The Role of the Microenvironment in Prostate Cancer-Associated Bone Disease

作者: Christina J. Turner , Claire M. Edwards

DOI: 10.1007/S11914-016-0323-2

关键词:

摘要: The bone is a common site for metastasis in patients with advanced prostate carcinoma, and provides ‘fertile’ milieu which stimulates tumour growth associated disease. For years, the concept of treatment strategies has remained targeting itself; however, occurrence chemoresistance remains challenge now more than ever. attraction microenvironment order to disrupt localisation proliferation stems from idea that stromal cells are superiorly stable at genetic level, thus decreasing risk resistance manifestation. In this review, we will discuss recent findings regards pathogenesis cancer-induced disease therapeutic an aim evaluate ever increasing role progression.

参考文章(57)
Xiaozhou Mou, Dongsheng Huang, Xiaoyi Chen, Fanlong Liu, Shibing Wang, Huanrong Lan, Ketao Jin, Anti-angiogenesis or pro-angiogenesis for cancer treatment: focus on drug distribution. International Journal of Clinical and Experimental Medicine. ,vol. 8, pp. 8369- 8376 ,(2015)
Karen A. Autio, Michael J. Morris, Targeting bone physiology for the treatment of metastatic prostate cancer. Clinical advances in hematology & oncology. ,vol. 11, pp. 134- 143 ,(2013)
Shahrokh F Shariat, Moshe Shalev, Andres Menesses-Diaz, Isaac Yi Kim, Michael W Kattan, Thomas M Wheeler, Kevin M Slawin, None, Preoperative Plasma Levels of Transforming Growth Factor Beta1(TGF-β1) Strongly Predict Progression in Patients Undergoing Radical Prostatectomy Journal of Clinical Oncology. ,vol. 19, pp. 2856- 2864 ,(2001) , 10.1200/JCO.2001.19.11.2856
Ning Wang, Freyja E Docherty, Hannah K Brown, Kimberley J Reeves, Anne CM Fowles, Penelope D Ottewell, T Neil Dear, Ingunn Holen, Peter I Croucher, Colby L Eaton, Prostate Cancer Cells Preferentially Home to Osteoblast‐rich Areas in the Early Stages of Bone Metastasis: Evidence From In Vivo Models Journal of Bone and Mineral Research. ,vol. 29, pp. 2688- 2696 ,(2014) , 10.1002/JBMR.2300
Aimalie L. Hardaway, Mackenzie K. Herroon, Erandi Rajagurubandara, Izabela Podgorski, Bone marrow fat: linking adipocyte-induced inflammation with skeletal metastases Cancer and Metastasis Reviews. ,vol. 33, pp. 527- 543 ,(2014) , 10.1007/S10555-013-9484-Y
Christophe F. Chantrain, Olivier Feron, Etienne Marbaix, Yves A. DeClerck, Bone marrow microenvironment and tumor progression Cancer Microenvironment. ,vol. 1, pp. 23- 35 ,(2008) , 10.1007/S12307-008-0010-7
Jung-Kang Jin, Farshid Dayyani, Gary E. Gallick, Steps in prostate cancer progression that lead to bone metastasis International Journal of Cancer. ,vol. 128, pp. 2545- 2561 ,(2011) , 10.1002/IJC.26024
Ning Wang, Freyja Docherty, Hannah K. Brown, Kim Reeves, Anne Fowles, Michelle Lawson, Penelope D. Ottewell, Ingunn Holen, Peter I. Croucher, Colby L. Eaton, Mitotic quiescence, but not unique “stemness,” marks the phenotype of bone metastasis-initiating cells in prostate cancer The FASEB Journal. ,vol. 29, pp. 3141- 3150 ,(2015) , 10.1096/FJ.14-266379
Yu Zheng, Hong Zhou, Colin R. Dunstan, Robert L. Sutherland, Markus J. Seibel, The role of the bone microenvironment in skeletal metastasis. Journal of bone oncology. ,vol. 2, pp. 47- 57 ,(2013) , 10.1016/J.JBO.2012.11.002
Tilman Todenhöfer, Arnulf Stenzl, Lorenz C. Hofbauer, Tilman D. Rachner, Targeting bone metabolism in patients with advanced prostate cancer: current options and controversies. International Journal of Endocrinology. ,vol. 2015, pp. 838202- 838202 ,(2015) , 10.1155/2015/838202