Publications

Found 93 results
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Journal Article
Costet P, Lalanne F, Gerbod-Giannone MC, Molina JR, Fu X, Lund EG, Gudas LJ, Tall AR.  2003.  Retinoic acid receptor-mediated induction of ABCA1 in macrophages.. Mol Cell Biol. 23(21):7756-66.
Boorjian S, Scherr DS, Mongan NP, Zhuang Y, Nanus DM, Gudas LJ.  2005.  Retinoid receptor mRNA expression profiles in human bladder cancer specimens.. Int J Oncol. 26(4):1041-8.
Orfali N, McKenna SL, Cahill MR, Gudas LJ, Mongan NP.  2014.  Retinoid receptor signaling and autophagy in acute promyelocytic leukemia.. Exp Cell Res. 324(1):1-12.
Orfali N, McKenna SL, Cahill MR, Gudas LJ, Mongan NP.  2014.  Retinoid receptor signaling and autophagy in acute promyelocytic leukemia.. Exp Cell Res. 324(1):1-12.
Melis M, Tang X-H, Trasino SE, Gudas LJ.  2022.  Retinoids in the Pathogenesis and Treatment of Liver Diseases.. Nutrients. 14(7)
Schupp M, Lefterova MI, Janke J, Leitner K, Cristancho AG, Mullican SE, Qatanani M, Szwergold N, Steger DJ, Curtin JC et al..  2009.  Retinol saturase promotes adipogenesis and is downregulated in obesity.. Proc Natl Acad Sci U S A. 106(4):1105-10.
Rezende NC, Lee M-Y, Monette S, Mark W, Lu A, Gudas LJ.  2011.  Rex1 (Zfp42) null mice show impaired testicular function, abnormal testis morphology, and aberrant gene expression.. Dev Biol. 356(2):370-82.
Rezende NC, Lee M-Y, Monette S, Mark W, Lu A, Gudas LJ.  2011.  Rex1 (Zfp42) null mice show impaired testicular function, abnormal testis morphology, and aberrant gene expression.. Dev Biol. 356(2):370-82.
Sureshbabu A, Patino E, Ma KC, Laursen K, Finkelsztein EJ, Akchurin O, Muthukumar T, Ryter SW, Gudas L, Choi AMK et al..  2018.  RIPK3 promotes sepsis-induced acute kidney injury via mitochondrial dysfunction.. JCI Insight. 3(11)
Sureshbabu A, Patino E, Ma KC, Laursen K, Finkelsztein EJ, Akchurin O, Muthukumar T, Ryter SW, Gudas L, Choi AMK et al..  2018.  RIPK3 promotes sepsis-induced acute kidney injury via mitochondrial dysfunction.. JCI Insight. 3(11)
Gudas LJ, Fu L, Minton DR, Mongan NP, Nanus DM.  2014.  The role of HIF1α in renal cell carcinoma tumorigenesis.. J Mol Med (Berl). 92(8):825-36.
Gudas LJ, Fu L, Minton DR, Mongan NP, Nanus DM.  2014.  The role of HIF1α in renal cell carcinoma tumorigenesis.. J Mol Med (Berl). 92(8):825-36.
Minton DR, Fu L, Mongan NP, Shevchuk MM, Nanus DM, Gudas LJ.  2016.  Role of NADH Dehydrogenase (Ubiquinone) 1 Alpha Subcomplex 4-Like 2 in Clear Cell Renal Cell Carcinoma.. Clin Cancer Res. 22(11):2791-801.
Minton DR, Fu L, Mongan NP, Shevchuk MM, Nanus DM, Gudas LJ.  2016.  Role of NADH Dehydrogenase (Ubiquinone) 1 Alpha Subcomplex 4-Like 2 in Clear Cell Renal Cell Carcinoma.. Clin Cancer Res. 22(11):2791-801.
van der Mijn JC, Awamlh BAl Hussein, Khan AIslam, Posada-Calderon L, Oromendia C, Fainberg J, Alshak M, Elahjji R, Pierce H, Taylor B et al..  2019.  Validation of risk factors for recurrence of renal cell carcinoma: Results from a large single-institution series.. PLoS One. 14(12):e0226285.
Mongan NP, Gudas LJ.  2005.  Valproic acid, in combination with all-trans retinoic acid and 5-aza-2'-deoxycytidine, restores expression of silenced RARbeta2 in breast cancer cells.. Mol Cancer Ther. 4(3):477-86.