Operating Cooperatively (OC) Sensor for Highly Specific Recognition of Nucleic Acids
暂无分享,去创建一个
[1] O. Abdel-Wahab,et al. The role of mutations in epigenetic regulators in myeloid malignancies , 2012, Nature Reviews Cancer.
[2] Dmitry M. Kolpashchikov,et al. Molecular logic gates for DNA analysis: detection of rifampin resistance in M. tuberculosis DNA. , 2012, Angewandte Chemie.
[3] Colin D. Medley,et al. Molecular engineering of DNA: molecular beacons. , 2009, Angewandte Chemie.
[4] Yuandong Zhao,et al. Simultaneous detection of dual single-base mutations by capillary electrophoresis using quantum dot-molecular beacon probe. , 2011, Biosensors & bioelectronics.
[5] S. Hiyari,et al. Dental diagnostics: molecular analysis of oral biofilms. , 2011, Journal of dental hygiene : JDH.
[6] Daniel M Bader,et al. A beginners guide to SNP calling from high-throughput DNA-sequencing data , 2012, Human Genetics.
[7] T. Imato,et al. AFM-imaging diagnosis method for single nucleotide polymorphism using molecular beacon DNA as an intramolecular ligation template of target DNA and a viewable indicator. , 2012, Analytical sciences : the international journal of the Japan Society for Analytical Chemistry.
[8] Darrell Chandler,et al. Saliva‐Based Diagnostics Using 16S rRNA Microarrays and Microfluidics , 2007, Annals of the New York Academy of Sciences.
[9] Á. Carracedo,et al. SNPs as Supplements in Simple Kinship Analysis or as Core Markers in Distant Pairwise Relationship Tests: When Do SNPs Add Value or Replace Well-Established and Powerful STR Tests? , 2012, Transfusion Medicine and Hemotherapy.
[10] M. Frank-Kamenetskii,et al. Two sides of the coin: affinity and specificity of nucleic acid interactions. , 2004, Trends in biochemical sciences.
[11] Z. Herceg,et al. Detection of cancer‐specific epigenomic changes in biofluids: Powerful tools in biomarker discovery and application , 2012, Molecular oncology.
[12] S. Semancik,et al. Signal-on electrochemical Y or junction probe detection of nucleic acid. , 2012, Chemical communications.
[13] Xiaofeng Jiang,et al. The method of single-nucleotide variations detection using capillary electrophoresis and molecular beacons , 2009, Molecular Biology Reports.
[14] A. Nissan,et al. Detection of endogenous K-ras mRNA in living cells at a single base resolution by a PNA molecular beacon. , 2012, Molecular pharmaceutics.
[15] Sanjay Tyagi,et al. Real-time assays with molecular beacons and other fluorescent nucleic acid hybridization probes. , 2006, Clinica chimica acta; international journal of clinical chemistry.
[16] Sanjay Tyagi,et al. Molecular Beacons: Probes that Fluoresce upon Hybridization , 1996, Nature Biotechnology.
[17] G. Turecki,et al. Sensitive periods in epigenetics: bringing us closer to complex behavioral phenotypes. , 2012, Epigenomics.
[18] K. Browne. Sequence-specific, self-reporting hairpin inversion probes. , 2005, Journal of the American Chemical Society.
[19] Darrell P. Chandler,et al. Sequence versus Structure for the Direct Detection of 16S rRNA on Planar Oligonucleotide Microarrays , 2003, Applied and Environmental Microbiology.
[20] G. Bao,et al. Nanostructured Probes for RNA Detection in Living Cells , 2006, Annals of Biomedical Engineering.
[21] Bo Tang,et al. Simultaneous detection of intracellular tumor mRNA with bi-color imaging based on a gold nanoparticle/molecular beacon. , 2011, Chemistry.
[22] J. Slodkowska,et al. Digital pathology in personalized cancer therapy. , 2012, Folia histochemica et cytobiologica.
[23] Guonan Chen,et al. Efficient detection of secondary structure folded nucleic acids related to Alzheimer's disease based on junction probes. , 2012, Biosensors & bioelectronics.
[24] Yulia V Gerasimova,et al. Detection of bacterial 16S rRNA using a molecular beacon-based X sensor. , 2013, Biosensors & bioelectronics.
[25] Douglas R Call,et al. Amplicon secondary structure prevents target hybridization to oligonucleotide microarrays. , 2004, Biosensors & bioelectronics.
[26] Kun Wang,et al. Molecular beacon-based fluorescence biosensor for the detection of gene fragment and PCR amplification products related to chronic myelogenous leukemia , 2011, Analytical and Bioanalytical Chemistry.
[27] D. Kolpashchikov,et al. Real-time SNP analysis in secondary-structure-folded nucleic acids. , 2010, Angewandte Chemie.
[28] H. Jo,et al. Target accessibility and signal specificity in live-cell detection of BMP-4 mRNA using molecular beacons , 2008, Nucleic acids research.
[29] A. Maruyama,et al. A polycation-chaperoned in-stem molecular beacon system. , 2012, Chemical communications.
[30] H. Schatten,et al. Epigenetic changes associated with oocyte aging , 2012, Science China Life Sciences.
[31] D. Kolpashchikov,et al. Molecular-beacon-based tricomponent probe for SNP analysis in folded nucleic acids. , 2011, Chemistry.
[32] Weihong Tan,et al. Superior structure stability and selectivity of hairpin nucleic acid probes with an l-DNA stem , 2007, Nucleic acids research.
[33] Dmitry M Kolpashchikov,et al. A binary DNA probe for highly specific nucleic Acid recognition. , 2006, Journal of the American Chemical Society.
[34] N. Seeman,et al. DNA double-crossover molecules. , 1993, Biochemistry.
[35] J. Hopkins,et al. Molecular beacons as probes of RNA unfolding under native conditions , 2005, Nucleic acids research.
[36] Á. Carracedo,et al. A multiplex assay with 52 single nucleotide polymorphisms for human identification , 2006, Electrophoresis.
[37] D. Kolpashchikov,et al. A Single Molecular Beacon Probe Is Sufficient for the Analysis of Multiple Nucleic Acid Sequences , 2010, Chembiochem : a European journal of chemical biology.
[38] Dmitry M. Kolpashchikov,et al. An Elegant Biosensor Molecular Beacon Probe: Challenges and Recent Solutions , 2012, Scientifica.
[39] Man Yu. Somatic mitochondrial DNA mutations in human cancers. , 2012, Advances in clinical chemistry.
[40] W. Pansegrau,et al. Adhesion determinants of the Streptococcus species , 2009, Microbial biotechnology.
[41] Chun-Yu Hsu,et al. Molecular beacon-based half-adder and half-subtractor. , 2012, Chemical communications.
[42] Yulia V Gerasimova,et al. DNA Nanotechnology for Nucleic Acid Analysis: DX Motif‐Based Sensor , 2011, Chembiochem : a European journal of chemical biology.
[43] Wei-Lung Tseng,et al. A room-temperature adenosine-based molecular beacon for highly sensitive detection of nucleic acids. , 2012, Chemical communications.
[44] A. Martí,et al. Recent trends in molecular beacon design and applications , 2012, Analytical and Bioanalytical Chemistry.