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Analytical Chemistry|June 30, 2007
Quantitative method for the profiling of the endocannabinoid metabolome by LC-atmospheric pressure chemical ionization-MSJohn Williams, JodiAnne Wood, Lakshmipathi Pandarinathan, et al.Analytical Chemistry|June 26, 2008
Metabolite identification using a nanoelectrospray LC-EC-array-MS integrated systemSusan Schiavo, Erika Ebbel, Swati Sharma, et al.Journal of Proteome Research|May 3, 2007
Characterization of phosphorylation sites on Tpl2 using IMAC enrichment and a linear ion trap mass spectrometerTerrence M Black, Christine L Andrews, Geoffrey Kilili, et al.Journal of Chromatography. A|November 26, 2009
An improved liquid chromatography-tandem mass spectrometry method for the quantification of 4-aminobiphenyl DNA adducts in urinary bladder cells and tissuesKristen L Randall, Dayana Argoti, Joseph D Paonessa, et al.Cancer Medicine|October 12, 2018
Strong impact of sulfotransferases on DNA adduct formation by 4-aminobiphenyl in bladder and liver in miceYun Li, Zhidan Chen, Joseph D Paonessa, et al.Cancer Research|April 14, 2011
Identification of an unintended consequence of Nrf2-directed cytoprotection against a key tobacco carcinogen plus a counteracting chemopreventive interventionJoseph D Paonessa, Yi Ding, Kristen L Randall, et al.Journal of the American Society for Mass Spectrometry|May 9, 2018
Differential Mobility Spectrometry-Mass Spectrometry (DMS-MS) in Radiation Biodosimetry: Rapid and High-Throughput Quantitation of Multiple Radiation Biomarkers in Nonhuman Primate UrineZhidan Chen, Stephen L Coy, Evan L Pannkuk, et al.Journal of the American Society for Mass Spectrometry|January 24, 2014
Understanding gas phase modifier interactions in rapid analysis by differential mobility-tandem mass spectrometryAmol Kafle, Stephen L Coy, Bryan M Wong, et al.Carcinogenesis|September 3, 2010
Sulforaphane inhibits 4-aminobiphenyl-induced DNA damage in bladder cells and tissuesYi Ding, Joseph D Paonessa, Kristen L Randall, et al.Chemical Research in Toxicology|April 19, 2005
Phenotypic anchoring of global gene expression profiles induced by N-hydroxy-4-acetylaminobiphenyl and benzo[a]pyrene diol epoxide reveals correlations between expression profiles and mechanism of toxicityWen Luo, Wenhong Fan, Hong Xie, et al.Pageof 7