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Age-Dependent Changes in Radiosensitivity of Coronary Arteries

Age-dependent changes in oxygen tension, radiation dose and sensitivity within normal and diseased coronary arteries–Part C: Oxygen effect and its implications on high- and low-LET dose

Pages 858-865 | Received 17 Jun 2008, Accepted 22 Jul 2008, Published online: 03 Jul 2009

References

  • Andreassi M G, Botto N. Genetic instability, DNA damage and atherosclerosis. Cell Cycle 2003; 2: 224–227
  • Barendsen G W, Coot C J, Van Kersen O R, Bewley D K, Field S B, Parnell C J. The effect of oxygen on impairment of the proliferative capacity of human cells in culture by ionising radiations of different LET. International Journal of Radiation Biology 1966; 10: 317–327
  • Basavaraju S R, Easterly C E. Pathophysiological effects of radiation on atherosclerosis development and progression, and the incidence of cardiovascular complications. Medical Physics 2002; 29: 2391–2403
  • Benditt E P, Benditt J M. Evidence for a monoclonal origin of human atherosclerotic plaques. Proceedings of the National Academy of Sciences of the United States of America 1973; 70: 1753–1756
  • Boivin J F, Hutchison G B, Lubin J H, Mauch P. Coronary artery disease mortality in patients treated for Hodgkin's disease. Cancer 1992; 69: 1241–1247
  • Boyd M, Ross S C, Dorrens J, et al. Radiation-induced biologic bystander effect elicited in vitro by targeted radiopharmaceuticals labeled with α-, ß-, and Auger electron–emitting radionuclides. Journal of Nuclear Medicine 2006; 47: 1007–1015
  • Daşu A, Denekamp J. New insights into factors influencing the clinically relevant oxygen enhancement ratio. Radiotherapy and Oncology 1998; 46: 269–277
  • Dewey D L. Effect of oxygen and nitric acid on the radiosensitivity of human cells in tissue culture. Nature (London) 1960; 186: 780–782
  • Doherty T M, Fitzpatrick L A, Inoue D, Qiao J H, Fishbein M C, Detrano R C, Shah P K, Rajavashisth T B. Molecular, endocrine, and genetic mechanisms of arterial calcification. Endocrine Review 2004; 25: 629–672
  • Grumann T, Arab A, Bode C, Guttenberger R, Hehrlein C. Reoxygenation of human coronary smooth muscle cells suppresses HIF-1α gene expression and augments radiation-induced growth delay and apoptosis. Strahlentherapie und Onkologie 2006; 182: 16–21
  • Hekimi S, Guarente L. Genetics and the specificity of the aging process. Science 2003; 299: 1351–1354
  • Hill M A, Steven D L, Marsden S J, Allott R, Turcu I CE, Goodhead D T. Is the increased relative biological effectiveness of high LET particles due to spatial or temporal effects? Characterization and OER in V79-4 cells. Physics in Medicine and Biology 2002; 47: 3543–3555
  • Hoel D G. Ionizing radiation and cardiovascular disease. Annals of the New York Academy of Sciences 2006; 1076: 309–317
  • Hooning M J, Aleman B MP, Klijn J GM, van Leeuwen F E. Cardiovascular mortality following breast cancer treatment. European Journal Cancer Supplement 2004; 2: 140–141
  • Howard-Flanders P, Alper T. The sensitivity of microorganisms to irradiation under controlled gas conditions. Radiation Research 1957; 7: 518–540
  • Kachnic L A, Powell S N. Can ICAM modulation prevent lung injury from ionizing radiation?. Journal of the National Cancer Institute 2002; 94: 704–705
  • Kanasugi Y, Hamada N, Wada S, Funayama T, Sakashita T, Kakizaki T, Kobayashi Y, Takakura K. Role of DNA-PKcs in the bystander effect after low- or high-LET irradiation. International Journal of Radiation Biology 2007; 83: 73–80
  • Lau B MF, Nikezic D, Yu K N. Killing of target cells due to radon progeny in human lung. Radiation Protection Dosimetry 2006; 122: 534–536
  • Li X A, Wang R, Yu C, Suntharalingam B. Beta versus gamma for catheter-based intravasular brachytherapy: dosimetric perspectives in the presence of metallic stents and calcified plaques. International Journal of Radiation Oncology, Biology, Physics 2000; 46: 1043–1049
  • Little M P, Tawn E J, Tzoulaki I, Wakeford R, Hildebrandt G, Paris F, Tapio S, Elliott P. A systematic review of epidemiological associations between low and moderate doses of ionizing radiation and late cardiovascular effects, and their possible mechanisms. Radiation Research 2008; 169: 99–109
  • Ling C C, Michaels H B, Gerweck L E, Epp E R, Peterson E C. Oxygen sensitization of mammalian cells under different conditions. Radiation Research 1981; 86: 325–340
  • Leonard B E. Adaptive response and human benefit: Part I. A microdosimetry dose-dependent model. International Journal of Radiation Biology 2007; 83: 115–131
  • Lorimore S A, Wright E G. Radiation-induced genomic instability and bystander effects: related inflammatory-type responses to radiation-induced stress and injury? A review. International Journal of Radiation Biology 2003; 79: 15–25
  • Mothersill C, Seymour C. Medium from irradiated human epithelial cells but not human fibroblasts reduces the clonogenic survival of unirradiated cells. International Journal of Radiation Biology 1997; 71: 421–427
  • Murry C E, Gipaya C T, Bartosek T, Benditt E P, Schwartz S M. Monoclonality of smooth muscle cells in human atherosclerosis. American Journal of Pathology 1997; 151: 697–705
  • Neriishi K. Persistent inflammation in atomic-bomb survivors. Update 1999; 10(2)10
  • Palcic B, Skarsgard L D. Reduced oxygen enhancement ratio at low doses of ionizing radiation. Radiation Research 1984; 100: 328–339
  • Pattison J E, Charles M W, Beddoe A H, Hugtenburg R P. Experimental simulation of A-bomb gamma-ray spectra for radiobiology studies. Radiation Protection Dosimetry 2001; 95: 125–135
  • RERF. DS02: A new dosimetry system for A-bomb survivor studies. 2003, Chaired: Sinclair W, Mori W; Joint US-Japan Working Group Joint US-Japanese Senior Review Group Report (Japan: RERF)
  • Richardson R B, Eatough J P, Henshaw D L. Dose to red bone marrow from natural radon and thoron exposure. British Journal of Radiology 1991; 64: 608–624
  • Roedel F, Kley N, Beuscher H U, Hildebrandt G, Keilholz L, Kern P, Vol R, Herrmann M, Sauer R. Anti-inflammatory effect of low-dose X-irradiation and the involvement of a TGF-β1-induced down-regulation of leukocyte/endothelial cell adhesion. International Journal of Radiation Biology 2002; 78: 711–719
  • Roychoudhuri R, Robinson D, Putcha V, Cuzick J, Darby S, Moller H. Increased cardiovascular mortality more than fifteen years after radiotherapy for breast cancer: a population-based study. BMC Cancer 2007; 7: 9
  • Skarsgard L D, Harrison I. Dose dependence of the oxygen enhancement ratio; OER in radiation inactivation of Chinese hamster V79-171 cells. Radiation Research 1991; 127: 243–247
  • Thoday J M, Read J. Effect of oxygen on the frequency of chromosomal aberrations produced by X-rays. Nature 1947; 160: 608–609
  • Vaughn M W, Kuo L, Liao J C. Effective diffusion distance of nitric oxide in the microcirculation. American Journal of Physiology 1998; 274: H1705–H1714
  • Ward J F. The complexity of DNA damage: relevance to biological consequences. International Journal of Radiation Biology 1998; 66: 427–432

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