Mary E Aakre

Department of Cancer Biology, Vanderbilt-Ingram Cancer Center.

Publications of Mary E Aakre

  • Inhibiting Cxcr2 disrupts tumor-stromal interactions and improves survival in a mouse model of pancreatic ductal adenocarcinoma.

    Authors: Hideaki Ijichi, Anna Chytil, Agnieszka E Gorska, Mary E Aakre, Brian Bierie, Motohisa Tada, Dai Mohri, Koji Miyabayashi, Yoshinari Asaoka, Shin Maeda, Tsuneo Ikenoue, Keisuke Tateishi, Christopher V E Wright, Kazuhiko Koike, Masao Omata, Harold L Moses

    The Journal of clinical investigation. 09/2011; 121(10):4106-17.

    Pancreatic ductal adenocarcinoma (PDAC), one of the most lethal neoplasms, is characterized by an expanded stroma with marked fibrosis (desmoplasia). We previously generated pancreas
  • Disruption of bone morphogenetic protein receptor 2 (BMPR2) in mammary tumors promotes metastases through cell autonomous and paracrine mediators.

    Authors: Philip Owens, Michael W Pickup, Sergey V Novitskiy, Anna Chytil, Agnieszka E Gorska, Mary E Aakre, James West, Harold L Moses

    Proceedings of the National Academy of Sciences of the United States of America. 05/2011; 109(8):2814-9.

    Bone morphogenetic proteins (BMPs) are members of the TGF-β superfamily of signaling molecules. BMPs can elicit a wide range of effects in many cell types and have previously been shown to induce
  • Quantitative analysis of the secretome of TGF-beta signaling-deficient mammary fibroblasts.

    Authors: Baogang J Xu, Wenwei Yan, Bojana Jovanovic, Angel Q An, Nikki Cheng, Mary E Aakre, Yajun Yi, Jimmy Eng, Andrew J Link, Harold L Moses

    Proteomics. 07/2010; 10(13):2458-70.

    Transforming growth factor beta (TGF-beta) is a master regulator of autocrine and paracrine signaling pathways between a tumor and its microenvironment. Decreased expression of TGF-beta type II
  • Epidermal growth factor receptor plays a significant role in hepatocyte growth factor mediated biological responses in mammary epithelial cells.

    Authors: Alyssa R Bonine-Summers, Mary E Aakre, Kimberly A Brown, Carlos L Arteaga, Jennifer A Pietenpol, Harold L Moses, Nikki Cheng

    Cancer biology & therapy. 05/2007; 6(4):561-70.

    Breast cancers often have deregulated hepatocyte growth factor (HGF) and c-Met signaling that results in increased tumor growth and invasion. Elucidating the mechanism responsible for HGF/c-Met
  • Aggressive pancreatic ductal adenocarcinoma in mice caused by pancreas-specific blockade of transforming growth factor-beta signaling in cooperation with active Kras expression.

    Authors: Hideaki Ijichi, Anna Chytil, Agnieszka E Gorska, Mary E Aakre, Yoshio Fujitani, Shuko Fujitani, Christopher V E Wright, Harold L Moses

    Genes & development. 12/2006; 20(22):3147-60.

    Pancreatic ductal adenocarcinoma (PDAC) is an almost uniformly lethal disease in humans. Transforming growth factor-beta (TGF-beta) signaling plays an important role in PDAC progression, as indicated
  • Induction by transforming growth factor-beta1 of epithelial to mesenchymal transition is a rare event in vitro.

    Authors: Kimberly A Brown, Mary E Aakre, Agnieska E Gorska, James O Price, Sakina E Eltom, Jennifer A Pietenpol, Harold L Moses

    Breast cancer research : BCR. 02/2004; 6(3):R215-31.

    INTRODUCTION: Transforming growth factor (TGF)-beta1 is proposed to inhibit the growth of epithelial cells in early tumorigenesis, and to promote tumor cell motility and invasion in the later stages
  • Transgenic mice expressing a dominant-negative mutant type II transforming growth factor-beta receptor exhibit impaired mammary development and enhanced mammary tumor formation.

    Authors: Agnieszka E Gorska, Roy A Jensen, Yu Shyr, Mary E Aakre, Neil A Bhowmick, Harold L Moses

    The American journal of pathology. 10/2003; 163(4):1539-49.

    We have previously shown that expression of a dominant-negative type II transforming growth factor-beta receptor (DNIIR) in mammary epithelium under control of the MMTV promoter/enhancer causes
  • Transforming growth factor beta-regulated gene expression in a mouse mammary gland epithelial cell line.

    Authors: Lu Xie, Brian K Law, Mary E Aakre, Mary Edgerton, Yu Shyr, Neil A Bhowmick, Harold L Moses

    Breast cancer research : BCR. 02/2003; 5(6):R187-98.

    BACKGROUND: Transforming growth factor beta (TGF-beta) plays an essential role in a wide array of cellular processes. The most well studied TGF-beta response in normal epithelial cells is growth
  • Rapamycin potentiates transforming growth factor beta-induced growth arrest in nontransformed, oncogene-transformed, and human cancer cells.

    Authors: Brian K Law, Anna Chytil, Nancy Dumont, Elizabeth G. Hamilton, Mary E Waltner-Law, Mary E Aakre, Cassondra Covington, Harold L Moses

    Molecular and cellular biology. 01/2003; 22(23):8184-98.

    Transforming growth factor beta (TGF-beta) induces cell cycle arrest of most nontransformed epithelial cell lines. In contrast, many human carcinomas are refractory to the growth-inhibitory effect of
  • Transforming growth factor beta mimetics: discovery of 7-[4-(4-cyanophenyl)phenoxy]-heptanohydroxamic acid, a biaryl hydroxamate inhibitor of histone deacetylase.

    Authors: Keith B Glaser, Junling Li, Mary E Aakre, Douglas W Morgan, George Sheppard, Kent D Stewart, Jennifer Pollock, Paul Lee, Chad Z O'Connor, Steven N Anderson, Donna J Mussatto, Craig W Wegner, Harold L Moses

    Molecular cancer therapeutics. 09/2002; 1(10):759-68.

    Transforming growth factor beta (TGF-beta) is a multifunctional protein that has been shown to possess potent growth-inhibitory activity. To identify small molecular weight compounds with
  • Activation of the Erk pathway is required for TGF-beta1-induced EMT in vitro.

    Authors: Lu Xie, Brian K Law, Anna M Chytil, Kimberly A Brown, Mary E Aakre, Harold L Moses

    Neoplasia (New York, N.Y.). 6(5):603-10.

    Transforming growth factor-beta1 (TGF-beta1) can be tumor-suppressive through the activation of the Smad-mediated signaling pathway. TGF-beta1 can also enhance tumor progression by stimulating

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Keywords of Mary E Aakre

cancer cell lines
 
carcinoma cells
 
cell lines
 
cell morphology
 
factor beta
 
growth factor
 
growth factor beta
 
growth inhibitory effect
 
kinase activity
 
signaling pathway
 
76.21
Impact Points
11
Publications

Institutions

  • 2011
    • The University of Tokyo
      • Department of Gastroenterology
      Tokyo, Tokyo-to, Japan
  • 2003–2010
    • Vanderbilt University
      • Cancer Biology
      Nashville, MI, USA
  • 2003–2004
    • Vanderbilt University Medical Center
      Nashville, TN, USA
  • 2002
    • Abbott
      North Chicago, IL, USA