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  1. 1.   Development and validation of an LC-MS/MS generic assay platform for small molecule drug bioanalysis
  2. Parise, Robert A; Covey, Joseph M; Hollingshead,Melinda; Srivastava,Apurva; Synold, Timothy W; Beumer, Jan H
  3. Journal of pharmaceutical and biomedical analysis. 2021, Sep 5; 203: 114185.
  1. 2.   Relationship of Serum Progesterone and Progesterone Metabolites with Mammographic Breast Density and Terminal Ductal Lobular Unit Involution among Women Undergoing Diagnostic Breast Biopsy
  2. Hada, Manila; Oh, Hannah; Fan, Shaoqi; Falk, Roni T; Geller, Berta; Vacek, Pamela; Weaver, Donald; Shepherd, John; Wang, Jeff; Fan, Bo; Herschorn, Sally; Brinton, Louise A; Xu,Xia; Sherman, Mark E; Trabert, Britton; Gierach, Gretchen L
  3. Journal of clinical medicine. 2020, Jan 17; 9(1):
  1. 3.   Estrogen Metabolism and Risk of Postmenopausal Endometrial and Ovarian Cancer: the B approximately FIT Cohort
  2. Dallal, C. M.; Lacey, J. V., Jr.; Pfeiffer, R. M.; Bauer, D. C.; Falk, R. T.; Buist, D. S.; Cauley, J. A.; Hue, T. F.; LaCroix, A. Z.; Tice, J. A.; Veenstra, T. D.; Xu, X.; Brinton, L. A.
  3. Hormones & Cancer. 2016, Feb; 7(1): 49-64.
  1. 4.   Estrogen Metabolism and Risk of Breast Cancer in Postmenopausal Women
  2. Fuhrman, B. J.; Schairer, C.; Gail, M. H.; Boyd-Morin, J.; Xu, X.; Sue, L. Y.; Buys, S. S.; Isaacs, C.; Keefer, L. K.; Veenstra, T. D.; Berg, C. D.; Hoover, R. N.; Ziegler, R. G.
  3. Journal of the National Cancer Institute. 2012, Feb; 104(4): 326-339.
  1. 5.   Quantitation of Multiple Sphingolipid Classes Using Normal and Reversed-Phase LC-ESI-MS/MS: Comparative Profiling of Two Cell Lines
  2. Masood, M. A.; Rao, R. P.; Acharya, J. K.; Blonder, J.; Veenstra, T. D.
  3. Lipids. 2012, Feb; 47(2): 209-226.
  1. 6.   A sensitive and rapid ultra HPLC-MS/MS method for the simultaneous detection of clopidogrel and its derivatized active thiol metabolite in human plasma
  2. Peer, C. J.; Spencer, S. D.; VanDenBerg, D. A. H.; Pacanowski, M. A.; Horenstein, R. B.; Figg, W. D.
  3. Journal of Chromatography B-Analytical Technologies in the Biomedical and Life Sciences. 2012, Jan; 880: 132-139.
  1. 7.   Molecular profiling of the human nasal epithelium: A proteomics approach
  2. Simoes, T.; Charro, N.; Blonder, J.; Faria, D.; Couto, F. M.; Chan, K. C.; Waybright, T.; Isaaq, H. J.; Veenstra, T. D.; Penque, D.
  3. Journal of Proteomics. 2011, Dec; 75(1): 56-69.
  1. 8.   Challenges in plasma membrane phosphoproteomics
  2. Orsburn, B. C.; Stockwin, L. H.; Newton, D. L.
  3. Expert Review of Proteomics. 2011, Aug; 8(4): 483-494.
  1. 9.   A Reproducible and High-Throughput HPLC/MS Method To Separate Sarcosine from alpha- and beta-Alanine and To Quantify Sarcosine in Human Serum and Urine
  2. Meyer, T. E.; Fox, S. D.; Issaq, H. J.; Xu, X.; Chu, L. W.; Veenstra, T. D.; Hsing, A. W.
  3. Analytical Chemistry. 2011, Jul; 83(14): 5735-5740.
  1. 10.   Quantitation of ceramide phosphorylethanolamines containing saturated and unsaturated sphingoid base cores
  2. Masood, M. A.; Yuan, C. Q.; Acharya, J. K.; Veenstra, T. D.; Blonder, J.
  3. Analytical Biochemistry. 2010, May 15; 400(2): 259-269.
  1. 11.   Characterization of the human ventricular cerebrospinal fluid proteome obtained from hydrocephalic patients
  2. Waybright, T.; Avellino, A. M.; Ellenbogen, R. G.; Hollinger, B. J.; Veenstra, T. D.; Morrison, R. S.
  3. Journal of Proteomics. 2010, Apr; 73(6): 1156-1162.
  1. 12.   Quantitation of Steroid Hormones in Thin Fresh Frozen Tissue Sections
  2. Blonder, J.; Johann, D. J.; Veenstra, T. D.; Xiao, Z.; Emmert-Buck, M. R.; Ziegler, R. G.; Rodriguez-Canales, J.; Hanson, J. A.; Xu, X.
  3. Analytical Chemistry. 2008 80(22): 8845-8852.
  1. 13.   Improved titanium dioxide enrichment of phosphopeptides from HeLa cells and high confident phosphopeptide identification by cross-validation of MS/MS and MS/MS/MS spectra
  2. Yu, L. R.; Zhu, Z. Y.; Chan, K. C.; Issaq, H. J.; Dimitrov, D. S.; Veenstra, T. D.
  3. Journal of Proteome Research. 2007, Nov; 6(11): 4150-4162.
  1. 14.   Phosphoproteornics for the discovery of kinases as cancer biornarkers and drug targets
  2. Yu, L. R.; Issaq, H. J.; Veenstra, T. D.
  3. Proteomics Clinical Applications. 2007, Sep; 1(9): 1042-1057.
  1. 15.   Proteomic analysis of protein complexes
  2. Zhou, M.; Veenstra, T. D.
  3. Proteomics. 2007, Aug; 7(16): 2688-2697.
  1. 16.   Analysis of fifteen estrogen metabolites using packed column supercritical fluid chromatography-mass spectrometry
  2. Xu, X.; Roman, J. M.; Veenstra, T. D.; Van Anda, J.; Ziegler, R. G.; Issaq, H. J.
  3. Analytical Chemistry. 2006, MAR 1; 78(5): 1553-1558.
  1. 17.   LC-MS in metabonomics: Optimization of experimental conditions for the analysis of metabolites in human urine
  2. Waybright, T. J.; Van, Q. N.; Muschik, G. M.; Conrads, T. P.; Veenstra, T. D.; Issaq, H. J.
  3. Journal of Liquid Chromatography & Related Technologies. 2006 29(17): 2475-2497.
  1. 18.   Cancer proteomics: many technologies, one goal
  2. Conrads, T. P.; Hood, B. L.; Petricoin, E. F.; Liotto, L. A.; Veenstra, T. D.
  3. Expert Review of Proteomics. 2005, Oct; 2(5): 693-703.
  1. 19.   Analysis of albumin-associated peptides and proteins from ovarian cancer patients
  2. Lowenthal, M. S.; Mehta, A. I.; Frogale, K.; Bandle, R. W.; Araujo, R. P.; Hood, B. L.; Veenstra, T. D.; Conrads, T. P.; Goldsmith, P.; Fishman, D.; Petricoin, E. F.; Liotta, L. A
  3. Clinical Chemistry. 2005, OCT; 51(10): 1933-1945.
  1. 20.   Multidimensional separation of peptides for effective proteomic analysis
  2. Issaq, H. J.; Chan, K. C.; Janini, G. M.; Conrads, T. P.; Veenstra, T. D.
  3. Journal of Chromatography B-Analytical Technologies in the Biomedical and Life Sciences. 2005, MAR 5; 817(1): 35-47.
  1. 21.   Quantitative profiling of the detergent-resistant membrane proteome of Iota-b toxin induced Vero cells
  2. Blonder, J.; Hale, M. L.; Chan, K. C.; Yu, L. R.; Lucas, D. A.; Conrads, T. P.; Zhou, M.; Popoff, M. R.; Issaq, H. J.; Stiles, B. G.; Veenstra, T. D.
  3. Journal of Proteome Research. 2005, MAR-APR; 4(2): 523-531.
  1. 22.   Investigation of the mouse serum proteome
  2. Hood, B. L.; Zhou, M.; Chan, K. C.; Lucas, D. A.; Kim, G. J.; Issaq, H. J.; Veenstra, T. D.; Conrads, T. P.
  3. Journal of Proteome Research. 2005, SEP-OCT; 4(5): 1561-1568.
  1. 23.   Identification of oxidized mitochondria proteins in alcohol-exposed human hepatoma cells and mouse liver
  2. Suh, S. K.; Hood, B. L.; Kim, B. J.; Conrads, T. P.; Veenstra, T. D.; Song, B. J.
  3. Proteomics. 2004, NOV; 4(11): 3401-3412.
  1. 24.   A proteomic characterization of the plasma membrane of human epidermis by high-throughput mass spectrometry
  2. Blonder, J.; Terunuma, A.; Conrads, T. R.; Chan, K. C.; Yee, C.; Lucas, D. A.; Schaefer, C. F.; Yu, L. R.; Issaq, H. J.; Veenstra, T. D.; Vogel, J. C.
  3. Journal of Investigative Dermatology. 2004, OCT; 123(4): 691-699.
  1. 25.   A detergent- and cyanogen bromide-free method for integral membrane proteomics: Application to Halobacterium purple membranes and the human epidermal membrane proteome
  2. Blonder, J.; Conrads, T. P.; Yu, L. R.; Terunuma, A.; Janini, G. M.; Issaq, H. J.; Vogel, J. C.; Veenstra, T. D.
  3. Proteomics. 2004 4(1): 31-45.
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