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  1. 1.   Hypoxia, stem cells and bone tumor
  2. Zeng, W.; Wan, R.; Zheng, Y. H.; Singh, S. R.; Wei, Y. Y.
  3. Cancer Letters. 2011, Dec; 313(2): 129-136.
  1. 2.   A new approach to measuring estrogen exposure and metabolism in epidemiologic studies
  2. Ziegler, R. G.; Faupel-Badger, J. M.; Sue, L. Y.; Fuhrman, B. J.; Falk, R. T.; Boyd-Morin, J.; Henderson, M. K.; Hoover, R. N.; Veenstra, T. D.; Keefer, L. K.; Xu, X.
  3. Journal of Steroid Biochemistry and Molecular Biology. 2010, Aug; 121(3-5): 538-545.
  1. 3.   Stability of 15 estrogens and estrogen metabolites in urine samples under processing and storage conditions typically used in epidemiologic studies
  2. Fuhrman, B. J.; Xu, X.; Falk, R. T.; Hankinson, S. E.; Veenstra, T. D.; Keefer, L. K.; Ziegler, R. G.
  3. International Journal of Biological Markers. 2010, Oct-Dec; 25(4): 185-194.
  1. 4.   A Liquid Chromatography-Mass Spectrometry Method for the Simultaneous Measurement of 15 Urinary Estrogens and Estrogen Metabolites: Assay Reproducibility and Interindividual Variability
  2. Falk, R. T.; Xu, X.; Keefer, L.; Veenstra, T. D.; Ziegler, R. G.
  3. Cancer Epidemiology Biomarkers & Prevention. 2008 17(12): 3411-3418.
  1. 5.   Hereditary leiomyomatosis associated with bilateral, massive, macronodular adrenocortical disease and atypical Cushing syndrome: A clinical and molecular genetic investigation
  2. Matyakhina, L.; Freedman, R. J.; Bourdeau, I.; Wei, M. H.; Stergiopoulos, S. G.; Chidakel, A.; Walther, M.; bu-Asab, M.; Tsokos, M.; Keil, M.; Toro, J.; Linehan, W. M.; Stratakis, C. A.
  3. Journal of Clinical Endocrinology & Metabolism. 2005, JUN; 90(6): 3773-3779.
  1. 6.   Microarray analysis of altered gene expression in murine fibroblasts transformed by nickel(II) to nickel(II)-resistant malignant phenotype
  2. Kowara, R.; Karaczyn, A.; Cheng, R. Y. S.; Salnikow, K.; Kasprzak, K. S.
  3. Toxicology and Applied Pharmacology. 2005, MAY 15; 205(1): 1-10.
  1. 7.   Canonical WNT signaling promotes mammary placode development and is essential for initiation of mammary gland morphogenesis
  2. Chu, E. Y.; Hens, J.; Andl, T.; Kairo, A.; Yamaguchi, T. P.; Brisken, C.; Glick, A.; Wysolmerski, J. J.; Millar, S. E.
  3. Development. 2004, OCT; 131(19): 4819-4829.
  1. 8.   Small molecule toxins targeting tumor receptors
  2. Dyba, M.; Tarasova, N. I.; Michejda, C. J.
  3. Current Pharmaceutical Design. 2004 10(19): 2311-2334.
  1. 9.   The murine perilipin gene: the lipid droplet-associated perilipins derive from tissue-specific, mRNA splice variants and define a gene family of ancient origin
  2. Lu, X. Y.; Gruia-Gray, J.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N. A.; Londos, C.; Kimmel, A. R.
  3. Mammalian Genome. 2001 12(9): 741-749.
  1. 10.   Targeted disruption of the nuclear receptor FXR/BAR impairs bile acid and lipid homeostasis
  2. Sinai, C. J.; Tohkin, M.; Miyata, M.; Ward, J. M.; Lambert, G.; Gonzalez, F. J.
  3. Cell. 2000 102(6): 731-744.
  1. 11.   Evidence for a functional role of the cholecystokinin-B/gastrin receptor in the human fetal and adult pancreas
  2. Saillan-Barreau, C.; Dufresne, M.; Clerc, P.; Sanchez, D.; Corominola, H.; Moriscot, C.; Guy-Crotte, O.; Escrieut, C.; Vaysse, N.; Gomis, R.; Tarasova, N.; Fourmy, D.
  3. Diabetes. 1999 48(10): 2015-2021.
  1. 12.   Reversal of hypercalcemia with the vitamin D analogue EB1089 in a human model of squamous cancer
  2. El Abdaimi, K.; Papavasiliou, V.; Rabbani, S. A.; Rhim, J. S.; Goltzman, D.; Kremer, R.
  3. Cancer Research. 1999 59(14): 3325-3328.
  1. 13.   Mode of Receptor Binding and Activation By Plasminogen-Related Growth Factors
  2. Miller, M.; Leonard, E. J.
  3. Febs Letters. 1998 429(1): 1-3.
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