Bioanalytical applications of isothermal nucleic acid amplification techniques.
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[1] Fredrik Dahl,et al. Circle-to-circle amplification for precise and sensitive DNA analysis. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[2] D. Walt,et al. Microsphere-based rolling circle amplification microarray for the detection of DNA and proteins in a single assay. , 2009, Analytical chemistry.
[3] Jian-hui Jiang,et al. Homogeneous label-free genotyping of single nucleotide polymorphism using ligation-mediated strand displacement amplification with DNAzyme-based chemiluminescence detection. , 2011, Analytical chemistry.
[4] C. Eckert,et al. Evaluation of a Loop-Mediated Isothermal Amplification Assay for Diagnosis of Clostridium difficile Infections , 2011, Journal of Clinical Microbiology.
[5] A. Ivaska,et al. Voltammetric and amperometric determination of ascorbic acid at a chemically modified carbon fibre microelectrode. , 1993, Talanta.
[6] Kelvin J. Liu,et al. A surface topography assisted droplet manipulation platform for biomarker detection and pathogen identification. , 2011, Lab on a chip.
[7] C Garmendia,et al. Highly efficient DNA synthesis by the phage phi 29 DNA polymerase , 1989 .
[8] H. Nakagawa,et al. Loop‐mediated isothermal amplification method for detection of human papillomavirus type 6, 11, 16, and 18 , 2007, Journal of medical virology.
[9] P. Wangemann,et al. Microarray-based comparison of three amplification methods for nanogram amounts of total RNA. , 2005, American journal of physiology. Cell physiology.
[10] S. Piccoli,et al. Rolling Circle Amplification Improves Sensitivity in Multiplex Immunoassays on Microspheres , 2002 .
[11] A. Syvänen,et al. Multiple displacement amplification to create a long‐lasting source of DNA for genetic studies , 2006, Human mutation.
[12] Antje J Baeumner,et al. PMMA biosensor for nucleic acids with integrated mixer and electrochemical detection. , 2009, Biosensors & bioelectronics.
[13] Yang Song,et al. Nicking enzyme-assisted biosensor for Salmonella enteritidis detection based on fluorescence resonance energy transfer. , 2014, Biosensors & bioelectronics.
[14] J P Landers,et al. Infrared-mediated thermocycling for ultrafast polymerase chain reaction amplification of DNA. , 1998, Analytical chemistry.
[15] Peter J. Asiello,et al. Miniaturized isothermal nucleic acid amplification, a review. , 2011, Lab on a chip.
[16] Takashi Kawana,et al. Tolerance of loop-mediated isothermal amplification to a culture medium and biological substances. , 2007, Journal of biochemical and biophysical methods.
[17] Eivind Hovig,et al. Real-time nucleic acid sequence-based amplification in nanoliter volumes. , 2004, Analytical chemistry.
[18] K. Hanspers,et al. Increased DNA microarray hybridization specificity using sscDNA targets , 2005, BMC Genomics.
[19] Y. Lau,et al. Specific, Sensitive, and Rapid Diagnosis of Active Toxoplasmosis by a Loop-Mediated Isothermal Amplification Method Using Blood Samples from Patients , 2010, Journal of Clinical Microbiology.
[20] A. Nejati-Javaremi,et al. Whole genome amplification: Use of advanced isothermal method , 2010 .
[21] Yi Guan,et al. Sensitive and inexpensive molecular test for falciparum malaria: detecting Plasmodium falciparum DNA directly from heat-treated blood by loop-mediated isothermal amplification. , 2006, Clinical chemistry.
[22] S. Kingsmore,et al. Comprehensive human genome amplification using multiple displacement amplification , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[23] H. Kong,et al. Application of isothermal helicase-dependent amplification with a disposable detection device in a simple sensitive stool test for toxigenic Clostridium difficile. , 2008, The Journal of molecular diagnostics : JMD.
[24] Sha-Sha Wang,et al. Homogeneous real-time detection of single-nucleotide polymorphisms by strand displacement amplification on the BD ProbeTec ET system. , 2003, Clinical chemistry.
[25] Investigation of the molecular mechanism of ICAN, a novel gene amplification method. , 2007, Journal of biochemistry.
[26] S. Kingsmore,et al. Multiplexed protein profiling on microarrays by rolling-circle amplification , 2002, Nature Biotechnology.
[27] M. Komiyama,et al. Sensitive RNA detection by combining three-way junction formation and primer generation-rolling circle amplification , 2011, Nucleic acids research.
[28] T. Notomi,et al. Rapid diagnosis of H5N1 avian influenza virus infection by newly developed influenza H5 hemagglutinin gene-specific loop-mediated isothermal amplification method. , 2007, Journal of virological methods.
[29] J. Inácio,et al. Differentiation of Cryptococcus neoformans varieties and Cryptococcus gattii using CAP59-based loop-mediated isothermal DNA amplification. , 2010, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[30] Hong Liang,et al. Label-free colorimetric aptasensor based on nicking enzyme assisted signal amplification and DNAzyme amplification for highly sensitive detection of protein. , 2013, Analytical chemistry.
[31] Hai-Qing Gong,et al. Microfluidic devices harboring unsealed reactors for real-time isothermal helicase-dependent amplification , 2009, Microfluidics and nanofluidics.
[32] Mingqin Chen,et al. Label-free colorimetric assay for base excision repair enzyme activity based on nicking enzyme assisted signal amplification. , 2014, Biosensors & bioelectronics.
[33] Jie Zhou,et al. Isothermal amplified detection of DNA and RNA. , 2014, Molecular bioSystems.
[34] Hao Wang,et al. Strategy for molecular beacon binding readout: separating molecular recognition element and signal reporter. , 2009, Analytical chemistry.
[35] T. Notomi,et al. Rapid sexing of water buffalo (Bubalus bubalis) embryos using loop-mediated isothermal amplification. , 2006, Theriogenology.
[36] Kemin Wang,et al. Pyrene-excimer probes based on the hybridization chain reaction for the detection of nucleic acids in complex biological fluids. , 2011, Angewandte Chemie.
[37] Zhaochu Yang,et al. Compatible immuno-NASBA LOC device for quantitative detection of waterborne pathogens: design and validation. , 2012, Lab on a chip.
[38] Guonan Chen,et al. A rolling circle amplification-based DNA machine for miRNA screening coupling catalytic hairpin assembly with DNAzyme formation. , 2014, Chemical communications.
[39] E. Matovu,et al. African trypanosomiasis: Sensitive and rapid detection of the sub-genus Trypanozoon by loop-mediated isothermal amplification (LAMP) of parasite DNA , 2007, International Journal for Parasitology.
[40] Carl T Wittwer,et al. Plastic versus glass capillaries for rapid-cycle PCR. , 2008, BioTechniques.
[41] Joonhyung Lee,et al. Diffractometric detection of proteins using microbead-based rolling circle amplification. , 2010, Analytical chemistry.
[42] Daniel Evanko,et al. Hybridization chain reaction , 2004, Nature Methods.
[43] D. Shank,et al. Isothermal in vitro amplification of DNA by a restriction enzyme/DNA polymerase system. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[44] B. Deiman,et al. Characteristics and applications of nucleic acid sequence-based amplification (NASBA) , 2002, Molecular biotechnology.
[45] O. Strohmeier,et al. Development of a Panel of Recombinase Polymerase Amplification Assays for Detection of Biothreat Agents , 2013, Journal of Clinical Microbiology.
[46] Anne Kopf-Sill,et al. Novel isothermal, linear nucleic acid amplification systems for highly multiplexed applications. , 2005, Clinical chemistry.
[47] J. Ueda,et al. Real-time loop-mediated isothermal amplification for the CaMV-35S promoter as a screening method for genetically modified organisms , 2004 .
[48] Bertrand Lemieux,et al. Identification of Staphylococcus aureus and Determination of Methicillin Resistance Directly from Positive Blood Cultures by Isothermal Amplification and a Disposable Detection Device , 2008, Journal of Clinical Microbiology.
[49] Varshal K. Davé,et al. Signal amplification by rolling circle amplification on DNA microarrays. , 2001, Nucleic acids research.
[50] C. Fan,et al. Highly sensitive fluorescence assay of DNA methyltransferase activity via methylation-sensitive cleavage coupled with nicking enzyme-assisted signal amplification. , 2013, Biosensors & bioelectronics.
[51] Mobile and accurate detection system for infection by the 2009 pandemic influenza A (H1N1) virus with a pocket‐warmer reverse‐transcriptase loop‐mediated isothermal amplification , 2011, Journal of medical virology.
[52] Ola Söderberg,et al. In situ detection and genotyping of individual mRNA molecules , 2010, Nature Methods.
[53] Manfred Weidmann,et al. Recombinase polymerase amplification assay for rapid detection of Rift Valley fever virus. , 2012, Journal of clinical virology : the official publication of the Pan American Society for Clinical Virology.
[54] F. Judson,et al. Evaluation of a Strand Displacement Amplification Assay (BD ProbeTec-SDA) for Detection of Neisseria gonorrhoeae in Urine Specimens , 2002, Journal of Clinical Microbiology.
[55] Frank F Bier,et al. Helicase dependent OnChip-amplification and its use in multiplex pathogen detection. , 2009, Clinica chimica acta; international journal of clinical chemistry.
[56] Joseph Wang. Electrochemical nucleic acid biosensors , 2002 .
[57] Kozaburo Hayashi,et al. Loop-Mediated Isothermal Amplification for Direct Detection of Mycobacterium tuberculosis Complex, M. avium, and M. intracellulare in Sputum Samples , 2003, Journal of Clinical Microbiology.
[58] C. Fuller,et al. TempliPhi, phi29 DNA polymerase based rolling circle amplification of templates for DNA sequencing. , 2002, BioTechniques.
[59] T. Horii,et al. Rapid detection of fluoroquinolone resistance by isothermal chimeric primer-initiated amplification of nucleic acids from clinical isolates of Neisseria gonorrhoeae. , 2006, Journal of microbiological methods.
[60] T. Kirikae,et al. Loop-mediated isothermal amplification assays for identification of antiseptic- and methicillin-resistant Staphylococcus aureus. , 2011, Journal of microbiological methods.
[61] U. Landegren,et al. In situ genotyping individual DNA molecules by target-primed rolling-circle amplification of padlock probes , 2004, Nature Methods.
[62] R. Hubert,et al. Whole genome amplification from a single cell: implications for genetic analysis. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[63] Canquan Zhou,et al. Mutation and haplotype analysis for Duchenne muscular dystrophy by single cell multiple displacement amplification. , 2007, Molecular human reproduction.
[64] G. Walker,et al. Strand displacement amplification--an isothermal, in vitro DNA amplification technique. , 1992, Nucleic acids research.
[65] Wenwan Zhong,et al. Exponential strand-displacement amplification for detection of microRNAs. , 2014, Analytical chemistry.
[66] Colin D. Medley,et al. Molecular engineering of DNA: molecular beacons. , 2009, Angewandte Chemie.
[67] Y. Chai,et al. Naked eye detection of trace cancer biomarkers based on biobarcode and enzyme-assisted DNA recycling hybrid amplifications. , 2014, Biosensors & bioelectronics.
[68] I-Ming Hsing,et al. Triggering hairpin-free chain-branching growth of fluorescent DNA dendrimers for nonlinear hybridization chain reaction. , 2014, Journal of the American Chemical Society.
[69] Chad A Mirkin,et al. Nanostructures in biodiagnostics. , 2005, Chemical reviews.
[70] J. Compton,et al. Nucleic acid sequence-based amplification , 1991, Nature.
[71] Feng Li,et al. Enzyme-free and ultrasensitive electrochemical detection of nucleic acids by target catalyzed hairpin assembly followed with hybridization chain reaction. , 2013, Biosensors & bioelectronics.
[72] G. Shen,et al. DNA encapsulating liposome based rolling circle amplification immunoassay as a versatile platform for ultrasensitive detection of protein. , 2009, Analytical chemistry.
[73] H. Kong,et al. Multiple strategies to improve sensitivity, speed and robustness of isothermal nucleic acid amplification for rapid pathogen detection , 2011, BMC biotechnology.
[74] Chun-yang Zhang,et al. Sensitive detection of DNA methyltransferase using hairpin probe-based primer generation rolling circle amplification-induced chemiluminescence. , 2013, Analytical chemistry.
[75] P. Craw,et al. Isothermal nucleic acid amplification technologies for point-of-care diagnostics: a critical review. , 2012, Lab on a chip.
[76] Zhiqiang Gao,et al. The development of electrochemical assays for microRNAs , 2014 .
[77] G. S. de Hoog,et al. Molecular identification of Penicillium marneffei using rolling circle amplification , 2011, Mycoses.
[78] R. Richards-Kortum,et al. A paper and plastic device for performing recombinase polymerase amplification of HIV DNA. , 2012, Lab on a chip.
[79] Da Xing,et al. Highly sensitive protein detection based on aptamer probe and isothermal nicking enzyme assisted fluorescence signal amplification. , 2010, Chemical communications.
[80] J. Tucker,et al. Detection of DNA point mutations and mRNA expression levels by rolling circle amplification in individual cells , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[81] T. Notomi,et al. Isolation of single-stranded DNA from loop-mediated isothermal amplification products. , 2002, Biochemical and biophysical research communications.
[82] Robert M. Dirks,et al. Triggered amplification by hybridization chain reaction. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[83] Yan Xu,et al. Helicase‐dependent isothermal DNA amplification , 2004, EMBO reports.
[84] Bryan Lincoln,et al. Integrated microfluidic tmRNA purification and real-time NASBA device for molecular diagnostics. , 2008, Lab on a chip.
[85] R. Pemberton,et al. A comparison of 1-naphthyl phosphate and 4 aminophenyl phosphate as enzyme substrates for use with a screen-printed amperometric immunosensor for progesterone in cows' milk. , 1999, Biosensors & bioelectronics.
[86] Eun Jeong Cho,et al. Using a deoxyribozyme ligase and rolling circle amplification to detect a non-nucleic acid analyte, ATP. , 2005, Journal of the American Chemical Society.
[87] Roland Zengerle,et al. Microfluidic lab-on-a-foil for nucleic acid analysis based on isothermal recombinase polymerase amplification (RPA). , 2010, Lab on a chip.
[88] Takehiko Kitamori,et al. Microbead-based rolling circle amplification in a microchip for sensitive DNA detection. , 2010, Lab on a chip.
[89] Juan Dong,et al. Amplified detection of nucleic acid by G-quadruplex based hybridization chain reaction. , 2012, Biosensors & bioelectronics.
[90] Y. Mori,et al. Loop-mediated isothermal amplification (LAMP): a rapid, accurate, and cost-effective diagnostic method for infectious diseases , 2009, Journal of Infection and Chemotherapy.
[91] H. Ju,et al. Cascade signal amplification strategy for subattomolar protein detection by rolling circle amplification and quantum dots tagging. , 2010, Analytical chemistry.
[92] P. Klapper,et al. Reliability of Nucleic Acid Amplification Methods for Detection of Chlamydia trachomatis in Urine: Results of the First International Collaborative Quality Control Study among 96 Laboratories , 2003, Journal of Clinical Microbiology.
[93] A. Pérez-García,et al. Multiple displacement amplification, a powerful tool for molecular genetic analysis of powdery mildew fungi , 2007, Current Genetics.
[94] Guonan Chen,et al. Nicking enzyme based homogeneous aptasensors for amplification detection of protein. , 2012, Chemical communications.
[95] Da Xing,et al. Sensitive and homogeneous protein detection based on target-triggered aptamer hairpin switch and nicking enzyme assisted fluorescence signal amplification. , 2012, Analytical chemistry.
[96] Anna Coll,et al. A molecular beacon-based real time NASBA assay for detection of Listeria monocytogenes in food products: role of target mRNA secondary structure on NASBA design. , 2007, Journal of microbiological methods.
[97] Jiye Shi,et al. Hybridization chain reaction amplification of microRNA detection with a tetrahedral DNA nanostructure-based electrochemical biosensor. , 2014, Analytical chemistry.
[98] U. Landegren,et al. Signal amplification of padlock probes by rolling circle replication. , 1998, Nucleic acids research.
[99] R. Pohl,et al. Synthesis and photophysical properties of biaryl-substituted nucleos(t)ides. Polymerase synthesis of DNA probes bearing solvatochromic and pH-sensitive dual fluorescent and 19F NMR labels. , 2012, The Journal of organic chemistry.
[100] Zhiqiang Gao,et al. A highly sensitive plasmonic DNA assay based on triangular silver nanoprism etching. , 2014, ACS nano.
[101] S O'Malley,et al. Detection of multiple allergen-specific IgEs on microarrays by immunoassay with rolling circle amplification. , 2000, Clinical chemistry.
[102] Caifeng Ding,et al. Cascade signal amplification strategy for the detection of cancer cells by rolling circle amplification and nanoparticles tagging. , 2012, Chemical communications.
[103] Robert E. Johnson,et al. Nucleic Acid Amplification Tests for Diagnosis of Neisseria gonorrhoeae Oropharyngeal Infections , 2009, Journal of Clinical Microbiology.
[104] M. Herrler,et al. Linear mRNA amplification from as little as 5 ng total RNA for global gene expression analysis. , 2004, BioTechniques.
[105] M. Ali,et al. Colorimetric sensing by using allosteric-DNAzyme-coupled rolling circle amplification and a peptide nucleic acid-organic dye probe. , 2009, Angewandte Chemie.
[106] Arica A Lubin,et al. Continuous, real-time monitoring of cocaine in undiluted blood serum via a microfluidic, electrochemical aptamer-based sensor. , 2009, Journal of the American Chemical Society.
[107] Antje J. Baeumner,et al. Human pathogenic Cryptosporidium species bioanalytical detection method with single oocyst detection capability , 2008, Analytical and bioanalytical chemistry.
[108] G. Shen,et al. Aptamer-based rolling circle amplification: a platform for electrochemical detection of protein. , 2007, Analytical chemistry.
[109] C. Burge,et al. Most mammalian mRNAs are conserved targets of microRNAs. , 2008, Genome research.
[110] R. Zengerle,et al. Towards a “Sample-In, Answer-Out” Point-of-Care Platform for Nucleic Acid Extraction and Amplification: Using an HPV E6/E7 mRNA Model System , 2011, Journal of oncology.
[111] H. Kong,et al. Development of a novel one-tube isothermal reverse transcription thermophilic helicase-dependent amplification platform for rapid RNA detection. , 2007, The Journal of molecular diagnostics : JMD.
[112] Olaf Piepenburg,et al. DNA Detection Using Recombination Proteins , 2006, PLoS biology.
[113] F. Galán,et al. Preimplantation genetic diagnosis of Marfan syndrome using multiple displacement amplification. , 2006, Fertility and sterility.
[114] Zhiqiang Gao,et al. Voltammetric Determination of Dopamine in a Mixture of Dopamine and Ascorbic Acid at a Deactivated Polythiophene Film Modified Electrode , 1998 .
[115] Chun-yang Zhang,et al. Sensitive detection of nucleic acids with rolling circle amplification and surface-enhanced Raman scattering spectroscopy. , 2010, Analytical chemistry.
[116] D. Wells,et al. Comprehensive chromosomal analysis of human preimplantation embryos using whole genome amplification and single cell comparative genomic hybridization. , 2000, Molecular human reproduction.
[117] G. Walker,et al. DNA detection by strand displacement amplification and fluorescence polarization with signal enhancement using a DNA binding protein. , 1996, Nucleic acids research.
[118] Pete Moore,et al. PCR: Replicating success , 2005, Nature.
[119] C. Yang,et al. A T7 exonuclease-assisted cyclic enzymatic amplification method coupled with rolling circle amplification: a dual-amplification strategy for sensitive and selective microRNA detection. , 2014, Chemical communications.
[120] E. Isogai,et al. Detection of Salmonella invA by isothermal and chimeric primer-initiated amplification of nucleic acids (ICAN) in Zambia. , 2005, Comparative immunology, microbiology and infectious diseases.
[121] Pengfei Dai,et al. Signal-to-noise ratio enhancement of silicon nanowires biosensor with rolling circle amplification. , 2013, Nano letters.
[122] R. Collins,et al. Comparison of nucleic acid-based detection of avian influenza H5N1 with virus isolation. , 2003, Biochemical and biophysical research communications.
[123] C. Fan,et al. Ultrasensitive and selective detection of nicotinamide adenine dinucleotide by target-triggered ligation-rolling circle amplification. , 2012, Chemical communications.
[124] Angelika Niemz,et al. Isothermal DNA amplification coupled with DNA nanosphere-based colorimetric detection. , 2005, Analytical chemistry.
[125] Vladimir Makarov,et al. Two methods of whole-genome amplification enable accurate genotyping across a 2320-SNP linkage panel. , 2004, Genome research.
[126] T. Notomi,et al. Use of Loop-Mediated Isothermal Amplification of the IS900 Sequence for Rapid Detection of Cultured Mycobacterium avium subsp. paratuberculosis , 2003, Journal of Clinical Microbiology.
[127] T. Yoshikawa,et al. Direct detection of human herpesvirus 6 DNA in serum by variant specific loop-mediated isothermal amplification in hematopoietic stem cell transplant recipients. , 2010, Journal of virological methods.
[128] Eun Jeong Cho,et al. Real-time rolling circle amplification for protein detection. , 2007, Analytical chemistry.
[129] Brian G. Scrivens,et al. Strand displacement amplification and homogeneous real-time detection incorporated in a second-generation DNA probe system, BDProbeTecET. , 1999, Clinical chemistry.
[130] D. van Strijp,et al. A one-tube quantitative HIV-1 RNA NASBA nucleic acid amplification assay using electrochemiluminescent (ECL) labelled probes. , 1994, Journal of virological methods.
[131] K. Sermon,et al. Whole-genome multiple displacement amplification from single cells , 2006, Nature Protocols.
[132] M. Fojta,et al. Aminophenyl- and nitrophenyl-labeled nucleoside triphosphates: synthesis, enzymatic incorporation, and electrochemical detection. , 2008, Angewandte Chemie.
[133] Shusheng Zhang,et al. Fluorescence detection for DNA using hybridization chain reaction with enzyme-amplification. , 2010, Chemical communications.
[134] Catherine A. Wakeman,et al. Real-time molecular beacon NASBA reveals hblC expression from Bacillus spp. in milk. , 2003, Biochemical and biophysical research communications.
[135] Jaephil Do,et al. An integrated disposable device for DNA extraction and helicase dependent amplification , 2010, Biomedical microdevices.
[136] Qin Chen,et al. One new method of nucleic acid amplification—Loop-mediated isothermal amplification of DNA , 2008, Virologica Sinica.
[137] T. Notomi,et al. Loop-mediated isothermal amplification of DNA. , 2000, Nucleic acids research.
[138] Wenwan Zhong,et al. Typing of multiple single-nucleotide polymorphisms by a microsphere-based rolling circle amplification assay. , 2007, Analytical chemistry.
[139] Phyllida Roe,et al. Integration of DNA ligation and rolling circle amplification for the homogeneous, end-point detection of single nucleotide polymorphisms. , 2002, Nucleic acids research.
[140] M. Stojanović,et al. Aptamer-based folding fluorescent sensor for cocaine. , 2001, Journal of the American Chemical Society.
[141] F. Hufert,et al. A new approach for diagnosis of bovine coronavirus using a reverse transcription recombinase polymerase amplification assay , 2013, Journal of Virological Methods.
[142] Ehsan Aryan,et al. A novel and more sensitive loop-mediated isothermal amplification assay targeting IS6110 for detection of Mycobacterium tuberculosis complex. , 2010, Microbiological research.
[143] V. Mohan,et al. The Influence of Antisense Oligonucleotide-induced RNA Structure on Escherichia coli RNase H1 Activity* , 1997, The Journal of Biological Chemistry.
[144] Takashi Kawana,et al. Rapid Diagnosis of Herpes Simplex Virus Infection by a Loop-Mediated Isothermal Amplification Method , 2004, Journal of Clinical Microbiology.
[145] Kemin Wang,et al. Enzyme-free colorimetric detection of DNA by using gold nanoparticles and hybridization chain reaction amplification. , 2013, Analytical chemistry.
[146] S. Howorka,et al. Synthesis and enzymatic incorporation of modified deoxyuridine triphosphates. , 2009, Organic & biomolecular chemistry.
[147] W. Carpay,et al. Principles of quantitation of viral loads using nucleic acid sequence-based amplification in combination with homogeneous detection using molecular beacons. , 2002, Nucleic acids research.
[148] Shingo Inoue,et al. Real-Time Reverse Transcription Loop-Mediated Isothermal Amplification for Rapid Detection of West Nile Virus , 2004, Journal of Clinical Microbiology.
[149] H. Allgayer,et al. Multiple Displacement Amplification Enables Large-Scale Clonal Analysis following Retroviral Gene Therapy , 2007, Journal of Virology.
[150] Y. Hayashizaki,et al. Optimization of turn-back primers in isothermal amplification , 2011, Nucleic acids research.
[151] A. Fire,et al. Rolling replication of short DNA circles. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[152] C. Meyers,et al. Simultaneously sensitive detection of multiple miRNAs based on a strand displacement amplification. , 2013, Chemical communications.
[153] Christopher J Easley,et al. Isothermal DNA amplification in bioanalysis: strategies and applications. , 2011, Bioanalysis.
[154] P. Lizardi,et al. Mutation detection and single-molecule counting using isothermal rolling-circle amplification , 1998, Nature Genetics.
[155] K. Voelkerding,et al. Expanded instrument comparison of amplicon DNA melting analysis for mutation scanning and genotyping. , 2007, Clinical chemistry.
[156] T. Notomi,et al. A simple method for the detection of measles virus genome by loop‐mediated isothermal amplification (LAMP) , 2005, Journal of medical virology.
[157] Zhike He,et al. An ultrasensitive biosensor for DNA detection based on hybridization chain reaction coupled with the efficient quenching of a ruthenium complex to CdTe quantum dots. , 2013, Chemical communications.
[158] Zhengping Li,et al. Highly sensitive determination of microRNA using target-primed and branched rolling-circle amplification. , 2009, Angewandte Chemie.
[159] Chunhai Fan,et al. A dumbbell probe-mediated rolling circle amplification strategy for highly sensitive microRNA detection , 2010, Nucleic acids research.
[160] Jian-hui Jiang,et al. Ultrasensitive electrochemical DNA detection based on dual amplification of circular strand-displacement polymerase reaction and hybridization chain reaction. , 2013, Biosensors & bioelectronics.