221
Views
20
CrossRef citations to date
0
Altmetric
Research Article

Irradiation of normal mouse tissue increases the invasiveness of mammary cancer cells

, , , , &
Pages 472-482 | Received 23 Jul 2010, Accepted 19 Nov 2010, Published online: 13 Jan 2011

References

  • Archambeau JO, Pezner R, Wasserman T. 1995. Pathophysiology of irradiated skin and breast. International Journal of Radiation Oncology, Biology, Physics 31:1171–1185.
  • Bosman FT, Stamenkovic I. 2003. Functional structure and composition of the extracellular matrix. Journal of Pathology 200:423–428.
  • Clarke M, Collins R, Darby S, Davies C, Elphinstone P, Evans E, Godwin J, Gray R, Hicks C, James S, MacKinnon E, McGale P, McHugh T, Peto R, Taylor C, Wang Y. 2005. Effects of radiotherapy and of differences in the extent of surgery for early breast cancer on local recurrence and 15-year survival: An overview of the randomised trials. The Lancet 366:2087–2106.
  • Clifton KH, Jirtle R. 1975. Mammary carcinoma cell population growth in preirradiated and unirradiated transplant sites. Viable tumor growth, vascularity, and the tumor-bed effect. Radiology 117:459–465.
  • Coles CE, Moody AM, Wilson CB, Burnet NG. 2005. Reduction of radiotherapy-induced late complications in early breast cancer: the role of intensity-modulated radiation therapy and partial breast irradiation. Part I -normal tissue complications. Clinical Oncology 17:16–24.
  • De Conno F, Ventafridda V, Saita L. 1991. Skin problems in advanced and terminal cancer patients. Journal of Pain & Symptom Management 6:247–256.
  • Fillmore HL, VanMeter TE, Broaddus WC. 2001. Membrane-type matrix metalloproteinases (MT-MMPs): Expression and function during glioma invasion. Journal of Neuro-Oncoloy 53:187–202.
  • Fikrle T, Pizinger K. 2007. Digital computer analysis of dermatoscopical images of 260 melanocytic skin lesions; perimeter/area ratio for the differentiation between malignant melanomas and melanocytic nevi. Journal of the European Academy of Dermatology and Venereology 21:48–55.
  • Frazier TG, Wong RW, Rose D. 1989. Implications of accurate pathologic margins in the treatment of primary breast cancer. Archives of Surgery 124:37–38.
  • Freedman GM, Anderson PR, Li J, Eisenberg DF, Hanlon AL, Wang L, Nicolaou N. 2006. Intensity modulated radiation therapy (IMRT) decreases acute skin toxicity for women receiving radiation for breast cancer. American Journal of Clinical Oncology 29:66–70.
  • Giese A, Hagel C, Kim EL, Zapf S, Djawaheri J, Berens ME, Westphal M. 1999. Thromboxane synthase regulates the migratory phenotype of human glioma cells. Neuro-Oncology 1:3–13.
  • Giese A, Bjerkvig R, Berens ME, Westphal M. 2003. Cost of migration: Invasion of malignant gliomas and implications for treatment. Journal of Clinical Oncology 21:1624–1636.
  • Gillard JA, Reed MW, Buttle D, Cross SS, Brown NJ. 2004. Matrix metalloproteinase activity and immunohistochemical profile of matrix metalloproteinase-2 and −9 and tissue inhibitor of metalloproteinase-1 during human dermal wound healing. Wound Repair and Regeneration 12:295–304.
  • Harper JL, Franklin LE, Jenrette JM, Aguero EG. 2004. Skin toxicity during breast irradiation: Pathophysiology and management. Southern Medical Journal 97:989–993.
  • Harsolia A, Kestin L, Grills I, Wallace M, Jolly S, Jones C, Lala M, Martinez A, Schell S, Vicini FA. 2007. Intensity-modulated radiotherapy results in significant decrease in clinical toxicities compared with conventional wedge-based breast radiotherapy. International Journal of Radiation Oncology, Biology, Physics 68:1375–1380.
  • Holland R, Veling SH, Mravunac M, Hendriks JH. 1985. Histologic multifocality of Tis, T1-2 breast carcinomas. Implications for clinical trials of breast-conserving surgery. Cancer 56:979–990.
  • Jones JL, Glynn P, Walker R A. 1999. Expression of MMP-2 and MMP-9, their inhibitors, and the activator MT1- MMP in primary breast carcinomas. Journal of Pathology 189:161–168.
  • Jones RL, Salter J, A'Hern R, Nerurkar A, Parton M, Reis-Filho JS, Smith IE, Dowsett M. 2009. The prognostic significance of Ki67 before and after neoadjuvant chemotherapy in breast cancer. Breast Cancer Research & Treatment 116:53–68.
  • Kim YR, Savellano MD, Savellano DH, Weissleder R, Bogdanov A Jr. 2004. Measurement of tumor interstitial volume fraction: Method and implication for drug delivery. Magnetic Resonance in Medicine 52:485–494.
  • Lagios MD, Westdahl PR, Rose MR. 1981. The concept and implications of multicentriciy in breast carcinoma. Pathology annual. In: Sommers S, Rosen P, editors. New York; Appleton-Century-Crofts.
  • Lanari C, Luthy I, Lamb CA, Fabris V, Pagano E, Helguero LA, Sanjuan N, Merani S, Molinolo AA. 2001. Five novel hormone-responsive cell lines derived from murine mammary ductal carcinomas: In vivo and in vitro effects of estrogens and progestins. Cancer Research 61:293–302.
  • Leith JT, Padfield G, Quaranto L, Michelson S. 1992. Effect of preirradiation of transplantation site on growth characteristics and hypoxic fractions in human colon tumor xenografts. Cancer Research 52:2162–2166.
  • McDonough W, Tran N, Giese A, Norman SA, Berens ME. 1998. Altered gene expression in human astrocytoma cells selected for migration: I. Thromboxane synthase. Journal of Neuropathology & Experimental Neurology 57:449–455.
  • Merzak A, McCrea S, Koocheckpour S, Pilkington GJ. 1994. Control of human glioma cell growth, migration and invasion in vitro by transforming growth factor beta 1. British Journal of Cancer 70:199–203.
  • Milas L, Ito H, Hunter N, Jones S, Peters LJ. 1986. Retardation of tumor growth in mice caused by radiation-induced injury of tumor bed stroma: Dependency on tumor type. Cancer Research 46:723–727.
  • Milas L, Hirata H, Hunter N, Peters LJ. 1988. Effect of radiation-induced injury of tumor bed stroma on metastatic spread of murine sarcomas and carcinomas. Cancer Research 48:2116–2120.
  • Murakami R, Baba Y, Nishimura R, Furusawa M, Yokoyama T, Yamashita Y, Takahashi M, Yamashita N, Ono T. 1997. The effect of azelastine on acute radiation dermatitis in mice models. International Journal of Radiation Oncology, Biology, Physics 37:907–911.
  • Ng QS, Goh V, Milner J, Padhani AR, Saunders MI, Hoskin PJ. 2007. Acute tumor vascular effects following fractionated radiotherapy in human lung cancer: In vivo whole tumor assessment using volumetric perfusion computed tomography. International Journal of Radiation Oncology, Biology, Physics 67:417–424.
  • O'Brien PH, Sweitzer C, Sherman JO, Moss WT. 1969. Tumor bed effect of ionixing irradiation in experimental cancer of the colon. Cancer 23:451–454.
  • Ohuchida K, Mizumoto K, Murakami M, Qian LW, Sato N, Nagai E, Matsumoto K, Nakamura T, Tanaka M. 2004. Radiation to stromal fibroblasts increases invasiveness of pancreatic cancer cells through tumor-stromal interactions. Cancer Research 64:3215–3222.
  • Paquette B, Bisson M, Therriault H, Lemay R, Pare M, Banville P, Cantin AM. 2003. Activation of matrix metalloproteinase-2 and -9 by 2- and 4-hydroxyestradiol. Journal of Steroid Biochemistry and Molecular Biology 87:65–73.
  • Paquette B, Baptiste C, Therriault H, Arguin G, Plouffe B, Lemay R. 2007. In vitro irradiation of basement membrane enhances the invasiveness of breast cancer cells. British Journal of Cancer 97:1505–1512.
  • Park CM, Park MJ, Kwak HJ, Lee HC, Kim MS, Lee SH, Park IC, Rhee CH, Hong SI. 2006. Ionizing radiation enhances matrix Metalloproteinase-2 secretion and invasion of glioma cells through Src/epidermal growth factor receptor-mediated p38/Akt and phosphatidylinositol 3-kinase/Akt signaling pathways. Cancer Research 66:8511–8519.
  • Qian LW, Mizumoto K, Urashima T, Nagai E, Maehara N, Sato N, Nakajima M, Tanaka M. 2002. Radiation-induced increase in invasive potential of human pancreatic cancer cells and its blockade by a matrix metalloproteinase inhibitor, CGS27023. Clinical Cancer Research 8:1223–1227.
  • Riedel F, Philipp K, Sadick H, Goessler U, Hormann K, Verse T. 2005. Immunohistochemical analysis of radiation-induced non-healing dermal wounds of the head and neck. In Vivo 19:343–350.
  • Riekki R, Jukkola A, Sassi ML, Hoyhtya M, Kallioinen M, Risteli J, Oikarinen A. 2000. Modulation of skin collagen metabolism by irradiation: Collagen synthesis is increased in irradiated human skin. British Journal of Dermatology 142:874–880.
  • Rofstad EK, Mathiesen B, Henriksen K, Kindem K, Galappathi K. 2005. The tumor bed effect: Increased metastatic dissemination from hypoxia-induced up-regulation of metastasis-promoting gene products. Cancer Research 65:2387–2396.
  • Rooprai HK, McCormick D. 1997. Proteases and their inhibitors in human brain tumours: A review. Anticancer Research 17:4151–4162.
  • Speake WJ, Dean RA, Kumar A, Morris TM, Scholefield JH, Watson SA. 2005. Radiation induced MMP expression from rectal cancer is short lived but contributes to in vitro invasion. European Journal of Surgical Oncology 31:869–874.
  • Susskind H, Hymowitz MH, Lau YH, Atkins HL, Hurewitz AN, Valentine ES, Meek AG, Zucker S. 2003. Increased plasma levels of matrix metalloproteinase-9 and tissue inhibitor of metalloproteinase-1 in lung and breast cancer are altered during chest radiotherapy. International Journal of Radiation Oncology, Biology, Physics 56:1161–1169.
  • Talvensaari-Mattila A, Paakko P, Turpeenniemi-Hujanen T. 2003. Matrix metalloproteinase-2 (MMP-2) is associated with survival in breast carcinoma. British Journal of Cancer 89:1270–1275.
  • Wang J, Sun Y, Wu S. 2000. Gamma-irradiation induces matrix metalloproteinase II expression in a p53-dependent manner. Molecular Carcinogenesis 27:252–258.
  • Wild-Bode C, Weller M, Rimner A, Dichgans J, Wick W. 2001. Sublethal irradiation promotes migration and invasiveness of glioma cells: Implications for radiotherapy of human glioblastoma. Cancer Research 61:2744–2750.
  • Yankeelov TE, Luci JJ, Lepage M, Li R, Debusk L, Lin PC, Price RR, Gore JC. 2005. Quantitative pharmacokinetic analysis of DCE-MRI data without an arterial input function: A reference region model. Magnetic Resonance Imaging 23:519–529.
  • Zhai GG, Malhotra R, Delaney M, Latham D, Nestler U, Zhang M, Mukherjee N, Song Q, Robe P, Chakravarti A. 2006. Radiation enhances the invasive potential of primary glioblastoma cells via activation of the Rho signaling pathway. Journal of Neuro-Oncology 76:227–237.
  • Zhao W, Goswami PC, Robbins ME. 2004. Radiation-induced up-regulation of Mmp2 involves increased mRNA stability, redox modulation, and MAPK activation. Radiation Research 161:418–429.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.