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Journal articles on the topic 'LC-MS-MS analysis'

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1

Kim, Jaehyun, Jinhee Kim, Jangmi Hong, et al. "LC–MS/MS analysis of chitooligosaccharides." Carbohydrate Research 372 (May 2013): 23–29. http://dx.doi.org/10.1016/j.carres.2013.02.007.

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2

Hopfgartner, Gérard, Antoine Lesur, and Emmanuel Varesio. "Analysis of biopharmaceutical proteins in biological matrices by LC-MS/MS II. LC-MS/MS analysis." TrAC Trends in Analytical Chemistry 48 (July 2013): 52–61. http://dx.doi.org/10.1016/j.trac.2013.03.008.

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3

Krajčová, A., V. Schulzová, J. Lojza, L. Křížová, and J. Hajšlová. "Phytoestrogens in bovine plasma and milk – LC-MS/MS analysis." Czech Journal of Food Sciences 28, No. 4 (2010): 264–74. http://dx.doi.org/10.17221/138/2010-cjfs.

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Phytoestrogens belong to a group of polyphenolic plant metabolites which induce biological responses, based on their structural similarity to 17β-estradiol. In order to investigate the relationship between the levels of these biologically active compounds and beneficial health effects, it is neccesary to quantify accurately their levels in foods and biological fluids. In this study, HPLC-MS/MS method for the determination of isoflavones genistein, daidzein, and estrogenic metabolite-equol in bovine plasma and milk was optimised and validated. The method allowed low limits of detection
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4

Kerns, Edward H., Kevin J. Volk, Susan E. Hill, and Mike S. Lee. "Profiling new taxanes using LC/MS and LC/MS/MS substructural analysis techniques." Rapid Communications in Mass Spectrometry 9, no. 15 (1995): 1539–45. http://dx.doi.org/10.1002/rcm.1290091514.

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5

Griffiths, William J., and Yuqin Wang. "Analysis of neurosterols by GC–MS and LC–MS/MS." Journal of Chromatography B 877, no. 26 (2009): 2778–805. http://dx.doi.org/10.1016/j.jchromb.2009.05.017.

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6

Kobayashi, Hiroko. "Development of Residue Analysis for Pesticides by LC/MS and LC/MS/MS Methods." BUNSEKI KAGAKU 58, no. 12 (2009): 985–97. http://dx.doi.org/10.2116/bunsekikagaku.58.985.

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7

Cummings, Jeffrey, Richard Unwin, and Timothy D. Veenstra. "Quantitative analysis of biomarkers by LC–MS/MS." Journal of Chromatography B 877, no. 13 (2009): 1221. http://dx.doi.org/10.1016/j.jchromb.2009.03.001.

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8

Kim, Eun-Hee, Mi-Ra Jang, Jae-Min Shin, et al. "Simultaneous Analysis of Plant Growth Regulators using LC-MS/MS." Korean Journal of Pesticide Science 24, no. 2 (2020): 231–39. http://dx.doi.org/10.7585/kjps.2020.24.2.231.

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9

Park, Na-Youn, Eun-Hee Lee, and Younglim Kho. "Analysis Method of Parabens in Human Breast Milk by LC-MS/MS System." Journal of the Korean Chemical Society 60, no. 2 (2016): 118–24. http://dx.doi.org/10.5012/jkcs.2016.60.2.118.

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10

Coulot, M., B. Domon, H. Grossenbacher, et al. "LC-MS and MS/MS in the analysis of recombinant proteins." Journal of Molecular Structure 292 (March 1993): 89–103. http://dx.doi.org/10.1016/0022-2860(93)80092-a.

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11

Nam, Hye-Seon, Kyong-Hee Nam, Su-Hee Jung, et al. "Analysis of dutasteride in human serum by LC-MS/MS." Analytical Science and Technology 25, no. 1 (2012): 76–82. http://dx.doi.org/10.5806/ast.2012.25.1.076.

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12

Park, Na-Youn, Woong Jung, and Younglim Kho. "Analysis Method of N-Nitrosamines in Human Urine by LC-MS/MS System." Journal of the Korean Chemical Society 61, no. 2 (2017): 51–56. http://dx.doi.org/10.5012/jkcs.2017.61.2.51.

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13

Moon, Ji Young, Hyun Jung Han, Hyemin Dong, et al. "Analysis of LC-MS/MS in Discrimination of the Origin of Commercial Red Ginseng Concentrates." Korean Journal of Food Science and Technology 46, no. 5 (2014): 549–55. http://dx.doi.org/10.9721/kjfst.2014.46.5.549.

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14

TSUCHIDA, Sayaka, Takanari HATTORI, Akiko SAWADA, Koretsugu OGATA, Jun WATANABE, and Kazunari USHIDA. "Fecal metabolite analysis of Japanese macaques in Yakushima by LC-MS/MS and LC-QTOF-MS." Journal of Veterinary Medical Science 83, no. 6 (2021): 1012–15. http://dx.doi.org/10.1292/jvms.21-0076.

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15

SHIRANE, Yoshiharu. "Environmental Analysis by LC/MS." Journal of Environmental Chemistry 5, no. 3 (1995): 689–92. http://dx.doi.org/10.5985/jec.5.689.

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16

Lu, Xin, Xinjie Zhao, Changmin Bai, Chunxia Zhao, Guo Lu, and Guowang Xu. "LC–MS-based metabonomics analysis." Journal of Chromatography B 866, no. 1-2 (2008): 64–76. http://dx.doi.org/10.1016/j.jchromb.2007.10.022.

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17

Dmitrovic, Jasna, and David A. Durden. "Analysis of Fumagillin in Honey by LC-MS/MS." Journal of AOAC INTERNATIONAL 96, no. 3 (2013): 687–95. http://dx.doi.org/10.5740/jaoacint.12-174.

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Abstract An LC/MS/MS method has been optimized and validated for the quantification and confirmation of fumagillin in honey. Fumagillin is isolated and concentrated by RP polymeric SPE. Final extracts are analyzed using electrospray ionization LC/MS/MS in positive mode with a formic acid and ammonium formate–acetonitrile mobile phase. Method uncertainty was determined using two analytical systems from different manufacturers. The validation of this LC/MS/MS method for the detection of fumagillin demonstrated overall recovery of 99.3%, precision of 5.9%, expanded uncertainty of 13.2%, and LOD o
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18

Núñez, Oscar, Encarnación Moyano, and Maria Teresa Galceran. "LC–MS/MS analysis of organic toxics in food." TrAC Trends in Analytical Chemistry 24, no. 7 (2005): 683–703. http://dx.doi.org/10.1016/j.trac.2005.04.012.

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19

Mata, A. T., J. P. Ferreira, B. R. Oliveira, et al. "Bottled water: Analysis of mycotoxins by LC–MS/MS." Food Chemistry 176 (June 2015): 455–64. http://dx.doi.org/10.1016/j.foodchem.2014.12.088.

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20

Koal, Therese, Diane Schmiederer, Hai Pham-Tuan, Cornelia Röhring, and Manfred Rauh. "Standardized LC–MS/MS based steroid hormone profile-analysis." Journal of Steroid Biochemistry and Molecular Biology 129, no. 3-5 (2012): 129–38. http://dx.doi.org/10.1016/j.jsbmb.2011.12.001.

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21

Riswahyuli, Riswahyuli, Loise RS, and Niza Nemara. "Multi Mycotoxins Analysis in Rice Using LC-MS/MS." MPI (Media Pharmaceutica Indonesiana) 1, no. 2 (2017): 77–84. http://dx.doi.org/10.24123/mpi.v1i2.189.

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Multi mycotoxins analysis in this research has the purpose to develop method of analysisfor rice sample with a simple and fast preparation and novel technology using LC-MS/MS. Several blankrice samples were spiked with standards of 8 classes of mycotoxins (Aflatoxin B1, Aflatoxin B2, AflatoxinG1, Aflatoxin G2, Deoxynivalenol, Zearalenon, T-2, and HT-2). Parameter of linearity, precision, recovery,limit of detection and limit of quantification were obtained and calculated. The result shows that all thevalidation parameters comply with criteria of method validation. Sonication method that was ch
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22

Khoury, Spiro, Corinne Pouyet, Bernard Lyan, and Estelle Pujos-Guillot. "Evaluation of oxidized phospholipids analysis by LC-MS/MS." Analytical and Bioanalytical Chemistry 410, no. 2 (2017): 633–47. http://dx.doi.org/10.1007/s00216-017-0764-1.

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23

Cha, Eunju, Sohee Kim, Ho Jun Kim, et al. "Sensitivity of GC-EI/MS, GC-EI/MS/MS, LC-ESI/MS/MS, LC-Ag+CIS/MS/MS, and GC-ESI/MS/MS for analysis of anabolic steroids in doping control." Drug Testing and Analysis 7, no. 11-12 (2015): 1040–49. http://dx.doi.org/10.1002/dta.1906.

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24

HAYASHI, Takako, Teruhisa FUJIMAKI, and Maki MIYAZAWA. "Quantitative Analysis of Clenbuterol in Pig Liver by LC-MS/MS/MS." CHROMATOGRAPHY 39, no. 3 (2018): 131–37. http://dx.doi.org/10.15583/jpchrom.2018.011.

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25

Alencar Filho, José M. T. de, Hyany A. P. Teixeira, Pedrita A. Sampaio, et al. "Phytochemical analysis in Alternanthera brasiliana by LC-MS/MS and GC-MS." Natural Product Research 34, no. 3 (2019): 429–33. http://dx.doi.org/10.1080/14786419.2018.1533827.

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26

Tokumura, Masahiro, Yuichi Miyake, Qi Wang, et al. "Methods for the analysis of organophosphorus flame retardants—Comparison of GC-EI-MS, GC-NCI-MS, LC-ESI-MS/MS, and LC-APCI-MS/MS." Journal of Environmental Science and Health, Part A 53, no. 5 (2018): 475–81. http://dx.doi.org/10.1080/10934529.2017.1410419.

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27

Dutta, Anirban, Sandip Hingmire, and Kaushik Banerjee. "Multiresidue Analysis of Pesticides in Moringa Pods by GC-MS/MS and LC-MS/MS." Journal of AOAC INTERNATIONAL 103, no. 6 (2020): 1486–97. http://dx.doi.org/10.1093/jaoacint/qsaa053.

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Abstract Background Moringa pods are known for their nutritional and health benefits. The cultivation of this crop receives frequent pesticide applications. In the absence of risk assessment data, maximum residue limits of pesticides in this crop are considered at the default level (0.01 mg/kg). However, there exists scarcely any validated method for pesticide residue analysis in this matrix. Objective This study was undertaken to develop and validate a multiresidue method for the simultaneous analysis of multi-class pesticides in moringa pods by gas chromatography-tandem mass spectrometry (GC
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28

Song, Liguo, Kyoung‐Soo Choi, Young‐Mee Park, et al. "Capillary‐LC‐µESI‐MS/MS and Nano‐LC‐Nano ESI‐MS/MS Analysis Using a Single Binary Pump Capillary LC System: Applications in Proteomics." Journal of Liquid Chromatography & Related Technologies 28, no. 9 (2005): 1271–89. http://dx.doi.org/10.1081/jlc-200054754.

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29

Medvedovici, Andrei, Karel Lazou, André d'Oosterlinck, Yining Zhao, and Pat Sandra. "Analysis of jojoba oil by LC-coordination ion spray-MS (LC-CIS-MS)." Journal of Separation Science 25, no. 3 (2002): 173–78. http://dx.doi.org/10.1002/1615-9314(20020201)25:3<173::aid-jssc173>3.0.co;2-k.

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30

Kim, Jong-Hwan, Yeong-Jin Kim, Young-Sang Kwon, and Jong-Su Seo. "Development of Multi-residue Analysis of 320 Pesticides in Apple and Rice Using LC-MS/MS and GC-MS/MS." Korean Journal of Pesticide Science 20, no. 2 (2016): 104–27. http://dx.doi.org/10.7585/kjps.2016.20.2.104.

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31

KAI, Shigemi, Ken ISHIKAWA, Hajime ITO, et al. "Simultaneous Analysis of Oral Antidiabetic Drug by LC-MS/MS." CHROMATOGRAPHY 36, no. 1 (2015): 19–24. http://dx.doi.org/10.15583/jpchrom.2015.003.

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32

MOCHIZUKI, Naoki, Eri AOKI, Keiko SUGA, Rie ISHII, and Masakazu HORIE. "Analysis of Chloramphenicol in Propolis Extract by LC/MS/MS." Journal of the Food Hygienic Society of Japan (Shokuhin Eiseigaku Zasshi) 49, no. 6 (2008): 399–402. http://dx.doi.org/10.3358/shokueishi.49.399.

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33

MOCHIZUKI, Naoki. "Basic Technology of LC-MS/MS Analysis in Food Safety." Food Hygiene and Safety Science (Shokuhin Eiseigaku Zasshi) 54, no. 4 (2013): 251–58. http://dx.doi.org/10.3358/shokueishi.54.251.

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34

Wozniak, Barbara, Iwona Matraszek-Zuchowska, and Jan Zmudzki. "LC-MS/MS fast analysis of androgenic steroids in urine." Analytical and Bioanalytical Chemistry 403, no. 10 (2012): 2965–72. http://dx.doi.org/10.1007/s00216-012-5859-0.

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35

KAGEYAMA, Naoko, Mina NAKAMURA, Kazutaka SHIMBO, Toshimi MIZUKOSHI, and Hiroshi MIYANO. "Comprehensive Dipeptide Analysis by Pre-column Derivatization LC/MS/MS." BUNSEKI KAGAKU 69, no. 4.5 (2020): 173–78. http://dx.doi.org/10.2116/bunsekikagaku.69.173.

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36

Roach, John A. G., Denis Andrzejewski, Martha L. Gay, David Nortrup, and Steven M. Musser. "Rugged LC-MS/MS Survey Analysis for Acrylamide in Foods." Journal of Agricultural and Food Chemistry 51, no. 26 (2003): 7547–54. http://dx.doi.org/10.1021/jf0346354.

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37

Yüzüak, N., T. Özden, S. Eren, and S. Toptan. "Analysis of Azithromycin in Human Plasma by LC–MS–MS." Chromatographia 66, S1 (2007): 115–18. http://dx.doi.org/10.1365/s10337-007-0294-7.

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38

Gallien, Sebastien, Elodie Duriez, Kevin Demeure, and Bruno Domon. "Selectivity of LC-MS/MS analysis: Implication for proteomics experiments." Journal of Proteomics 81 (April 2013): 148–58. http://dx.doi.org/10.1016/j.jprot.2012.11.005.

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39

MOCHIZUKI, Naoki. "Problems on LC-MS/MS Analysis to Ensure Food Safety." YAKUGAKU ZASSHI 131, no. 7 (2011): 1019–25. http://dx.doi.org/10.1248/yakushi.131.1019.

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40

Hayano, Toshiya, Yoshio Yamauchi, Kazunobu Asano, et al. "Automated SPR-LC−MS/MS System for Protein Interaction Analysis." Journal of Proteome Research 7, no. 9 (2008): 4183–90. http://dx.doi.org/10.1021/pr700834n.

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41

Van Aerden, C., L. Debrauwer, A. Paris, C. Van Aerden, and J. C. Tabet. "Analysis of nucleoside-estrogen adducts by LC-ESI-MS-MS†." Analyst 123, no. 12 (1998): 2677–80. http://dx.doi.org/10.1039/a805126g.

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42

Hauck, Zane Z., Douglas L. Feinstein, and Richard B. van Breemen. "LC–MS-MS Analysis of Brodifacoum Isomers in Rat Tissue." Journal of Analytical Toxicology 40, no. 4 (2016): 304–9. http://dx.doi.org/10.1093/jat/bkw008.

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43

Keevil, Brian G. "LC–MS/MS analysis of steroids in the clinical laboratory." Clinical Biochemistry 49, no. 13-14 (2016): 989–97. http://dx.doi.org/10.1016/j.clinbiochem.2016.04.009.

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44

Bergmann, Marianne L., and Anne Schmedes. "Highly sensitive LC-MS/MS analysis of catecholamines in plasma." Clinical Biochemistry 82 (August 2020): 51–57. http://dx.doi.org/10.1016/j.clinbiochem.2020.03.006.

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45

Rasmussen, R. R., I. M. L. D. Storm, P. H. Rasmussen, J. Smedsgaard, and K. F. Nielsen. "Multi-mycotoxin analysis of maize silage by LC-MS/MS." Analytical and Bioanalytical Chemistry 397, no. 2 (2010): 765–76. http://dx.doi.org/10.1007/s00216-010-3545-7.

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46

Rockwood, Alan L., and David K. Crockett. "Developing an LC–MS/MS method for hepcidin quantitative analysis." Clinica Chimica Acta 411, no. 11-12 (2010): 898. http://dx.doi.org/10.1016/j.cca.2010.02.017.

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47

Son, Bo-young, Jun-il Kim, Chi-hwa An, Su-won Lee, Bogsoon Kim та Deukmo Chung. "Simultaneous analysis of β-lactam antibiotics and β-blockers by LC-MS/MS". Analytical Science and Technology 29, № 4 (2016): 179–85. http://dx.doi.org/10.5806/ast.2016.29.4.179.

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48

Andrews, Christine L., Andreas Harsch, and Paul Vouros. "Analysis of the in vitro digestion of modified DNA to oligonucleotides by LC–MS and LC–MS/MS." International Journal of Mass Spectrometry 231, no. 2-3 (2004): 169–77. http://dx.doi.org/10.1016/j.ijms.2003.10.005.

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49

Cui, Lijie, Kasem Nithipatikom, and William B. Campbell. "Simultaneous analysis of angiotensin peptides by LC–MS and LC–MS/MS: Metabolism by bovine adrenal endothelial cells." Analytical Biochemistry 369, no. 1 (2007): 27–33. http://dx.doi.org/10.1016/j.ab.2007.06.045.

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50

Badovinac, Ana, Genadij Razdorov, Lovorka Grgurević, Ivan Puhar, Darije Plančak, and Darko Božić. "The Application of LC-MS/MS Technology for Proteomic Analysis of Gingival Tissue: a Pilot Study." Acta Stomatologica Croatica 47, no. 1 (2013): 10–20. http://dx.doi.org/10.15644/asc47/1/2.

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