Biomarker discovery for ovine paratuberculosis (Johne's disease) by proteomic serum profiling.
暂无分享,去创建一个
[1] K. Bower,et al. Experimental infection model for Johne's disease using a lyophilised, pure culture, seedstock of Mycobacterium avium subspecies paratuberculosis. , 2010, Veterinary microbiology.
[2] M. Watson,et al. Differential protein profiling as a potential multi-marker approach for TSE diagnosis , 2009, BMC infectious diseases.
[3] S. Sreevatsan,et al. Biomarker Discovery in Subclinical Mycobacterial Infections of Cattle , 2009, PloS one.
[4] V. Paradis,et al. Serum proteomic profiling of obese patients: correlation with liver pathology and evolution after bariatric surgery , 2008, Gut.
[5] Y. Mori,et al. Detection of Mycobacterium avium subsp. paratuberculosis in ovine faeces by direct quantitative PCR has similar or greater sensitivity compared to radiometric culture. , 2007, Veterinary microbiology.
[6] D. Acosta,et al. Discovery and validation of serum biomarkers expressed over the first twelve weeks of Fasciola hepatica infection in sheep , 2007, International Journal for Parasitology.
[7] Denis Hochstrasser,et al. How shall we use the proteomics toolbox for biomarker discovery? , 2007, Journal of proteome research.
[8] U. Kiernan. Quantitation of target proteins and post-translational modifications in affinity-based proteomics approaches , 2007, Expert review of proteomics.
[9] A. Villar-Garea,et al. Biomarker discovery from body fluids using mass spectrometry. , 2007, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[10] V. Bhandari,et al. Proteomic Profiling of the Amniotic Fluid to Detect Inflammation, Infection, and Neonatal Sepsis , 2007, PLoS medicine.
[11] D. Häussinger,et al. New multi protein patterns differentiate liver fibrosis stages and hepatocellular carcinoma in chronic hepatitis C serum samples. , 2006, World journal of gastroenterology.
[12] M. Herbster,et al. Identification of diagnostic markers for tuberculosis by proteomic fingerprinting of serum , 2006, The Lancet.
[13] J. Sung,et al. Serum Proteomic Fingerprints of Adult Patients with Severe Acute Respiratory Syndrome , 2006, Clinical chemistry.
[14] Kym Faull,et al. Characterization of serum biomarkers for detection of early stage ovarian cancer , 2005, Proteomics.
[15] Xiao-Ying Meng,et al. Classification of cancer types by measuring variants of host response proteins using SELDI serum assays , 2005, International journal of cancer.
[16] K. Chong-Kook,et al. Identification of hemoglobin‐α and ‐β subunits as potential serum biomarkers for the diagnosis and prognosis of ovarian cancer , 2005, Cancer science.
[17] William E Grizzle,et al. Serum levels of an isoform of apolipoprotein A-II as a potential marker for prostate cancer. , 2005, Clinical cancer research : an official journal of the American Association for Cancer Research.
[18] R. Bast,et al. Three Biomarkers Identified from Serum Proteomic Analysis for the Detection of Early Stage Ovarian Cancer , 2004, Cancer Research.
[19] T. Poon,et al. Serial Analysis of Plasma Proteomic Signatures in Pediatric Patients with Severe Acute Respiratory Syndrome and Correlation with Viral Load , 2004, Clinical chemistry.
[20] Jeffrey S. Morris,et al. Reproducibility of SELDI-TOF protein patterns in serum: comparing datasets from different experiments , 2004, Bioinform..
[21] D. Hunter,et al. Rapid and Sensitive Detection of Mycobacterium avium subsp. paratuberculosis in Bovine Milk and Feces by a Combination of Immunomagnetic Bead Separation-Conventional PCR and Real-Time PCR , 2004, Journal of Clinical Microbiology.
[22] E. Diamandis. Point: Proteomic patterns in biological fluids: do they represent the future of cancer diagnostics? , 2003, Clinical chemistry.
[23] T. Yip,et al. Comprehensive proteomic profiling identifies serum proteomic signatures for detection of hepatocellular carcinoma and its subtypes. , 2003, Clinical chemistry.
[24] J. Christopher-Hennings,et al. Comparison of Two DNA Extractions and Nested PCR, Real-Time PCR, a New Commercial PCR Assay, and Bacterial Culture for Detection of Mycobacterium Avium Subsp. Paratuberculosis in Bovine Feces , 2003, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[25] G. Bölske,et al. An IS900-like sequence found in a Mycobacterium sp. other than Mycobacterium avium subsp. paratuberculosis. , 2002, FEMS microbiology letters.
[26] J. Stabel,et al. An evaluation of a modified interferon-gamma assay for the detection of paratuberculosis in dairy herds. , 2001, Veterinary immunology and immunopathology.
[27] R. Evans,et al. Mycobacteria distenct from Mycobacterium avium subsp. paratuberculosis isolated from the faeces of ruminants possess IS900-like sequences detectable IS900 polymerase chain reaction: implications for diagnosis. , 1999, Molecular and cellular probes.
[28] S. McAllister,et al. Evaluation of Modified BACTEC 12B Radiometric Medium and Solid Media for Culture of Mycobacterium aviumsubsp. paratuberculosis from Sheep , 1999, Journal of Clinical Microbiology.
[29] S. McAllister,et al. Rapid Detection of Mycobacterium paratuberculosis in Clinical Samples from Ruminants and in Spiked Environmental Samples by Modified BACTEC 12B Radiometric Culture and Direct Confirmation by IS900 PCR , 1998, Journal of Clinical Microbiology.
[30] J. Stabel. Production of γ-Interferon by Peripheral Blood Mononuclear Cells: An Important Diagnostic Tool for Detection of Subclinical Paratuberculosis , 1996, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[31] J. Badiola,et al. Description and classification of different types of lesion associated with natural paratuberculosis infection in sheep. , 1996, Journal of comparative pathology.
[32] P. Højrup,et al. Rapid identification of proteins by peptide-mass fingerprinting , 1993, Current Biology.
[33] Walter J. Freeman,et al. Classification of EEG Spatial Patterns with a Tree-Structured Methodology: CART , 1986, IEEE Transactions on Biomedical Engineering.
[34] Peterson Pa. Characteristics of a vitamin A-transporting protein complex occurring in human serum. , 1971 .
[35] R. Whittington,et al. Proteomic profiling of ovine serum by SELDI-TOF MS: optimisation, reproducibility and feasibility of biomarker discovery using routinely collected samples. , 2010, Comparative immunology, microbiology and infectious diseases.
[36] Ruedi Aebersold,et al. Absolute quantification of specific proteins in complex mixtures using visible isotope-coded affinity tags. , 2007, Methods in molecular biology.