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Research Article

A study of thermal dose-induced autophagy, apoptosis and necroptosis in colon cancer cells

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Pages 476-488 | Received 20 Oct 2014, Accepted 11 Mar 2015, Published online: 14 May 2015

References

  • Cancer Research UK. Cancer stats: Cancer statistics for the UK. Available from http://www.cancerresearchuk.org/cancer-info/cancerstats/ (accessed14 August 2014)
  • World Health Organization. Cancer. Fact sheet 297. Available from http://www.who.int/mediacentre/factsheets/fs297/en/ (accessed 14 August 2014)
  • Serrone J, Kocaeli H, Douglas Mast T, Burgess MT, Zuccarello M. The potential applications of high-intensity focused ultrasound (HIFU) in vascular neurosurgery. J Clin Neurosci 2012;19:214–21
  • Aptel F, Lafon C. Therapeutic applications of ultrasound in ophthalmology. Int J Hyperthermia 2012;28:405–18
  • Jenne JW, Preusser T, Günther M. High-intensity focused ultrasound: Principles, therapy guidance, simulations and applications. Z Med Phys 2012;22:311–22
  • ter Haar G. Therapeutic applications of ultrasound. Prog Biophys Mol Biol 2007;93:111–29
  • Leslie TA, Kennedy JE. High intensity focused ultrasound in the treatment of abdominal and gynaecological diseases. Int J Hyperthermia 2007;23:173–82
  • Van der Kooij SM, Ankum WM, Hehenkamp WJ. Review of nonsurgical/minimally invasive treatments for uterine fibroids. Curr Opin Obstet Gynecol 2012;24:368–75
  • Illing R, Chapman A. The clinical applications of high intensity focused ultrasound in the prostate. Int J Hyperthermia 2007;23:183–91
  • Barqawi AB, Crawford ED. Emerging role of HIFU as a noninvasive ablative method to treat localized prostate cancer. Oncology (Williston Park) 2008;22:123–9
  • Li S, Wu PH. Magnetic resonance image-guided versus ultrasound-guided high-intensity focused ultrasound in the treatment of breast cancer. Chin J Cancer 2013;32:441–52
  • Mearini L. High intensity focused ultrasound, liver disease and bridging therapy. World J Gastroenterol 2013;19:7494–9
  • Lynn JG, Zwemer RL, Chick AJ, Miller AE. A new method for the generation and use of focused ultrasound in experimental biology. J Gen Physiol 1942;26:179–93
  • Sapareto S, Dewey W. Thermal dose determination in cancer therapy. Int J Radiat Oncol Biol Phys 1984;10:787–800
  • Kerr JF, Wyllie AH, Currie AR. Apoptosis: A basic biological phenomenon with wide-ranging implications in tissue kinetics. Br J Cancer 1972;26:239–57
  • Ashford TP, Porter KR. Cytoplasmic components in hepatic cell lysosomes. J Cell Biol 1962;12:198–202
  • Lamb CA, Yoshimori T, Tooze SA. The autophagosome: Origins unknown, biogenesis complex. Nat Rev Mol Cell Biol 2013;14:759–74
  • Vanden Berghe T, Linkermann A, Jouan-Lanhouet S, Walczak H, Vandenabeele P. Regulated necrosis: The expanding network of non-apoptotic cell death pathways. Nat Rev Mol Cell Biol 2014;15:135–47
  • Chu KF, Dupuy DE. Thermal ablation of tumours: Biological mechanisms and advances in therapy. Nature Rev Cancer 2014;14:199–208
  • Taylor RC, Cullen SP, Martin SJ. Apoptosis: Controlled demolition at the cellular level. Nat Rev Mol Cell Biol 2008;9:231–41
  • Marino G, Niso-Santano M, Baehrecke EH, Kroemer G. Self-consumption: The interplay of autophagy and apoptosis. Nat Rev Mol Cell Biol 2014;15:81–94
  • Moriwaki K, Chan FK. RIP3: A molecular switch for necrosis and inflammation. Genes Dev 2013;27:1640–9
  • Teng X, Degterev A, Jagtap P, Xing X, Choi S, Denu R, et al. Structure-activity relationship study of novel necroptosis inhibitors. Bioorg Med Chem Lett 2005;15:5039–44
  • Roti Roti JL. Cellular responses to hyperthermia (40–46 °C): Cell killing and molecular events. Int J Hyperthermia 2008; 24:3–15
  • Ito A, Honda H, Kobayashi T. Cancer immunotherapy based on intracellular hyperthermia using magnetite nanoparticles: A novel concept of ‘heat-controlled necrosis’ with heat shock protein expression. Cancer Immunol Immunother 2006;55:320–8
  • Nagarsekar A, Tulapurkar ME, Singh IS, Atamas SP, Shah NG, Hasday JD. Hyperthermia promotes and prevents respiratory epithelial apoptosis through distinct mechanisms. Am J Respir Cell Mol Biol 2012;47:824–33
  • Roti Roti JL, Kampinga HH, Malyapa RS, Wright WD, Van der Waal RP, Xu M. Nuclear matrix as a target for hyperthermic killing of cancer cells. Cell Stress Chaperones 1998;3:245–55
  • Hayat H, Friedberg I. Heat-induced alterations in cell membrane permeability and cell inactivation of transformed mouse fibroblasts. Int J Hyperthermia 1986;2:369–78
  • Csoboz B, Balogh GE, Kusz E, Gombos I, Peter M, Crul T, et al. Membrane fluidity matters: Hyperthermia from the aspects of lipids and membranes. Int J Hyperthermia 2013;29:491–9
  • Lepock JR. Role of nuclear protein denaturation and aggregation in thermal radiosensitization. Int J Hyperthermia 2004;20:115–30
  • Takahashi A, Matsumoto H, Nagayama K, Kitano M, Hirose S, Tanaka H, et al. Evidence for the involvement of double-strand breaks in heat-induced cell killing. Cancer Res 2004;64:8839–45
  • Bergs JW, Krawczyk PM, Borovski T, Ten Cate R, Rodermond HM, Stap J, et al. Inhibition of homologous recombination by hyperthermia shunts early double strand break repair to non-homologous end-joining. DNA Repair (Amst) 2013;12:38–45
  • Krawczyk PM, Eppink B, Essers J, Stap J, Rodermond H, Odijk H, et al. Mild hyperthermia inhibits homologous recombination, induces BRCA2 degradation, and sensitizes cancer cells to poly (ADP-ribose) polymerase-1 inhibition. Proc Natl Acad Sci USA 2011;108:9851–6
  • Park H, Cho JA, Kim SK, Kim JH, Lee SH. Hyperthermia on mesenchymal stem cells (MSCs) can sensitize tumor cells to undergo cell death. Int J Hyperthermia 2008;24:638–48
  • Chaabane W, User SD, El-Gazzah M, Jaksik R, Sajjadi E, Rzeszowska-Wolny J, et al. Autophagy, apoptosis, mitoptosis and necrosis: Interdependence between those pathways and effects on cancer. Arch Immunol Ther Exp (Warsz) 2013;61:43–58
  • Janku F, McConkey DJ, Hong DS, Kurzrock R. Autophagy as a target for anticancer therapy. Nat Rev Clin Oncol 2011;8:528–39
  • Kreuzaler P, Watson CJ. Killing a cancer: What are the alternatives? Nat Rev Cancer 2012;12:411–24
  • White E. Deconvoluting the context-dependent role for autophagy in cancer. Nat Rev Cancer 2012;12:401–10
  • Hsu SF, Chao CM, Huang WT, Lin MT, Cheng BC. Attenuating heat-induced cellular autophagy, apoptosis and damage in H9c2 cardiomyocytes by pre-inducing Hsp70 with heat shock preconditioning. Int J Hyperthermia 2013;29:239–47
  • Zhang Y, Calderwood SK. Autophagy, protein aggregation and hyperthermia: A mini-review. Int J Hyperthermia 2011;27:409–14
  • Mouratidis PX, Colston KW, Charolidi N, Pirianov G. Differential role of apoptosis and autophagy associated with anticancer effect of Lupulone (hop β-acid) derivatives on prostate cancer cells. Anti-Cancer Agents Med Chem 2014;14:1169–78