Establishment and validation of highly accurate formalin-fixed paraffin-embedded quantitative proteomics by heat-compatible pressure cycling technology using phase-transfer surfactant and SWATH-MS
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[1] Kexin Liu,et al. Correction to "Accelerated Lysis and Proteolytic Digestion of Biopsy-Level Fresh-Frozen and FFPE Tissue Samples Using Pressure Cycling Technology". , 2020, Journal of proteome research.
[2] Kexin Liu,et al. Accelerated Lysis and Proteolytic Digestion of Biopsy-level Fresh Frozen and FFPE Tissue Samples Using Pressure Cycling Technology. , 2020, Journal of proteome research.
[3] T. Terasaki,et al. Abundant Expression of OCT2, MATE1, OAT1, OAT3, PEPT2, BCRP, MDR1, and xCT Transporters in Blood-Arachnoid Barrier of Pig and Polarized Localizations at CSF- and Blood-Facing Plasma Membranes , 2019, Drug Metabolism and Disposition.
[4] Huanhuan Gao,et al. High‐throughput proteomic analysis of FFPE tissue samples facilitates tumor stratification , 2019, Molecular oncology.
[5] Ludovic C. Gillet,et al. High‐throughput proteomic analysis of FFPE tissue samples facilitates tumor stratification , 2019, bioRxiv.
[6] Zeeshan Hamid,et al. A Swath Label-Free Proteomics insight into the Faah−/− Mouse Liver , 2018, Scientific Reports.
[7] Takashi Suzuki,et al. Involvement of Claudin-11 in Disruption of Blood-Brain, -Spinal Cord, and -Arachnoid Barriers in Multiple Sclerosis , 2018, Molecular Neurobiology.
[8] T. Terasaki,et al. Identification of blood biomarkers in glioblastoma by SWATH mass spectrometry and quantitative targeted absolute proteomics , 2018, PloS one.
[9] T. Terasaki,et al. ATP-Binding Cassette Transporter A Subfamily 8 Is a Sinusoidal Efflux Transporter for Cholesterol and Taurocholate in Mouse and Human Liver. , 2018, Molecular pharmaceutics.
[10] Jeffrey R. Whiteaker,et al. Optimized Protocol for Quantitative Multiple Reaction Monitoring-Based Proteomic Analysis of Formalin-Fixed, Paraffin-Embedded Tissues. , 2016, Journal of proteome research.
[11] Weifeng Yu,et al. Metabolomics changes in a rat model of obstructive jaundice: mapping to metabolism of amino acids, carbohydrates and lipids as well as oxidative stress , 2015, Journal of clinical biochemistry and nutrition.
[12] Alexander Scherl,et al. Applications of mass spectrometry for quantitative protein analysis in formalin-fixed paraffin-embedded tissues , 2014, Proteomics.
[13] Y. Ishihama,et al. Phosphoproteome analysis of formalin-fixed and paraffin-embedded tissue sections mounted on microscope slides. , 2014, Journal of proteome research.
[14] Ruedi Aebersold,et al. Mass spectrometric protein maps for biomarker discovery and clinical research , 2013, Expert review of molecular diagnostics.
[15] Clive R Taylor,et al. Complete solubilization of formalin‐fixed, paraffin‐embedded tissue may improve proteomic studies , 2013, Proteomics. Clinical applications.
[16] T. Veenstra,et al. Pressure-Assisted Protein Extraction: A Novel Method for Recovering Proteins from Archival Tissue for Proteomic Analysis , 2012, Journal of proteome research.
[17] Ludovic C. Gillet,et al. Targeted Data Extraction of the MS/MS Spectra Generated by Data-independent Acquisition: A New Concept for Consistent and Accurate Proteome Analysis* , 2012, Molecular & Cellular Proteomics.
[18] T. Terasaki,et al. Blood-Brain Barrier (BBB) Pharmacoproteomics: Reconstruction of In Vivo Brain Distribution of 11 P-Glycoprotein Substrates Based on the BBB Transporter Protein Concentration, In Vitro Intrinsic Transport Activity, and Unbound Fraction in Plasma and Brain in Mice , 2011, Journal of Pharmacology and Experimental Therapeutics.
[19] J. Langridge,et al. Initial Development and Validation of a Novel Extraction Method for Quantitative Mining of the Formalin-Fixed, Paraffin-Embedded Tissue Proteome for Biomarker Investigations , 2010, Journal of proteome research.
[20] M. Mann,et al. Proteome, phosphoproteome, and N-glycoproteome are quantitatively preserved in formalin-fixed paraffin-embedded tissue and analyzable by high-resolution mass spectrometry. , 2010, Journal of proteome research.
[21] Masaru Tomita,et al. Phase transfer surfactant-aided trypsin digestion for membrane proteome analysis. , 2008, Journal of proteome research.
[22] H. Zou,et al. Development of efficient protein extraction methods for shotgun proteome analysis of formalin-fixed tissues. , 2007, Journal of proteome research.
[23] S. Krähenbühl,et al. Mechanisms of impaired hepatic fatty acid metabolism in rats with long‐term bile duct ligation , 1994, Hepatology.
[24] H. Bloemendal,et al. Cyanate formation in solutions of urea. I. Calculation of cyanate concentrations at different temperature and pH. , 1971, Biochimica et biophysica acta.
[25] D. Rose,et al. DETERMINATION OF CYANATE, AND A STUDY OF ITS ACCUMULATION IN AQUEOUS SOLUTIONS OF UREA. , 1964, Analytical biochemistry.