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  1. 1.   NOS2 as an Emergent Player in Progression of Cancer
  2. Thomas, Douglas D.; Wink, David
  3. Antioxidants & Redox Signaling. 2017, Jun 10; 26(17): 963-965.
  1. 2.   Effect of nitric oxide on neointimal hyperplasia based on sex and hormone status
  2. Hogg, M. E.; Varu, V. N.; Vavra, A. K.; Popowich, D. A.; Banerjee, M. N.; Martinez, J.; Jiang, Q.; Saavedra, J. E.; Keefer, L. K.; Kibbe, M. R.
  3. Free Radical Biology and Medicine. 2011, May; 50(9): 1065-1074.
  1. 3.   Magnetic resonance imaging of organic contrast agents in mice: capturing the whole-body redox landscape
  2. Davis, R. M.; Matsumoto, S.; Bernardo, M.; Sowers, A.; Matsumoto, K. I.; Krishna, M. C.; Mitchell, J. B.
  3. Free Radical Biology and Medicine. 2011, Feb; 50(3): 459-468.
  1. 4.   A copper chelate of thiosemicarbazone NSC 689534 induces oxidative/ER stress and inhibits tumor growth in vitro and in vivo
  2. Hancock, C. N.; Stockwin, L. H.; Han, B. N.; Divelbiss, R. D.; Jun, J. H.; Malhotra, S. V.; Hollingshead, M. G.; Newton, D. L.
  3. Free Radical Biology and Medicine. 2011, Jan; 50(1): 110-121.
  1. 5.   A spectroelectrochemical and chemical study on oxidation of 7,8-dihydroxy-4-methylcoumarin (DHMC) and some related compounds in aprotic medium
  2. Petrucci, R.; Saso, L.; Kumar, V.; Prasad, A. K.; Malhotra, S. V.; Parmar, V. S.; Marrosu, G.
  3. Biochimie. 2010, Sep; 92(9): 1123-1129.
  1. 6.   Enhancement of 5-Aminolevulinic acid-induced oxidative stress on two cancer cell lines by gold nanoparticles
  2. Ito, S.; Miyoshi, N.; Degraff, W. G.; Nagashima, K.; Kirschenbaum, L. J.; Riesz, P.
  3. Free Radical Research. 2009 43(12): 1214-1224.
  1. 7.   Continuous wave EPR oximetric imaging at 300 MHz using Radiofrequency power saturation effects
  2. Hama, Y.; Matsumoto, K. I.; Murugesan, R.; Subramanian, S.; Devasahayam, N.; Koscielniak, J. W.; Hyodo, F.; Cook, J. A.; Mitchell, J. B.; Krishna, M. C.
  3. Antioxidants & Redox Signaling. 2007, Oct; 9(10): 1709-1716.
  1. 8.   Integrated molecular profiling of SOD2 expression in multiple myeloma
  2. Hurt, E. M.; Thomas, S. B.; Peng, B. J.; Farrar, W. L.
  3. Blood. 2007, May; 109(9): 3953-3962.
  1. 9.   The role of ascorbate in the modulation of HIF-1 alpha protein and HIF-dependent transcription by chromium(VI) and nickel(II)
  2. Kaczmarek, M.; Timofeeva, O. A.; Karaczyn, A.; Malyguine, A.; Kasprzak, K. S.; Salnikow, K.
  3. Free Radical Biology and Medicine. 2007, Apr; 42(8): 1246-1257.
  1. 10.   Proline oxidase activates both intrinsic and extrinsic pathways for apoptosis: the role of ROS/superoxides, NFAT and MEK/ERK signaling
  2. Liu, Y.; Borchert, G. L.; Surazynski, A.; Hu, C. A.; Phang, J. M.
  3. Oncogene. 2006, Sep; 25(41): 5640-5647.
  1. 11.   Proline oxidase, a p53-induced gene, metabolically activates both intrinsic and extrinsic pathways for apoptosis: The role of superoxide radicals, NFAT and MEK/ERK signaling
  2. Liu, Y. M.; Borchert, G.; Surazynski, A.; Hu, C. A. A.; Phang, J. M.
  3. Clinical Cancer Research. 2005, DEC 15; 11(24, Part 2 Suppl. S): 9038S-9038S.
  1. 12.   Epigenetic silencing of manganese superoxide dismutase (SOD-2) in KAS 6/1 human multiple myeloma cells increases cell proliferation
  2. Hodge, D. R.; Peng, B.; Pompeia, C.; Thomas, S.; Cho, E.; Clausen, P. A.; Marquez, V. E.; Farrar, W. L.
  3. Cancer Biology & Therapy. 2005, May; 4(5): 585-592.
  1. 13.   Cytotoxicity of RH1: NAD(P)H : quinone acceptor oxidoreductase (NQO1)-independent oxidative stress and apoptosis induction
  2. Tudor, G.; Alley, M.; Nelson, C. M.; Huang, R. L.; Covell, D. G.; Gutierrez, P.; Sausville, E. A.
  3. Anti-Cancer Drugs. 2005 16(4): 381-391.
  1. 15.   Arachidonic acid triggers an oxidative burst in leukocytes
  2. Pompeia, C.; Cury-Boaventura, M. F.; Curi, R.
  3. Brazilian Journal of Medical and Biological Research. 2003 36(11): 1549-1560.
  1. 16.   Cytotoxicity and apoptosis of benzoquinones: redox cycling, cytochrome c release, and BAD protein expression
  2. Tudor, G.; Gutierrez, P.; Aguilera-Gutierrez, A.; Sausville, E. A.
  3. Biochemical Pharmacology. 2003 65(7): 1061-1075.
  1. 18.   Induction of oxidative DNA damage by carcinogenic metals
  2. Bal, W.; Kasprzak, K. S.
  3. Toxicology Letters. 2002 127(1-3): 55-62.
  1. 19.   Density functional computational thermochemistry: solving the discrepancy between MO and DFT calculations on the enthalpy of formation of sulfine, CH2=S=O
  2. Ventura, O. N.; Kieninger, M.; Denis, P. A.; Cachau, R. E.
  3. Chemical Physics Letters. 2002 355(3-4): 207-213.
  1. 20.   Oxidative DNA and protein damage in metal-induced toxicity and carcinogenesis
  2. Kasprzak, K. S.
  3. Free Radical Biology and Medicine. 2002 32(10): 958-967.
  1. 21.   Density functional computational thermochemistry: Isomerization of sulfine and its enthalpy of formation
  2. Ventura, O. N.; Kieninger, M.; Denis, P. A.; Cachau, R. E.
  3. Journal of Physical Chemistry A. 2001 105(43): 9912-9916.
  1. 22.   300 MHz continuous wave electron paramagnetic resonance spectrometer for small animal in vivo imaging
  2. Koscielniak, J.; Devasahayam, N.; Moni, M. S.; Kuppusamy, P.; Yamada, K.; Mitchell, J. B.; Krishna, M. C.; Subramanian, S.
  3. Review of Scientific Instruments. 2000 71(11): 4273-4281.
  1. 23.   Density functional computational thermochemistry: determination of the enthalpy of formation of sulfine, CH2=S=O, at room temperature
  2. Ventura, O. N.; Kieninger, M.; Cachau, R. E.; Suhai, S.
  3. Chemical Physics Letters. 2000 329(1-2): 145-153.
  1. 24.   Diazeniumdiolates: Pro- and antioxidant applications of the "NONOates"
  2. Fitzhugh, A. L.; Keefer, L. K.
  3. Free Radical Biology and Medicine. 2000 28(10): 1463-1469.
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