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FAPA mass spectrometry of hydroxychalcones. Comparative studies with classical methods of ionization

Cell Line HT29: An SAR Study. J. Med. Chem. 2005, 48, 2790-2804. 7. F. J. Andrade, J. T. Shelley, W. C. Wetzel, M. R. Webb, G. Gamez, S. J. Ray, G.M. Hieftje. Atmospheric Pressure Chemical Ionization Source. 2. Desorption-Ionization for the Direct Analysis of Solid Compounds. Anal. Chem. 2008, 80, 2654-2663. 8. M. Smoluch, K. Labuz, E. Reszke, A. Ramsza, K. Labuz, J. Silberring.Direct analysis of methcathinone from crude reaction mixture by flowing atmospheric-pressure afterglow mass spectrometry. Rapid Commun. Mass Spectrom. 2012, 26

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Comparison of Tandem Quadrupole Mass Spectrometry and Orbitrap High Resolution Mass Spectrometry for Analysis of Pharmaceutical Residues in Biota Samples

References [1] S. K. Khetan and T.J. Collins, “Human Pharmaceuticals in the Aquatic Environment: A Challenge to Green Chemistry”, Chemical Reviews, 2007, vol. 107, N6, pp. 2319-2364. http://dx.doi.org/10.1021/cr020441w [2] R. J. B. Peters, A. A. M. Stolker, J. G. J. Mol, A. Lommen, E. Lyris, Y. Angelis, M. W. F. Nielen, “Screening in Veterinary Drug Analysis and Sports Doping Control based on Full-Scan, Accurate-Mass Spectrometry”, Trends in Analytical Chemistry, 2010, vol. 29, N11, pp. 1250-1268. http://dx.doi.org/10.1016/j

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Determination of the Thyreostats in Animal Feeding Stuffs Using Liquid Chromatography-Tandem Mass Spectrometry

References 1. Abuin S., Centrioli F., Rúbies A., Companyó R., Prat M.D.: Analysis of thyreostatic drugs in thyroid samples by Ultra-Performance Liquid Chromatography tandem mass spectrometry detection. Anal Chim Acta 2008, 617, 184-191. 2. Abuin S., Companyó R., Centrich F., Rúbies A., Prat M.D.: Analysis of thyreostatic drugs in thyroid samples by liquid chromatography tandem mass spectrometry: comparison of two sample treatment strategies. J Chromatogr A 2008, 1207, 17-23. 3. Antignac J.P., De Wasch K., Monteau F., De Brabander H.F., Andre F., Le Bizec

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Simultaneous determination of multi – component mycotoxin in feeds by liquid chromatography – tandem mass spectrometry

., Schoeters E., Van Dyck S., Averkieva O., Van Peteghem C., De Saeger S.: Occurrence of mycotoxins in feed as analyzed by a multi-mycotoxin LC-MS/MS method. J Agric Food Chem 2010, 58, 66-71. 17. Oueslati S., Romero-Gonzalez R., Lasram S., Frenich A.G., Vidal J.L.: Multi-mycotoxin determination in cereals and derived products marketed in Tunisia using ultra-high performance liquid chromatography coupled to triple quadrupole mass spectrometry. Food Chem Toxicol 2012, 50, 2376-2381. 18. Piotrowska M.: The use of microorganisms for the removal

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Gas Chromatography-Tandem Mass Spectrometry Method for Selective Detection of 2-Nitropropane in Mainstream Cigarette Smoke

Cigarette Smoke by Heart-Cutting Multidimensional Gas Chromatography System Coupled with Mass Spectrometry Detection; J. Chromatogr. A 1424 (2015) 118–126. DOI: 10.1016/j.chroma.2015.10.078 18. Lanckmans, K., S. Sarre, I. Smolders, and Y. Michotte: Use of a Structural Analogue Versus a Stable Isotope Labeled Internal Standard for the Quantification of Angiotensin IV in Rat Brain Dialysates Using Nano-Liquid Chromatography/Tandem Mass Spectrometry; Rapid Commun. Mass Spectrom. 21 (2007) 1187–1195. DOI: 10.1002/rcm.2950 19. Ding, Y.S., X. Yan, J. Wong, M. Chan

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Determination of steroid esters in hair of slaughter animals by liquid chromatography with tandem mass spectrometry

from the tail and neck of the individual ( 4 ). The transport conditions to the laboratory are also important; dry samples should be sent at ambient temperature, in a paper envelope, aluminium foil, and a plastic or glass vial ( 19 ). Recently, hair samples have become a popular matrix of choice for testing hormone abuse in veterinary research in animals. Currently, only one of the available instrumental techniques of detection – the highly specialised gas chromatography combustion isotope ratio mass spectrometry (GC–C-IRMS, based on 13 C/ 12 C isotope ratio

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Distinguishing Smilax glabra and Smilax china rhizomes by flow-injection mass spectrometry combined with principal component analysis

105 (2015) 121-129; https://doi.org/10.1016/j.sab.2014.10.005 9. T. Fuhrer, D. Heer, B. Begemann and N. Zamboni, High-throughput, accurate mass metabolome profiling of cellular extracts by flow injection-time-of-flight mass spectrometry, Anal. Chem. 83 (2011) 7074-7080; https://doi.org/10.1021/ac201267k 10. G. M. Kirwan, E. Johansson, R. Kleemann, E. R. Verheij, A. M. Wheelock, S. Goto, J. Trygg and C. E. Wheelock, Building multivariate systems biology models, Anal. Chem. 84 (2012) 7064-7071; https://doi.org/10.1021/ac301269r

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Urinary Proteome Analysis using Capillary Electrophoresis Coupled to Mass Spectrometry: A Powerful Tool in Clinical Diagnosis, Prognosis and Therapy Evaluation

, Rollinger W, Mantovani-Endl L, Hagmann ML, Palme S, Berndt P, et al. Identification of PSME3 as a novel serum tumor marker for colorectal cancer by combining two-dimensional polyacrylamide gel electro-phoresis with a strictly mass spectrometry-based approach for data analysis. Mol Cell Proteomics 2006; 5: 2092-101. Lescuyer P, Hochstrasser D, Rabilloud T. How Shall We Use the Proteomics Toolbox for Biomarker Discovery? J Proteome Res 2007; 6: 3371-6. Omenn GS, States DJ, Adamski M, Blackwell TW, Menon R, Hermjakob H

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Precise determination of HPGe detector efficiency for gamma spectrometry measurements of environmental samples with variable geometry and density

References 1. Debertin, K., & Helmer, R. G. (1988). Gamma and X-ray spectrometry with semiconductor detectors. Amsterdam: Elsevier Science Ltd. 2. Knoll, G. F. (2010). Radiation detection and measurement (4th ed.). New York: John Wiley & Sons. 3. Casas-Ruiz, M., Ligero, R. A., & Barbero, L. (2012). Estimation of annual effective dose due to natural and man-made radionuclides in the metropolitan area of the Bay of Cadiz (SW of Spain). Radiat. Prot. Dosim., 150 (1), 60–70. 4. Ligero, R. A., Casas-Ruiz, M., Barrera, M., Barbero, L

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Renopathological Microstructure Visualization From Formalin Fixed Kidney Tissue by Matrix-assisted Laser/Desorption Ionization-Time-Offlight Mass Spectrometry Imaging

-2335. 4. Jimi S, Uesugi N, Saku K, et al. Possible induction of renal dysfunction in patients with lecithin:cholesterol acyltransferase deficiency by oxidized phosphatidylcholine in glomeruli. Arterioscler Thromb Vasc Biol. 1999; 19(3): 794-801. 5. Kaneko Y, Obata Y, Nishino T, et al. Imaging mass spectrometry analysis reveals an altered lipid distribution pattern in the tubular areas of hyper-IgA murine kidneys. Exp Mol Pathol. 2011; 91(2): 614-621. 6. Kaletaş BK, van der Wiel IM, Stauber J, et al. Sample preparation issues for

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