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  1. 1.   PIM1 targeted degradation prevents the emergence of chemoresistance in prostate cancer
  2. Torres-Ayuso, Pedro; Katerji,Meghri; Mehlich, Dawid; Lookingbill, Sophia A; Sabbasani, Venkata R; Liou, Hope; Casillas, Andrea L; Chauhan, Shailender S; Serwa, Remigiusz; Rubin,Maxine; Marusiak, Anna A; Swenson, Rolf E; Warfel, Noel A; Brognard,John
  3. Cell Chemical Biology. 2023, Nov 16;
  1. 2.   Targeting chemoresistance in Xp11.2 translocation renal cell carcinoma using a novel polyamide-chlorambucil conjugate
  2. Funasaki, Shintaro; Mehanna, Sally; Ma, Wenjuan; Nishizawa, Hidekazu; Kamikubo, Yasuhiko; Sugiyama, Hiroshi; Ikeda, Shuji; Motoshima, Takanobu; Hasumi, Hisashi; Linehan, W Marston; Schmidt,Laura; Ricketts, Chris; Suda, Toshio; Oike, Yuichi; Kamba, Tomomi; Baba, Masaya
  3. Cancer Science. 2022, Apr 09;
  1. 3.   Exploring role of 5hmC as potential marker of chemoresistance
  2. Kharat,Suhas; Sharan,Shyam
  3. MOLECULAR & CELLULAR ONCOLOGY. 2020, Oct 22; 7(6): 1827904.
  1. 4.   BMI1 silencing enhances docetaxel activity and impairs antioxidant response in prostate cancer
  2. Crea, F.; Serrat, M. A. D.; Hurt, E. M.; Thomas, S. B.; Danesi, R.; Farrar, W. L.
  3. International Journal of Cancer. 2011, Apr; 128(8): 1946-1954.
  1. 5.   Molecular Evolutionary Analysis of ABCB5: The Ancestral Gene Is a Full Transporter with Potentially Deleterious Single Nucleotide Polymorphisms
  2. Moitra, K.; Scally, M.; McGee, K.; Lancaster, G.; Gold, B.; Dean, M.
  3. Plos One. 2011, Jan; 6(1): 12.
  1. 6.   Activation of p73 and induction of Noxa by DNA damage requires NF-kappa B
  2. Martin, A. G.; Trama, J.; Crighton, D.; Ryan, K. M.; Fearnhead, H. O.
  3. Aging-Us. 2009, Mar; 1(3): 335-349.
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