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Proteome, urinary

Tantipaiboonwong P, Sinchaikul S, Sriyam S, Phutrakul S, Chen ST. Different techniques for urinary protein analysis of normal and lung cancer patients. Proteomics 2005 5(4) 1140-1149. [Pg.135]

Aleo MD, Navetta KA, Emeigh Hart SG et al. (2002) Mechanism-based urinary biomarkers of aminoglycoside-induced phospholipidosis. Comp Clin Pathol 11 193-194 Aleo MD, Navetta KA, Emeigh Hart SG et al. (2003) Mechanism-based urinary biomarkers of renal phospholipidosis and injury. Toxicol Sci 72 (Suppl) 243 Bandara LR, Kennedy S (2002) Toxicoproteomics - a new pre-clinical tool. Drug Disc Today 7 411—418 Chapman K (2002) The ProteinChip biomarker system from Ci-phergen Biosystems a novel proteomics platform for rapid biomarker discovery and validation. Biochem Soci Trans 30 82-87... [Pg.120]

Thongboonkerd V, McLeish KR, Arthur JM, Klein JB (2002) Proteomic analysis of normal human urinary proteins isolated by acetone precipitation or ultracentrifugation. Kidney Int 62 1461-1469... [Pg.121]

Characterization of the human urinary proteome a method for high-resolution display of urinary proteins on two-dimensional electrophoresis gels with a yield of nearly 1400 distinct protein spots. Proteomics 4, 1159-1174. [Pg.237]

Barratt J and Topham P. Urine proteomics the present and future of measuring urinary protein components in disease. CMAJ. [Pg.120]

Pieper R, Gatlin CL, McGrath AM, Makusky AJ, Mondal M, Seonarain M, Field E, Schatz CR, Estock MA, Ahmed N, Anderson NG, Steiner S. Characterization of the human urinary proteome A method for high-resolution display of urinary proteins on two-dimensional electrophoresis gels with a yield of nearly 1400 distinct protein spots. Proteomics 2004 4(4) 1159-74. [Pg.140]

As described below, urinary metabolites have been identified for vesicants, nerve agents, 3-quinuclidinyl benzilate (BZ), hydrogen cyanide and the RCAs, CS, CR and capsaicin. Protein adducts have been identified for vesicants, nerve agents and phosgene, and DNA adducts for sulphur and nitrogen mustards. With the rapid advances being made in proteomics and metabo-nomics, new biological markers of exposure will undoubtedly be identified in the near future. [Pg.128]

Hampel, D. J., C. Sansome, M. Sha, S. Brodsky, W. E. Lawson, and M. S. Goligorsky. 2001. Towards proteomics in uroscopy Urinary protein profiles after radio contrast medium administration. Journal of American Society of Nephrology 12 1026-1035. [Pg.94]

Dear, J.W., Street, J.M., Bailey, M.A., 2012. Urinary exosomes a reservoir for biomarker discovery and potential mediators of intra-renal signahng. Proteomics. Available from http //dx.doi.Org/10.1002/pmic.201200285. [Pg.204]

Spahr, C.S. Davis, M.T. McGinley, M.D. Robinson, J.H. Bures, E.J. Beierle, J. Mort, J. Courchesne, P.L. Chen, K. Wahl, R.C. Yu, W Luethy, R. Patterson, S.D. Towards defining the urinary proteome using liquid chromatography-tandem mass spectrometry... [Pg.110]

DCIM-MS has been coupled to liquid chromatography (LC) for analyzing complex peptide samples [36], Peptides eluting from the LC column were analyzed on an IMS-Q-TOF mass spectrometer. The ions generated from the source were accumulated in an ion trap and injected periodically into the drift tube. After mass analysis by the quadrupole, ions were subjected to collision-induced dissociation (CID) within an octopole collision cell and the product ions were analyzed by a TOF analyzer. Using this instrumental configuration, the urinary proteome [37], the Drosophila melano-gaster head proteome [38], and the human plasma proteome [39] have been analyzed. While many additional measurements, compared to standard mass spectrometry-based proteomics experiments, were obtained (for example, collision cross-sections), these were not used to improve upon protein identification results. [Pg.208]

Brandt LE, Ehrhart EJ, Scherman H, Olver CS, Bohn AA, and Prenni JE. Characterization of the canine urinary proteome. Vet Clin Pathol. 43(2) 193-205, June 2014. [Pg.445]

Yap IKS, Angjey M, Veselkov KA, Holmes E, Lindon JC, Nicholson JK. Urinary metabolic phenotyping differentiates children with autism from their unaffected siblings and age-matched controls. J Proteome Res. 2010 9 2996-3004. [Pg.239]


See other pages where Proteome, urinary is mentioned: [Pg.108]    [Pg.36]    [Pg.39]    [Pg.8]    [Pg.289]    [Pg.302]    [Pg.9]    [Pg.110]    [Pg.102]    [Pg.227]    [Pg.227]    [Pg.103]    [Pg.120]    [Pg.139]    [Pg.305]    [Pg.171]    [Pg.84]    [Pg.60]    [Pg.55]    [Pg.241]    [Pg.232]    [Pg.443]    [Pg.846]    [Pg.1276]    [Pg.344]    [Pg.351]    [Pg.438]   
See also in sourсe #XX -- [ Pg.208 ]




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