Highly selective and sensitive electrochemical biosensor for ATP based on the dual strategy integrating the cofactor-dependent enzymatic ligation reaction with self-cleaving DNAzyme-amplified electrochemical detection.
暂无分享,去创建一个
Yu Zhang | Hong Qun Luo | Nian Bing Li | Zhong Feng Gao | Z. Gao | H. Luo | N. Li | J. Lei | Jing Lei Lei | Lu Lu | Jing Cao Si | Yu Zhang | Jinglu Si | Lu Lu | J. Si
[1] Juewen Liu,et al. Accelerated color change of gold nanoparticles assembled by DNAzymes for simple and fast colorimetric Pb2+ detection. , 2004, Journal of the American Chemical Society.
[2] Yingfu Li,et al. An efficient RNA-cleaving DNA enzyme that synchronizes catalysis with fluorescence signaling. , 2003, Journal of the American Chemical Society.
[3] Guo-Li Shen,et al. Graphene-DNAzyme based biosensor for amplified fluorescence "turn-on" detection of Pb2+ with a high selectivity. , 2011, Analytical chemistry.
[4] H. Luo,et al. Probe-label-free electrochemical aptasensor based on methylene blue-anchored graphene oxide amplification. , 2013, Journal of materials chemistry. B.
[5] Andrew Ellington,et al. In vitro selection of an allosteric ribozyme that transduces analytes to amplicons , 1999, Nature Biotechnology.
[6] G. F. Joyce,et al. RNA cleavage by a DNA enzyme with extended chemical functionality. , 2000, Journal of the American Chemical Society.
[7] Juan Xu,et al. A novel electrochemical DNAzyme sensor for the amplified detection of Pb2+ ions. , 2010, Chemical communications.
[8] Jungho Hwang,et al. Real-time monitoring of bioaerosols via cell-lysis by air ion and ATP bioluminescence detection. , 2014, Biosensors & bioelectronics.
[9] Sarah M. Schlemmer,et al. Dead-end ultrafiltration concentration and IMS/ATP-bioluminescence detection of Escherichia coli O157:H7 in recreational water and produce wash. , 2011, Journal of microbiological methods.
[10] P. Okunieff,et al. Cystic Fibrosis Transmembrane Conductance Regulator and Adenosine Triphosphate , 1997, Science.
[11] Bin Liu,et al. Fluorescent detection of ATP based on signaling DNA aptamer attached silica nanoparticles , 2008, Nanotechnology.
[12] Yi Lu,et al. Catalytic and molecular beacons for amplified detection of metal ions and organic molecules with high sensitivity. , 2010, Analytical chemistry.
[13] Weihong Tan,et al. A ligation-triggered DNAzyme cascade for amplified fluorescence detection of biological small molecules with zero-background signal. , 2011, Journal of the American Chemical Society.
[14] Yi Lu,et al. A catalytic beacon sensor for uranium with parts-per-trillion sensitivity and millionfold selectivity , 2007, Proceedings of the National Academy of Sciences.
[15] R R Breaker,et al. A DNA enzyme that cleaves RNA. , 1994, Chemistry & biology.
[16] M. Fadel,et al. Salivary biomass assessed by bioluminescence ATP assay related to (bacterial and somatic) cell counts , 2000, Cell biochemistry and function.
[17] R R Breaker,et al. An amino acid as a cofactor for a catalytic polynucleotide. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[18] Fengshan Yu,et al. Determination of adenosine disodium triphosphate using prulifloxacin-terbium(III) as a fluorescence probe by spectrofluorimetry. , 2008, Analytica chimica acta.
[19] Yi Lu,et al. Metal ion sensors based on DNAzymes and related DNA molecules. , 2011, Annual review of analytical chemistry.
[20] Kevin W Plaxco,et al. Electrochemical detection of parts-per-billion lead via an electrode-bound DNAzyme assembly. , 2007, Journal of the American Chemical Society.
[21] R. A. Deininger,et al. Detection of E. coli in beach water within 1 hour using immunomagnetic separation and ATP bioluminescence. , 2004, Luminescence : the journal of biological and chemical luminescence.
[22] A. Kuroda,et al. Detection of living Salmonella cells using bioluminescence , 2009, Biotechnology Letters.
[23] Kurt V Gothelf,et al. Femtomolar electrochemical detection of DNA targets using metal sulfide nanoparticles. , 2006, Journal of the American Chemical Society.
[24] Entrapment of fluorescence signaling DNA enzymes in sol-gel-derived materials for metal ion sensing. , 2007, Analytical chemistry.
[25] Yan Du,et al. Multifunctional label-free electrochemical biosensor based on an integrated aptamer. , 2008, Analytical chemistry.
[26] Yi Lu,et al. Highly sensitive and selective colorimetric sensors for uranyl (UO2(2+)): development and comparison of labeled and label-free DNAzyme-gold nanoparticle systems. , 2008, Journal of the American Chemical Society.
[27] Kemin Wang,et al. A novel kinase-based ATP assay using molecular beacon. , 2008, Analytical biochemistry.
[28] Hyo il Jung,et al. A microfluidic ATP-bioluminescence sensor for the detection of airborne microbes , 2008 .
[29] Takeharu Nagai,et al. Visualization of ATP levels inside single living cells with fluorescence resonance energy transfer-based genetically encoded indicators , 2009, Proceedings of the National Academy of Sciences.
[30] U. I. Flügge,et al. Determination of low-abundant metabolites in plant extracts by NAD(P)H fluorescence with a microtiter plate reader. , 2000, Analytical biochemistry.
[31] S. Nigam,et al. Genesis and reversal of the ischemic phenotype in epithelial cells. , 2000, The Journal of clinical investigation.
[32] Weihong Tan,et al. Versatile DNAzyme-based amplified biosensing platforms for nucleic acid, protein, and enzyme activity detection. , 2013, Analytical chemistry.
[33] M. Vila,et al. MPTP: a review of its mechanisms of neurotoxicity , 2001, Clinical Neuroscience Research.
[34] G. F. Joyce,et al. A general purpose RNA-cleaving DNA enzyme. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[35] E. Yeung,et al. Monitoring real-time release of ATP from the molluscan central nervous system , 2004, Journal of Neuroscience Methods.
[36] Kemin Wang,et al. A novel sensitive and selective ligation-based ATP assay using a molecular beacon. , 2013, The Analyst.
[37] W. Tan,et al. Engineering a unimolecular DNA-catalytic probe for single lead ion monitoring. , 2009, Journal of the American Chemical Society.
[38] S. Shuman. DNA Ligases: Progress and Prospects* , 2009, The Journal of Biological Chemistry.
[39] Jiyoung Lee,et al. High-throughput detection of spore contamination in food packages and food powders using tiered approach of ATP bioluminescence and real-time PCR , 2012 .
[40] Yi Lu,et al. Abasic site-containing DNAzyme and aptamer for label-free fluorescent detection of Pb(2+) and adenosine with high sensitivity, selectivity, and tunable dynamic range. , 2009, Journal of the American Chemical Society.
[41] Ting Fu,et al. Pyrophosphate-regulated Zn(2+)-dependent DNAzyme activity: an amplified fluorescence sensing strategy for alkaline phosphatase. , 2013, Biosensors & bioelectronics.
[42] Juewen Liu,et al. Functional nucleic acid sensors. , 2009, Chemical reviews.
[43] F. Polticelli,et al. ATP acts as a regulatory effector in modulating structural transitions of cytochrome c: implications for apoptotic activity. , 2009, Biochemistry.
[44] Omowunmi A Sadik,et al. Status of biomolecular recognition using electrochemical techniques. , 2009, Biosensors & bioelectronics.
[45] Yanjun Zhao,et al. Label-free chemiluminescent ATP aptasensor based on graphene oxide and an instantaneous derivatization of guanine bases. , 2014, Biosensors & bioelectronics.
[46] S. Banin,et al. The LiMA technology: measurement of ATP on a nucleic acid testing platform. , 2007, Clinical chemistry.
[47] Zhiwei Zhu,et al. Electrochemical DNAzyme sensor for lead based on amplification of DNA-Au bio-bar codes. , 2008, Analytical chemistry.
[48] Michel Druet,et al. Real-time electrochemical PCR with a DNA intercalating redox probe. , 2011, Analytical chemistry.
[49] Yi Lu,et al. A DNAzyme catalytic beacon sensor for paramagnetic Cu2+ ions in aqueous solution with high sensitivity and selectivity. , 2007, Journal of the American Chemical Society.
[50] Kemin Wang,et al. A sensitive ligase-based ATP electrochemical assay using molecular beacon-like DNA. , 2010, Biosensors & bioelectronics.
[51] R. Bruzzone,et al. Connexin-dependent inter-cellular communication increases invasion and dissemination of Shigella in epithelial cells , 2003, Nature Cell Biology.