Advances in detection of fastidious bacteria: From microscopic observation to molecular biosensors
暂无分享,去创建一个
Michael R Hamblin | M. Hamblin | M. Guardia | B. Baradaran | A. Mokhtarzadeh | M. Hasanzadeh | J. Mosafer | Ahmad Mobed | M. Agazadeh | M. Rezaee
[1] Mohammad Hasanzadeh,et al. DNA-based bioassay of legionella pneumonia pathogen using gold nanostructure: A new platform for diagnosis of legionellosis. , 2019, International journal of biological macromolecules.
[2] Lihua Chen,et al. The detection of brucellosis antibody in whole serum based on the low-fouling electrochemical immunosensor fabricated with magnetic Fe3O4@Au@PEG@HA nanoparticles. , 2018, Biosensors & bioelectronics.
[3] J. Michaeli,et al. Ureaplasma urealyticum: the Role as a Pathogen in Women’s Health, a Systematic Review , 2018, Current Infectious Disease Reports.
[4] Xiaofeng Zheng,et al. Detection of Dirofilaria immitis antigen and antibodies against Anaplasma phagocytophilum, Borrelia burgdorferi and Ehrlichia canis in dogs from ten provinces of China , 2018, Acta Parasitologica.
[5] A. Chughtai,et al. Rolling epidemic of Legionnaires’ disease outbreaks in small geographic areas , 2018, Emerging Microbes & Infections.
[6] M. Coletta,et al. Development of Potent Inhibitors of the Mycobacterium tuberculosis Virulence Factor Zmp1 and Evaluation of Their Effect on Mycobacterial Survival inside Macrophages , 2018, ChemMedChem.
[7] E. Mohammadi,et al. Helicobacter pylori infection increases sirt2 gene expression in gastric epithelial cells of gastritis patients. , 2018, Microbial pathogenesis.
[8] A. Mokhtarzadeh,et al. Title: Ultrasensitive electrochemical immunosensing of tumor suppressor protein p53 in unprocessed human plasma and cell lysates using a novel nanocomposite based on poly-cysteine/graphene quantum dots/gold nanoparticle , 2017 .
[9] H. Lior. Serotyping of Campylobacter Jejuni and C. Coli by Slide Agglutination Based on Heat-Labile Antigenic Factors , 2018 .
[10] P. Meeus,et al. Evaluation of 3 Serological Tests for Early Detection Of Leptospira‐specific Antibodies in Experimentally Infected Dogs , 2017, Journal of veterinary internal medicine.
[11] Behzad Baradaran,et al. Nanomaterial-based biosensors for detection of pathogenic virus , 2017, TrAC Trends in Analytical Chemistry.
[12] Alexandria K. D’Souza,et al. Characterization of Inner and Outer Membrane Proteins from Francisella tularensis Strains LVS and Schu S4 and Identification of Potential Subunit Vaccine Candidates , 2017, mBio.
[13] Puji Peng. Fabrication of an Electrochemical Sensor for Helicobacter pylori in Excrement Based on a Gold Electrode , 2017 .
[14] Gianluca Ruffato,et al. A novel high sensitive surface plasmon resonance Legionella pneumophila sensing platform , 2017 .
[15] D. Beek,et al. Bacterial hypervirulence in haemophilus influenzae meningitis identified by whole genome sequencing , 2017, Journal of the Neurological Sciences.
[16] M. Soler,et al. Multiplexed nanoplasmonic biosensor for one-step simultaneous detection of Chlamydia trachomatis and Neisseria gonorrhoeae in urine. , 2017, Biosensors & bioelectronics.
[17] Yushen Liu,et al. A sandwich immunoassay for brucellosis diagnosis based on immune magnetic beads and quantum dots , 2017, Journal of pharmaceutical and biomedical analysis.
[18] Qiwen Chen,et al. MnO2 microsphere absorbing Cy5-labeled single strand DNA probe serving as powerful biosensor for effective detection of mycoplasma ovipneumoniae , 2017 .
[19] Outi Lyytikäinen,et al. Health Care Professionals’ Evidence-Based Medicine Internet Searches Closely Mimic the Known Seasonal Variation of Lyme Borreliosis: A Register-Based Study , 2017, JMIR public health and surveillance.
[20] Kavita,et al. DNA Biosensors-A Review , 2017 .
[21] Juan Li,et al. A Rapid Detection Method of Brucella with Quantum Dots and Magnetic Beads Conjugated with Different Polyclonal Antibodies , 2017, Nanoscale Research Letters.
[22] H. Heli,et al. An ultrasensitive electrochemical genosensor for Brucella based on palladium nanoparticles. , 2016, Analytical biochemistry.
[23] F. Fang,et al. Quantitative Detection and Genotyping of Helicobacter pylori from Stool using Droplet Digital PCR Reveals Variation in Bacterial Loads that Correlates with cagA Virulence Gene Carriage , 2016, Helicobacter.
[24] M. Tomar,et al. Detection of Neisseria meningitidis using surface plasmon resonance based DNA biosensor. , 2016, Biosensors & bioelectronics.
[25] R. Tsolis,et al. Chronic Bacterial Pathogens: Mechanisms of Persistence , 2016, Microbiology spectrum.
[26] A. Mokhtarzadeh,et al. Graphene quantum dot as an electrically conductive material toward low potential detection: a new platform for interface science , 2016, Journal of Materials Science: Materials in Electronics.
[27] C. Yean,et al. Development of multiplex loop mediated isothermal amplification (m-LAMP) label-based gold nanoparticles lateral flow dipstick biosensor for detection of pathogenic Leptospira. , 2016, Analytica chimica acta.
[28] H. Heli,et al. Zepto-molar electrochemical detection of Brucella genome based on gold nanoribbons covered by gold nanoblooms , 2015, Scientific Reports.
[29] Susana Campuzano,et al. Rapid Legionella pneumophila determination based on a disposable core-shell Fe₃O₄@poly(dopamine) magnetic nanoparticles immunoplatform. , 2015, Analytica chimica acta.
[30] S. Saito,et al. Eukaryote-Made Thermostable DNA Polymerase Enables Rapid PCR-Based Detection of Mycoplasma, Ureaplasma and Other Bacteria in the Amniotic Fluid of Preterm Labor Cases , 2015, PloS one.
[31] P. Newton,et al. A Systematic Review of the Mortality from Untreated Leptospirosis , 2015, PLoS neglected tropical diseases.
[32] H. Heli,et al. Gold nanoparticles biosensor of Brucella spp. genomic DNA: Visual and spectrophotometric detections , 2015 .
[33] Teodor Veres,et al. Rapid and specific SPRi detection of L. pneumophila in complex environmental water samples , 2015, Analytical and Bioanalytical Chemistry.
[34] Didier Raoult,et al. Current and Past Strategies for Bacterial Culture in Clinical Microbiology , 2015, Clinical Microbiology Reviews.
[35] E. Shapiro. Borrelia burgdorferi (Lyme Disease) , 2014, Pediatrics in review.
[36] D. Raoult,et al. Clinical detection and characterization of bacterial pathogens in the genomics era , 2014, Genome Medicine.
[37] Blake W Buchan,et al. Emerging Technologies for the Clinical Microbiology Laboratory , 2014, Clinical Microbiology Reviews.
[38] Chang Liu,et al. An electrochemical DNA biosensor for the detection of Mycobacterium tuberculosis, based on signal amplification of graphene and a gold nanoparticle-polyaniline nanocomposite. , 2014, The Analyst.
[39] Rainer Gransee,et al. Automated microfluidically controlled electrochemical biosensor for the rapid and highly sensitive detection of Francisella tularensis. , 2014, Biosensors & bioelectronics.
[40] Vinay Gupta,et al. Flower-like ZnO nanostructure based electrochemical DNA biosensor for bacterial meningitis detection. , 2014, Biosensors & bioelectronics.
[41] Francesco Berti,et al. Surface plasmon resonance for the characterization of bacterial polysaccharide antigens: a review , 2014 .
[42] Bansi D. Malhotra,et al. Biosensors for pathogen detection: A smart approach towards clinical diagnosis , 2014 .
[43] Jo V. Rushworth,et al. Biosensors for Whole-Cell Bacterial Detection , 2014, Clinical Microbiology Reviews.
[44] Pranjal Chandra,et al. In vitro chloramphenicol detection in a Haemophilus influenza model using an aptamer-polymer based electrochemical biosensor. , 2014, Biosensors & bioelectronics.
[45] Joseph C Liao,et al. Advances and challenges in biosensor-based diagnosis of infectious diseases , 2014, Expert review of molecular diagnostics.
[46] Harsh Sharma,et al. Review of biosensors for foodborne pathogens and toxins , 2013 .
[47] Minakshi Sharma,et al. Omp85 genosensor for detection of human brain bacterial meningitis , 2013, Biotechnology Letters.
[48] David E Cliffel,et al. Real-time Recognition of Mycobacterium tuberculosis and Lipoarabinomannan using the Quartz Crystal Microbalance. , 2012, Sensors and actuators. B, Chemical.
[49] R. Grunow,et al. Immunodetection of inactivated Francisella tularensis bacteria by using a quartz crystal microbalance with dissipation monitoring , 2012, Analytical and Bioanalytical Chemistry.
[50] S. Arana,et al. Disposable DNA biosensor based on thin-film gold electrodes for selective Salmonella detection , 2012 .
[51] Stephane Evoy,et al. Specific detection of Campylobacter jejuni using the bacteriophage NCTC 12673 receptor binding protein as a probe. , 2011, The Analyst.
[52] S. Choa,et al. Diagnosis of Helicobacter pylori bacterial infections using a voltammetric biosensor. , 2011, Journal of microbiological methods.
[53] S. Patskovsky,et al. Surface plasmon resonance detection of oligonucleotide sequences of the rpoB genes of Mycobacterium tuberculosis. , 2011, Talanta.
[54] Sandeep Kumar Vashist,et al. Recent Advances in Quartz Crystal Microbalance-Based Sensors , 2011, J. Sensors.
[55] Omar A. Oyarzabal,et al. Tethered DNA scaffolds on optical sensor platforms for detection of hipO gene from Campylobacter jejuni , 2011 .
[56] E. Alocilja,et al. Nanoparticle based DNA biosensor for tuberculosis detection using thermophilic helicase-dependent isothermal amplification. , 2011, Biosensors & bioelectronics.
[57] M. Roukes,et al. Comparative advantages of mechanical biosensors. , 2011, Nature nanotechnology.
[58] M. Ligaj,et al. Electrochemical detection of foodborne pathogen Aeromonas hydrophila by DNA hybridization biosensor. , 2010, Biosensors & bioelectronics.
[59] Shin Horikawa,et al. Direct detection of Salmonella typhimurium on fresh produce using phage-based magnetoelastic biosensors. , 2010, Biosensors & bioelectronics.
[60] B. D. Malhotra,et al. DNA biosensor for detection of Neisseria gonorrhoeae causing sexually transmitted disease. , 2010, Journal of biotechnology.
[61] Agustín Costa-García,et al. Genosensor for detection of four pneumoniae bacteria using gold nanostructured screen-printed carbon electrodes as transducers , 2010 .
[62] Bansi D. Malhotra,et al. Electrochemical DNA sensor for Neisseria meningitidis detection. , 2010, Biosensors & bioelectronics.
[63] Cheol Jin Lee,et al. Investigation of plasma-functionalized multiwalled carbon nanotube film and its application of DNA sensor for Legionella pneumophila detection. , 2010, Talanta.
[64] Qinglin Sheng,et al. Ultrasensitive electrical biosensing of syphilis DNA using target-guided formation of polyaniline based on enzyme-catalyzed polymerization. , 2010, Biosensors & bioelectronics.
[65] Wei Sun,et al. Electrochemical DNA biosensor based on chitosan/nano-V2O5/MWCNTs composite film modified carbon ionic liquid electrode and its application to the LAMP product of Yersinia enterocolitica gene sequence. , 2010, Biosensors & bioelectronics.
[66] Aiping Zhu,et al. An electrochemical impedimetric immunosensor for label-free detection of Campylobacter jejuni in diarrhea patients' stool based on O-carboxymethylchitosan surface modified Fe3O4 nanoparticles. , 2010, Biosensors & bioelectronics.
[67] Carme Pastells,et al. Nanoparticle-based biosensors for detection of pathogenic bacteria , 2009 .
[68] Roger D Pechous,et al. Working toward the Future: Insights into Francisella tularensis Pathogenesis and Vaccine Development , 2009, Microbiology and Molecular Biology Reviews.
[69] R. Marks,et al. Chemiluminescent optical fiber immunosensor detection of Brucella cells presenting smooth-A antigen , 2009 .
[70] C. Abril,et al. IS711-based real-time PCR assay as a tool for detection of Brucella spp. in wild boars and comparison with bacterial isolation and serology , 2009, BMC veterinary research.
[71] Bansi D. Malhotra,et al. CtrA gene based electrochemical DNA sensor for detection of meningitis , 2009 .
[72] R. Miranda-Castro,et al. PCR-coupled electrochemical sensing of Legionella pneumophila. , 2009, Biosensors & bioelectronics.
[73] Antje J. Baeumner,et al. A biosensor assay for the detection of Mycobacterium avium subsp. paratuberculosis in fecal samples , 2009, Journal of veterinary science.
[74] F. Pariente,et al. Comprehensive study of interactions between DNA and new electroactive Schiff base ligands. Application to the detection of singly mismatched Helicobacter pylori sequences. , 2007, Biosensors & bioelectronics.
[75] R. Miranda-Castro,et al. Hairpin-DNA probe for enzyme-amplified electrochemical detection of Legionella pneumophila. , 2007, Analytical chemistry.
[76] Michael Keusgen,et al. Francisella tularensis detection using magnetic labels and a magnetic biosensor based on frequency mixing , 2007 .
[77] Miroslav Pohanka,et al. Diagnosis of tularemia using piezoelectric biosensor technology. , 2007, Talanta.
[78] Michael Keusgen,et al. Magnetic biosensor for the detection of Yersinia pestis. , 2007, Journal of microbiological methods.
[79] J. Fyfe,et al. Development of a Real-Time PCR Assay To Detect Treponema pallidum in Clinical Specimens and Assessment of the Assay's Performance by Comparison with Serological Testing , 2006, Journal of Clinical Microbiology.
[80] E. Kuipers,et al. Pathogenesis of Helicobacter pylori Infection , 2006, Clinical Microbiology Reviews.
[81] Jing Wang,et al. Rapid quantitative detection of Yersinia pestis by lateral-flow immunoassay and up-converting phosphor technology-based biosensor , 2006, Sensors and Actuators B: Chemical.
[82] L. Lambert,et al. Guidelines for preventing the transmission of Mycobacterium tuberculosis in health-care settings, 2005. , 2005, MMWR. Recommendations and reports : Morbidity and mortality weekly report. Recommendations and reports.
[83] C. Alonso,et al. DNA biosensor for detection of Helicobacter pylori using phen-dione as the electrochemically active ligand in osmium complexes. , 2005, Analytical chemistry.
[84] Ken B. Waites,et al. Mycoplasma pneumoniae and Its Role as a Human Pathogen , 2004, Clinical Microbiology Reviews.
[85] R. Stephan,et al. The VIT technology for rapid detection of Listeria monocytogenes and other Listeria spp. , 2003, International journal of food microbiology.
[86] Woochang Lee,et al. Immunosensor for detection of Legionella pneumophila using surface plasmon resonance. , 2003, Biosensors & bioelectronics.
[87] B. L. Weeks,et al. A microcantilever-based pathogen detector. , 2003, Scanning.
[88] I. Park,et al. Operational characteristics of an antibody-immobilized QCM system detecting Salmonella spp. , 2000, Biosensors & bioelectronics.
[89] K. Carroll,et al. Detection of Legionella Species in Respiratory Specimens Using PCR with Sequencing Confirmation , 2000, Journal of Clinical Microbiology.
[90] A. Tärnvik,et al. Comparative Analysis of PCR versus Culture for Diagnosis of Ulceroglandular Tularemia , 2000, Journal of Clinical Microbiology.
[91] I. Willner,et al. Piezoelectric immunosensors for urine specimens of Chlamydia trachomatis employing quartz crystal microbalance microgravimetric analyses. , 1997, Analytical chemistry.
[92] W. Liesack,et al. Development of a highly specific assay for rapid identification of pathogenic strains of Yersinia enterocolitica based on PCR amplification of the Yersinia heat-stable enterotoxin gene (yst) , 1997, Journal of clinical microbiology.
[93] G. Woods,et al. Detection of infection or infectious agents by use of cytologic and histologic stains , 1996, Clinical microbiology reviews.
[94] T. Quinn,et al. Diagnostic utility of PCR-enzyme immunoassay, culture, and serology for detection of Chlamydia pneumoniae in symptomatic and asymptomatic patients , 1994, Journal of clinical microbiology.
[95] A. Dajani,et al. Systemic Haemophilus influenzae disease: an overview. , 1979, The Journal of pediatrics.
[96] L. Wolf,et al. Real-Time PCR Detection of Mycoplasma pneumoniae, Chlamydia pneumoniae and Legionella pneumophila in Respiratory Specimens Using the ARIES® System , 2018 .
[97] M. Konkel,et al. Methods to Study Campylobacter jejuni Adherence to and Invasion of Host Epithelial Cells. , 2017, Methods in molecular biology.
[98] S. Simone,et al. Biosensor-based epitope peptide screening to detect spotted fever , 2017 .
[99] G. Xiang,et al. Electrochemical gene sensor for Mycoplasma pneumoniae DNA using dual signal amplification via a Pt@Pd nanowire and horse radish peroxidase , 2015, Microchimica Acta.
[100] Zhixian Gao,et al. Rapid detection of Listeria monocytogenes in milk by self-assembled electrochemical immunosensor , 2014 .
[101] H. Abruña,et al. Single-mismatch position-sensitive detection of DNA based on a bifunctional ruthenium complex. , 2008, Analytical chemistry.
[102] A. Whitney,et al. Nucleic acid-based methods for the detection of bacterial pathogens: present and future considerations for the clinical laboratory. , 2006, Clinica chimica acta; international journal of clinical chemistry.
[103] A. Steigerwalt,et al. Detection of pathogenic leptospires by real-time quantitative PCR. , 2005, Journal of medical microbiology.
[104] G G Guilbault,et al. A piezoelectric immunobiosensor for atrazine in drinking water. , 1992, Biosensors & bioelectronics.