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  1. 1.   SERPINB3-MYC axis induces the basal-like/squamous subtype and enhances disease progression in pancreatic cancer
  2. Ohara, Yuuki; Tang, Wei; Liu, Huaitian; Yang, Shouhui; Dorsey, Tiffany H; Cawley, Helen; Moreno, Paloma; Chari,Raj; Guest,Mary; Azizian, Azadeh; Gaedcke, Jochen; Ghadimi, Michael; Hanna, Nader; Ambs, Stefan; Hussain, S Perwez
  3. Cell Reports. 2023, Nov 18; 42(12): 113434.
  1. 2.   Cancer stem cells as the source of tumor associated myoepithelial cells in the tumor microenvironment developing ductal carcinoma in situ
  2. Afify, Said M; Hassan, Ghmkin; Zahra, Maram H; Nawara, Hend M; Abu Quora, Hagar A; Osman, Amira; Mansour, Hager; Kumon, Kazuki; Seno, Akimasa; Chen, Ling; Satoh, Ayano; Salomon,David; Seno, Masaharu
  3. Biomaterials. 2023, Jul 20; 301: 122249.
  1. 3.   A pharmacogenomic analysis using L1000CDS2 identifies BX-795 as a potential anticancer drug for primary pancreatic ductal adenocarcinoma cells
  2. Choi, Eun A; Choi, Yeon Sook; Lee, Eun Ji; Singh,Shree Ram; Kim, Song Cheol; Chang, Suhwan
  3. Cancer letters. 2019, Aug 09; 465: 82-93.
  1. 4.   Cholecystokinin Receptor-Targeted Polyplex Nanoparticle Inhibits Growth and Metastasis of Pancreatic Cancer
  2. Burks, Julian; Nadella, Sandeep; Mahmud, Abdullah; Mankongpaisarnrung, Charoen; Wang, Juan; Hahm, Jong-In; Tucker, Robin D; Shivapurkar, Narayan; Stern, Steve; Smith, Jill P
  3. Cellular and Molecular Gastroenterology and Hepatology. 2018, Mar 07; 6(1): 17-32.
  1. 5.   Pathology of genetically engineered mouse models of pancreatic exocrine cancer: Consensus report and recommendations
  2. Hruban, R. H.; Adsay, N. V.; Albores-Saavedra, J.; Anver, M. R.; Biankin, A. V.; Boivin, G. P.; Furth, E. E.; Furukawa, T.; Klein, A.; Klimstra, D. S.; Kloppel, G.; Lauwers, G. Y.; Longnecker, D. S.; Luttges, J.; Maitra, A.; Offerhaus, G. J. A.; Perez-Gallego, L.; Redston, M.; Tuveson, D. A.
  3. Cancer Research. 2006, Jan 1; 66(1): 95-106.
  1. 6.   Effect of posttranscriptional regulatory elements on transgene expression and virus production in the context of retrovirus vectors
  2. Hlavaty, J.; Schittmayer, M.; Stracke, A.; Jandl, G.; Knapp, E.; Felber, B. K.; Salmons, B.; Gunzburg, W. H.; Renner, M.
  3. Virology. 2005, OCT 10; 341(1): 1-11.
  1. 7.   Caffeine suppresses metastasis in a transgenic mouse model: a prototype molecule for prophylaxis of metastasis
  2. Yang, H. Y.; Rouse, J.; Lukes, L.; Lancaster, M.; Veenstra, T.; Zhou, M.; Shi, Y.; Park, Y. G.; Hunter, K.
  3. Clinical & Experimental Metastasis. 2004 21(8): 719-735.
  1. 8.   Sensitization of pancreatic tumor xenografts to carmustine and temozolomide by inactivation of their O-6-methylguanine-DNA methyltransferase with O-6-benzylguanine or O-6-benzyl-2 '- deoxyguanosine
  2. Kokkinakis, D. M.; Ahmed, M. M.; Chendil, D.; Moschel, R. C.; Pegg, A. E.
  3. Clinical Cancer Research. 2003 9(10, Part 1): 3801-3807.
  1. 9.   Adipose tissue: A vital in vivo role in mammary gland development but not differentiation
  2. Couldrey, C.; Moitra, J.; Vinson, C.; Anver, M.; Nagashima, K.; Green, J.
  3. Developmental Dynamics. 2002 223(4): 459-468.
  1. 10.   Side-branching in the mammary gland: the progesterone-Wnt connection
  2. Robinson, G. W.; Hennighausen, L.; Johnson, P. F.
  3. Genes & Development. 2000 14(8): 889-894.
  1. 11.   The C/Ebp-Beta Transcription Factor Regulates Epithelial Cell Proliferation and Differentiation in the Mammary Gland
  2. Robinson, G. W.; Johnson, P. F.; Hennighausen, L.; Sterneck, E.
  3. Genes & Development. 1998 12(12): 1907-1916.
  1. 12.   Genetic characterization of the murine Ym1 gene and identification of a cluster of highly homologous genes
  2. Jin, H. M.; Copeland, N. G.; Gilbert, D. J.; Jenkins, N. A.; Kirkpatrick, R. B.; Rosenberg, M.
  3. Genomics. 1998 54(2): 316-322.
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