n<li>Kikuchi N.K., Kolpashchikov D.M. (2016) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201600323\/abstract\">Split spinach aptamer for highly selective recognition of DNA and RNA at ambient temperatures<\/a>. <em>ChemBioChem<\/em>, 17, 1589-1592.<\/li>\n<li>Guz N., Fedotova T.A., Fratto B.E., Schlesinger O., Alfonta L., Kolpashchikov D.M., Katz E. (2016) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cphc.201600129\/abstract\">Bioelectronic Interface Connecting Reversible Logic Gates Based on Enzyme and DNA Reactions<\/a>. <em>ChemPhysChem<\/em> 17, 2247-2255.<\/li>\n<li>Stancescu M., Fedotova T. A., Hooyberghs J., Balaeff A., Kolpashchikov D. M. (2016) <a href=\"https:\/\/pubs.acs.org\/doi\/10.1021\/jacs.6b05628\">Non-Equilibrium Hybridization Enables Discrimination of a Point Mutation within 5-40oC<\/a>. Journal of the American Chemical Society, 138, 13465\u201313468.<\/li>\n<li>Cox A. J., Bengtson, H. N., Rohde K. H., Kolpashchikov D. M. (2016) DNA <a href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2016\/CC\/C6CC06889H#!divAbstract\">Nanotechnology for Nucleic Acid Analysis: Multifunctional Molecular DNA Machine for RNA Detection<\/a>. Chem. Commun. (Camb.), 52, 14318-14321.<\/li>\n<\/ol>\n<h2>2015<\/h2>\n<ol>\n<li>Gerasimova Y.V., Yakovchuk P., Dedkova L.M., Hecht S.M., Kolpashchikov D.M. (2015) <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/26289345\">Expedited quantification of genetically modified ribosomal RNA by binary deoxyribozyme sensors<\/a>. RNA, 10, 1834-1843.<\/li>\n<li>\u00a0Mailloux S., Gerasimova Y.V., Guz N., Kolpashchikov D.M., Katz E. (2015) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.201411148\/abstract;jsessionid=29D8F88B4FF11F194ABBA367A393FF9E.f04t03\">Bridging the Two Worlds: A Universal Interface between Enzymatic and DNA Computing Systems <\/a>Angewandte Chemie International Edition Engl., 54, 6562-6566.<\/li>\n<li>\u00a0O\u2019Steen M.R., Cornett E.M., Kolpashchikov D.M. (2015) <a href=\"http:\/\/pubs.rsc.org\/en\/Content\/ArticleLanding\/2015\/CC\/C4CC09283J#!divAbstract\">Nuclease-Containing Media for Reversible Operation of DNA Logic Gates<\/a>. <em>ChemComm., <\/em>51, 1429\u20131431.<\/li>\n<li>\u00a0Gerasimova Y.V., Kolpashchikov D.M. (2015) <a href=\"http:\/\/pubs.rsc.org\/en\/Content\/ArticleLanding\/2015\/CC\/C4CC08241A#!divAbstract\">&#8220;Divide and Control: Split Design of Multi-Input DNA Logic Gates&#8221;<\/a> <em>ChemComm<\/em>., 51, 870\u2013872.<\/li>\n<\/ol>\n<div>\n<h2>2014<\/h2>\n<div>\n<ol>\n<li>Gerasimova Y.V., Kolpashchikov D.M. (2014) <a href=\"http:\/\/pubs.rsc.org\/en\/Content\/ArticleLanding\/2014\/CS\/C4CS00083H#!divAbstract\">Enzyme-assisted target recycling (EATR) for nucleic acid detection<\/a>. <em>Chemical Society Reviews<\/em>, 43, 6405-6438.<\/li>\n<li>\u00a0Bengtson H.B., Kolpashchikov D.M. (2014) A<a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201300657\/abstract\"> Differential Fluorescent Receptor for Nucleic Acid Analysis <\/a><em>ChemBioChem<\/em>, 15, 228-231.<\/li>\n<\/ol>\n<h2>2013<\/h2>\n<div>\n<ol>\n<li>Cornett E.M., O\u2019steen M.R, Kolpashchikov D.M. (2013) <a href=\"http:\/\/www.plosone.org\/article\/info%3Adoi%2F10.1371%2Fjournal.pone.0055919\"><span style=\"color: #000080\">Operating cooperatively (OC) sensor for highly specific recognition of nucleic acids.<\/span><\/a> PLOS one, PLoS ONE 8(2): e55919.<\/li>\n<li>Cornett E.M., Gerasimova Y.V., Kolpashchikov D.M. (2013) <span style=\"color: #000080\"><a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0968089613000503\"><span style=\"color: #000080\">Two-component reagent: an approach to specific covalent inactivation of biopolymers. <\/span><\/a><\/span>Bioorganic &amp; Medicinal Chemistry, 21, 1988\u20131991.<\/li>\n<li>Gerasimova Y.V., Kolpashchikov D.M. (2013) <a href=\"http:\/\/www.sciencedirect.com\/science\/article\/pii\/S0956566312005982\"><span style=\"color: #000080\">Detection of bacterial 16S rRNA using a molecular beacon-based X sensor.<\/span><\/a> Biosensors &amp; Bioelectronics, 41, 386\u2013390.<\/li>\n<li>Cornett E.M., Kolpashchikov D.M.<strong> (<\/strong>2013) <a href=\"http:\/\/link.springer.com\/protocol\/10.1007%2F978-1-62703-535-4_6\"><span style=\"color: #000080\">SNP analysis using a molecular beacon-based operating cooperatively (OC) sensor.<\/span><\/a> <i>Methods in Molecular Biology<\/i>, Nucleic acid detection, Humana press, 1039, 81-86.<\/li>\n<li>\u00a0Gerasimova Y.V., Ballantyne J., Kolpashchikov D.M. <a href=\"http:\/\/link.springer.com\/protocol\/10.1007%2F978-1-62703-535-4_5\"><span style=\"color: #000080\">Detection of SNP-Containing human DNA sequences using a split sensor with universal molecular beacon reporter.<\/span><\/a> <i>Methods in Molecular Biology<\/i>, Nucleic acid detection, Humana press, 2013. 1039, 69-80.<\/li>\n<li>Gerasimova Y.V., Kolpashchikov D.M. (2013) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.201307181\/abstract\"><span style=\"color: #000080\">Folding<\/span> <span style=\"color: #000080\">16S RNA in a signal-producing structure for detection of bacteria<\/span><\/a><span style=\"color: #000080\">.<\/span> <i>Angewandte Chemie International Edition Engl<\/i>. 52. 10586-10588.<\/li>\n<li>Gerasimova Y.V., Cornett E.M., Edwards E., Su X., Rohde K.H. , Kolpashchikov D.M. (2013) <span style=\"color: #000080\"><a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201300471\/abstract\"><span style=\"color: #000080\">Deoxyribozyme Cascade for Visual Detection of Bacterial RNA<\/span><\/a>.<\/span> <i>ChemBioChem<\/i>. 14, in press, DOI: 10.1002\/cbic.201300471.<\/li>\n<li>Labib M., Ghobadloo S.M., Khan N., Kolpashchikov D.M., Berezovski M.V. (2013) <a href=\"http:\/\/pubs.acs.org\/doi\/abs\/10.1021\/ac402416z\"><span style=\"color: #000080\">Four-Way Junction Formation Promoting Ultrasensitive Electrochemical Detection of MicroRNA.<\/span><\/a> <i>Anal Chem\u00a085,\u00a09422\u20139427.<\/i><\/li>\n<\/ol>\n<\/div>\n<h2><strong>\u00a02012<\/strong><\/h2>\n<p>1. Gerasimova Y.V., Kolpashchikov D.M. (2012) <span style=\"color: #000080\"><a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/asia.201100664\/abstract\"><span style=\"color: #000080\">Connectable DNA Logic Gates: OR and XOR logics<\/span><\/a>.<\/span> Chemistry-An Asian Journal, 7, 534-540.<\/p>\n<p>2. Cornett E.M., Campbell E.A., Gulenay G., Peterson E, Bhaskar N, Kolpashchikov D.M. (2012) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.201203708\/abstract\"><span style=\"color: #333399\"><span style=\"color: #000080\">Molecular logic gates for DNA analysis: detection of rifampin resistance in M.tuberculosis DNA.<\/span><\/span><\/a> Angew Chem Int Ed Engl. 51, 9075-9077<\/p>\n<p>3. Kolpashchikov D.M. (2012) <span style=\"color: #000080\"><a href=\"http:\/\/www.hindawi.com\/journals\/scientifica\/2012\/928783\/\"><span style=\"color: #000080\">An Elegant Biosensor Molecular Beacon Probe: Challenges and Recent Solutions. <\/span><\/a><\/span>Scientifica, 2012, ID 928783.<\/p>\n<h2>2011<\/h2>\n<ol>\n<li>Kolpashchikov D.M., Gerasimova Y.V., Khan M.S. (2011) <span style=\"color: #000080\"><a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201100545\/abstract\"><span style=\"color: #000080\">DNA nanotechnology for nucleic acid analysis: DX motif-based sensor<\/span><\/a>.<\/span> ChemBioChem, 12, 2564-2567.<\/li>\n<li>Nguyen C., Grimes J., Gerasimova Y.V., Kolpashchikov D.M. (2011) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/chem.201101987\/abstract\"><span style=\"color: #333399\"><span style=\"color: #000080\">Molecular beacon-based tricomponent probe for SNP analysis in folded nucleic acids.<\/span><\/span><\/a> Chemistry: A European J. 17, 13052-13058.<\/li>\n<\/ol>\n<h2>2010<\/h2>\n<p>1. Gerasimova Y.V., Peck S., Kolpashchikov D.M. (2010) <span style=\"color: #000080\"><a href=\"http:\/\/pubs.rsc.org\/en\/Content\/ArticleLanding\/2010\/CC\/c0cc03248d#!divAbstract\"><span style=\"color: #000080\">Enzyme-Assisted Binary Probe for Sensitive Detection of RNA and DNA.<\/span><\/a> <\/span>Chem Commun. 46: 8761-8763.<\/p>\n<p>2. Grimes J., Gerasimova Y.V.,\u00a0Kolpashchikov D.M. (2010) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.201004475\/abstract\"><span style=\"color: #333399\"><span style=\"color: #000080\">Real-Time SNP Analysis in Secondary Structure-Folded Nucleic Acids.<\/span><\/span><\/a> Angew Chem Int Ed Engl. 49: 8950-8953.<\/p>\n<p>3. Kolpashchikov D.M. (2010) <span style=\"color: #333399\"><a href=\"http:\/\/pubs.acs.org\/doi\/abs\/10.1021\/cr900323b\"><span style=\"color: #333399\"><span style=\"color: #000080\">Binary Probes for Nucleic Acid Analysis.<\/span><\/span><\/a> <\/span>Chem. Rev. 110, 4709-4723.<\/p>\n<p>4. Gerasimova Y.V., Hayson A., Ballantyne, J., Kolpashchikov D.M. (2010) <span style=\"color: #000080\"><a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201000287\/abstract\"><span style=\"color: #000080\">A Single Molecular Beacon Probe is Sufficient for the Analysis of Multiple Nucleic Acid Sequences<\/span><\/a>. <\/span>ChemBioChem, 11, 1762-1768.<\/p>\n<p>5. Lake A., Shang S., Kolpashchikov D.M. (2010) <span style=\"color: #000080\"><a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/anie.200907135\/abstract\"><span style=\"color: #000080\">Molecular Logic Gates Connected via DNA Four Way Junctions. <\/span><\/a><\/span>Angew. Chemie Int. Ed. Engl., 49, 4459-4462.<\/p>\n<p>6. Gerasimova Y.V., Cornett E., Kolpashchikov D.M. (2010) <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/cbic.201000006\/abstract\"><span style=\"color: #333399\"><span style=\"color: #000080\">RNA Cleaving Deoxyribozyme Sensor for Nucleic Acid Analysis: the Limit of Detection.<\/span><\/span><\/a> ChemBioChem, 11, 811-817.<\/p>\n<\/div>\n<\/div>\n","protected":false},"excerpt":{"rendered":"<p>Most updated list of publications 2023 2022 C. A. Nix, I. Nottolini, J. D. Caranto, Y. V. Gerasimova, D. M. Kolpashchikov, E. K. H. Saitta (2022) Championing the Involvement of Practitioners in the Biochemistry Educational Research Process: A Phenomenological View of the Early Stages of Collaborative Action Research. Int. J. Higher Ed. 11, 114. M. 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