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    1. Collin, P; Lomri, A; Marie, PJ
      Expression and activity of NAD(P)H : Quinone oxidoreductase (NMO1) in human osteoblastic cells

      BONE
    2. Pretti, C; Salvetti, A; Longo, V; Giorgi, M; Gervasi, PG
      Effects of beta-naphthoflavone on the cytochrome P450 system, and phase IIenzymes in gilthead seabream (Sparus aurata)

      COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY C-TOXICOLOGY & PHARMACOLOGY
    3. Nehls, S; Segner, H
      Detection of DNA damage in two cell lines from rainbow trout, RTG-2 and RTL-W1, using the comet assay

      ENVIRONMENTAL TOXICOLOGY
    4. Everett, SA; Naylor, MA; Barraja, P; Swann, E; Patel, KB; Stratford, MRL; Hudnott, AR; Vojnovic, B; Locke, RJ; Wardman, P; Moody, CJ
      Controlling the rates of reductively-activated elimination from the (indol-3-yl)methyl position of indolequinones

      JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2
    5. Williams, KJ; Cowen, RL; Stratford, IJ
      Hypoxia and oxidative stress in breast cancer - Tumour hypoxia - therapeutic considerations

      BREAST CANCER RESEARCH
    6. Bolzan, AD; Bianchi, MS
      Genotoxicity of streptonigrin: a review

      MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH
    7. Benhamou, S; Voho, A; Bouchardy, C; Mitrunen, K; Dayer, P; Hirvonen, A
      Role of NAD(P)H: quinone oxidoreductase polymorphism at codon 187 in susceptibility to lung, laryngeal and oral/pharyngeal cancers

      BIOMARKERS
    8. Drukarch, B; van Muiswinkel, FL
      Neuroprotection for Parkinson's disease: a new approach for a new millennium

      EXPERT OPINION ON INVESTIGATIONAL DRUGS
    9. Sanchez, LB; Elmendorf, H; Nash, TE; Muller, M
      NAD(P)H : menadione oxidoreductase of the amitochondriate eukaryote Giardia lamblia: a simpler homologue of the vertebrate enzyme

      MICROBIOLOGY-UK
    10. O'Brien, ML; Twaroski, TP; Cunningham, ML; Glauert, HP; Spear, BT
      Effects of peroxisome proliferators on antioxidant enzymes and antioxidantvitamins in rats and hamsters

      TOXICOLOGICAL SCIENCES
    11. Blackwood, L; O'Shaughnessy, PJ; Reid, SWJ; Argyle, DJ
      E. coli nitroreductase/CB1954: In vitro studies into a potential system for feline cancer gene therapy

      VETERINARY JOURNAL
    12. Sausville, EA
      Combining cytotoxics and 17-allylamino, 17-demethoxygeldanamycin: Sequenceand tumor biology matters - Commentary re: P. Munster et al., modulation of Hsp90 function by ansamycins sensitizes breast cancer cells to chemotherapy-induced apoptosis in an RB- and schedule-dependent manner. Clin. Cancer Res., 7: 2228-2236, 2001.

      CLINICAL CANCER RESEARCH
    13. Warren, AJ; Mustra, DJ; Hamilton, JW
      Detection of mitomycin C-DNA adducts in human breast cancer cells grown inculture, as xenografted tumors in nude mice, and in biopsies of human breast cancer patient tumors as determined by P-32-postlabeling

      CLINICAL CANCER RESEARCH
    14. Alegria, AE; Santiago, G; Lopes, M; Rosario, BI; Cordones, E
      Role of membrane charge and semiquinone structure on naphthosemiquinone derivatives and 1,4-benzosemiquinone disproportionation and membrane-buffer distribution coefficients

      FREE RADICAL RESEARCH
    15. Munday, R
      Concerted action of DT-diaphorase and superoxide dismutase in preventing redox cycling of naphthoquinones: An evaluation

      FREE RADICAL RESEARCH
    16. Xu, LL; Wain, JC; Miller, DP; Thurston, SW; Su, L; Lynch, TJ; Christiani, DC
      The NAD(P)H : quinone oxidoreductase 1 gene polymorphism and lung cancer: Differential susceptibility based on smoking behavior

      CANCER EPIDEMIOLOGY BIOMARKERS & PREVENTION
    17. Faig, M; Bianchet, MA; Winski, S; Hargreaves, R; Moody, CJ; Hudnott, AR; Ross, D; Amzel, LM
      Structure-based development of anticancer drugs: Complexes of NAD(P)H : quinone oxidoreductase 1 with chemotherapeutic quinones

      STRUCTURE
    18. Schellens, JHM; Dombernowsky, P; Cassidy, J; Epelbaum, R; Dirix, L; Cox, EH; Wanders, J; Calabresi, F; Paridaens, R; Monfardini, S; Wolff, J; Loos, WJ; Verweij, J; Pavlidis, N; Hanauske, AR
      Population pharmacokinetics and dynamics in phase II studies of the novel bioreductive alkylating cytotoxic indoloquinone EO9

      ANTI-CANCER DRUGS
    19. Wardman, P
      Electron transfer and oxidative stress as key factors in the design of drugs selectively active in hypoxia

      CURRENT MEDICINAL CHEMISTRY
    20. Moridani, MY; Scobie, H; Salehi, P; O'Brien, PJ
      Catechin metabolism: Glutathione conjugate formation catalyzed by tyrosinase, peroxidase, and cytochrome p450

      CHEMICAL RESEARCH IN TOXICOLOGY
    21. Cavelier, G; Amzel, LM
      Mechanism of NAD(P)H : quinone reductase: Ab initio studies of reduced flavin

      PROTEINS-STRUCTURE FUNCTION AND GENETICS
    22. Cheung, AP; Struble, E; Nguyen, N; Liu, P
      Stability-indicating HPLC assay and solution stability of a new diaziridinyl benzoquinone

      JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS
    23. Gharat, L; Taneja, R; Weerapreeyakul, N; Rege, B; Polli, J; Chikhale, PJ
      Targeted drug delivery systems 6. Intracellular bioreductive activation, uptake and transport of an anticancer drug delivery system across intestinalCaco-2 cell monolayers

      INTERNATIONAL JOURNAL OF PHARMACEUTICS
    24. Siegel, D; Ryder, J; Ross, D
      NAD(P)H: quinone oxidoreductase 1 expression in human bone marrow endothelial cells

      TOXICOLOGY LETTERS
    25. Valerio, LG; Kepa, JK; Pickwell, GV; Quattrochi, LC
      Induction of human NAD(P)H : quinone oxidoreductase (NQO1) gene expressionby the flavonol quercetin

      TOXICOLOGY LETTERS
    26. Szarka, CE; Yao, KS; Pfeiffer, GR; Balshem, AM; Litwin, S; Frucht, H; Goosenberg, EB; Engstrom, PF; Clapper, ML; O'Dwyer, PJ
      Chronic dosing of oltipraz in people at increased risk for colorectal cancer

      CANCER DETECTION AND PREVENTION
    27. Sreerama, L; Sladek, NE
      Primary breast tumor levels of suspected molecular determinants of cellular sensitivity to cyclophosphamide, ifosfamide, and certain other anticanceragents as predictors of paired metastatic tumor levels of these determinants - Rational individualization of cancer chemotherapeutic regimens

      CANCER CHEMOTHERAPY AND PHARMACOLOGY
    28. Cenas, N; Nemeikaite-Ceniene, A; Sergediene, E; Nivinskas, H; Anusevicius, Z; Sarlauskas, J
      Quantitative structure-activity relationships in enzymatic single-electronreduction of nitroaromatic explosives: implications for their cytotoxicity

      BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
    29. Agrawal, A; Chandra, D; Kale, RK
      Radiation induced oxidative stress: II - Studies in liver as a distant organ of tumor bearing mice

      MOLECULAR AND CELLULAR BIOCHEMISTRY
    30. Agrawal, A; Choudhary, D; Upreti, M; Rath, PC; Kale, RK
      Radiation induced oxidative stress: I. Studies in Ehrlich solid tumor in mice

      MOLECULAR AND CELLULAR BIOCHEMISTRY
    31. Wilson, MW; Schelonka, LP; Siegel, D; Meininger, A; Ross, D
      Immunohistochemical localization of NAD(P)H : quinone oxidoreductase in conjunctival melanomas and primary acquired melanosis

      CURRENT EYE RESEARCH
    32. Ryu, CK; Jeong, HJ; Lee, SK; You, HJ; Choi, KU; Shim, JY; Heo, JH; Lee, CO
      Effects of 6-arylamino-5,8-quinolinediones and 6-chloro-7-arylamino-5,8-isoquinolinediones on NAD(P)H: Quinone oxidoreductase (NQO1) activity and their cytotoxic potential

      ARCHIVES OF PHARMACAL RESEARCH
    33. Phillips, RM; Ward, TH
      Influence of extracellular pH on the cytotoxicity and DNA damage of a series of indolequinone compounds

      ANTICANCER RESEARCH
    34. Chen, C
      Risk of prostate cancer in relation to polymorphisms of metabolic genes

      EPIDEMIOLOGIC REVIEWS
    35. Lewis, SJ; Cherry, NM; Niven, RM; Barber, PV; Povey, AC
      Polymorphisms in the NAD(P)H: quinone oxidoreductase gene and small cell lung cancer risk in a UK population

      LUNG CANCER
    36. Malkinson, AM
      Primary lung tumors in mice as an aid for understanding, preventing, and treating human adenocarcinoma of the lung

      LUNG CANCER
    37. Moridani, MY; Scobie, H; Jamshidzadeh, A; Salehi, P; O'Brien, PJ
      Caffeic acid, chlorogenic acid, and dihydrocaffeic acid metabolism: Glutathione conjugate formation

      DRUG METABOLISM AND DISPOSITION
    38. Twaroski, TP; O'Brien, ML; Larmonier, N; Glauert, NP; Robertson, LW
      Polychlorinated biphenyl-induced effects on metabolic enzymes, AP-1 binding, vitamin E, and oxidative stress in the rat liver

      TOXICOLOGY AND APPLIED PHARMACOLOGY
    39. Lopez-Alvarado, P; Alonso, MA; Avendano, C; Menendez, JC
      One-pot assembly of large heterocyclic quinones through three-component reactions

      TETRAHEDRON LETTERS
    40. He, M; Sheldon, PJ; Sherman, DH
      Characterization of a quinone reductase activity for the mitomycin C binding protein (MRD): Functional switching from a drug-activating enzyme to a drug-binding protein

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    41. Asher, G; Lotem, J; Cohen, B; Sachs, L; Shaul, Y
      Regulation of p53 stability and p53-dependent apoptosis by NADH quinone oxidoreductase-1

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    42. Siegel, D; Anwar, A; Winski, SL; Kepa, JK; Zolman, KL; Ross, D
      Rapid polyubiquitination and proteasomal degradation of a mutant form of NAD(P)H : Quinone oxidoreductase 1

      MOLECULAR PHARMACOLOGY
    43. Jiang, HB; Ichikawa, M; Furukawa, A; Tomita, S; Ohnishi, T; Ichikawa, Y
      Metabolic activation of mitomycin C by NADPH-ferredoxin reductase in vitro

      LIFE SCIENCES
    44. Talalay, P; Fahey, JW
      Phytochemicals from cruciferous plants protect against cancer by modulating carcinogen metabolism

      JOURNAL OF NUTRITION
    45. Paris, I; Dagnino-Subiabre, A; Marcelain, K; Bennett, LB; Caviedes, P; Caviedes, R; Azar, CO; Segura-Aguilar, J
      Copper neurotoxicity is dependent on dopamine-mediated copper uptake and one-electron reduction of aminochrome in a rat substantia nigra neuronal cell line

      JOURNAL OF NEUROCHEMISTRY
    46. Skibo, EB; Xing, CG; Dorr, RT
      Aziridinyl quinone antitumor agents based on indoles and cyclopent[b]indoles: Structure-activity relationships for cytotoxicity and antitumor activity

      JOURNAL OF MEDICINAL CHEMISTRY
    47. Swann, E; Barraja, P; Oberlander, AM; Gardipee, WT; Hudnott, AR; Beall, HD; Moody, CJ
      Indolequinone antitumor agents: Correlation between quinone structure and rate of metabolism by recombinant human NAD(P)H : quinone oxidoreductase. Part 2

      JOURNAL OF MEDICINAL CHEMISTRY
    48. Zappa, F; Ward, T; Butler, J; Pedrinis, E; McGown, A
      Overexpression of NAD(P)H : quinone oxidoreductase 1 in human reproductivesystem

      JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY
    49. Bello, RI; Gomez-Diaz, C; Navarro, F; Alcain, FJ; Villalba, JM
      Expression of NAD(P)H : Quinone oxidoreductase 1 in HeLa cells - Role of hydrogen peroxide and growth phase

      JOURNAL OF BIOLOGICAL CHEMISTRY
    50. Gaikwad, A; Long, DJ; Stringer, JL; Jaiswal, AK
      In vivo role of NAD(P)H : quinone oxidoreductase 1 (NQO1) in the regulation of intracellular redox state and accumulation of abdominal adipose tissues

      JOURNAL OF BIOLOGICAL CHEMISTRY
    51. Tagliarino, C; Pink, JJ; Dubyak, GR; Nieminen, AL; Boothman, DA
      Calcium is a key signaling molecule in beta-lapachone-mediated cell death

      JOURNAL OF BIOLOGICAL CHEMISTRY
    52. Spooner, RA; Maycroft, KA; Paterson, H; Friedlos, F; Springer, CJ; Marais, R
      Appropriate subcellular localisation of prodrug-activating enzymes has important consequences for suicide gene therapy

      INTERNATIONAL JOURNAL OF CANCER
    53. Planchon, SM; Pink, JJ; Tagliarino, C; Bornmann, WG; Varnes, ME; Boothman, DA
      beta-Lapachone-induced apoptosis in human prostate cancer cells: Involvement of NQO1/xip3

      EXPERIMENTAL CELL RESEARCH
    54. Stiborova, M; Hajek, M; Vosmikova, H; Frei, E; Schmeiser, HH
      Isolation of DT-diaphorase [NAD(P)H dehydrogenase (quinone)] from rat liver cytosol: Identification of new enzyme substrates, carcinogenic aristolochic acids

      COLLECTION OF CZECHOSLOVAK CHEMICAL COMMUNICATIONS
    55. Gunaratnam, M; Grant, MH
      The role of glutathione reductase in the cytotoxicity of chromium (VI) in isolated rat hepatocytes

      CHEMICO-BIOLOGICAL INTERACTIONS
    56. Munday, R; Smith, BL; Munday, CM
      Effects of modulation of tissue activities of DT-diaphorase on the toxicity of 2,3-dimethyl-1,4-naphthoquinone to rats

      CHEMICO-BIOLOGICAL INTERACTIONS
    57. Alexander, FE; Patheal, SL; Biondi, A; Brandalise, S; Cabrera, ME; Chan, LC; Chen, Z; Cimino, G; Cordoba, JC; Gu, LJ; Hussein, H; Ishii, E; Kamel, AM; Labra, S; Magalhaes, IQ; Mizutani, S; Petridou, E; de Oliveira, MP; Yuen, P; Wiemels, JL; Greaves, MF
      Transplacental chemical exposure and risk of infant leukemia with MLL genefusion

      CANCER RESEARCH
    58. Baumann, RP; Hodnick, WF; Seow, HA; Belcourt, MF; Rockwell, S; Sherman, DH; Sartorelli, AC
      Reversal of mitomycin C resistance by overexpression of bioreductive enzymes in Chinese hamster ovary cells

      CANCER RESEARCH
    59. Hostein, I; Robertson, D; DiStefano, F; Workman, P; Clarke, PA
      Inhibition of signal transduction by the Hsp90 inhibitor 17-allylamino-17-demethoxygeldanamycin results in cytostasis and apoptosis

      CANCER RESEARCH
    60. Choudry, GA; Stewart, PAH; Double, JA; Krul, MRL; Naylor, B; Flannigan, GM; Shah, TK; Brown, JE; Phillips, RM
      A novel strategy for NQO1 (NAD(P)H : quinone oxidoreductase, EC 1.6.99.2) mediated therapy of bladder cancer based on the pharmacological properties of EO9

      BRITISH JOURNAL OF CANCER
    61. Smith, MT; Wang, YX; Kane, E; Rollinson, S; Wiemels, JL; Roman, E; Roddam, P; Cartwright, R; Morgan, G
      Low NAD(P)H : quinone oxidoreductase 1 activity is associated with increased risk of acute leukemia in adults

      BLOOD
    62. Bailey, SM; Lewis, AD; Patterson, LH; Fisher, GR; Knox, RJ; Workman, P
      Involvement of NADPH: cytochrome P450 reductase in the activation of indoloquinone EO9 to free radical and DNA damaging species

      BIOCHEMICAL PHARMACOLOGY
    63. Phillips, RM; Burger, AM; Fiebig, HH; Double, JA
      Genotyping of NAD(P)H : quinone oxidoreductase (NQO1) in a panel of human tumor xenografts: relationship between genotype status, NQO1 activity and the response of xenografts to Mitomycin C chemotherapy in vivo

      BIOCHEMICAL PHARMACOLOGY
    64. Begleiter, A; Leith, MK; Doherty, GP; Digby, TJ; Pan, SS
      Factors influencing the induction of DT-diaphorase activity by 1,2-dithiole-3-thione in human tumor cell lines

      BIOCHEMICAL PHARMACOLOGY
    65. Winski, SL; Swann, E; Hargreaves, RHJ; Dehn, DL; Butler, J; Moody, CJ; Ross, D
      Relationship between NAD(P)H : quinone oxidoreductase 1 (NQO1) levels in aseries of stably transfected cell lines and susceptibility to antitumor quinones

      BIOCHEMICAL PHARMACOLOGY
    66. Palom, Y; Belcourt, MF; Tang, LQ; Mehta, SS; Sartorelli, AC; Pritsos, CA; Pritsos, KL; Rockwell, S; Tomasz, M
      Bioreductive metabolism of mitomycin C in EMT6 mouse mammary tumor cells: cytotoxic and non-cytotoxic pathways, leading to different types of DNA adducts. The effect of dicumarol

      BIOCHEMICAL PHARMACOLOGY
    67. Harada, S; Fujii, C; Hayashi, A; Ohkoshi, N
      An association between idiopathic Parkinson's disease and polymorphisms ofphase II detoxification enzymes: Glutathione S-transferase M1 and quinone oxidoreductase 1 and 2

      BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
    68. Martinez-Alvarado, P; Dagnino-Subiabre, A; Paris, I; Metodiewa, D; Welch, CJ; Olea-Azar, C; Caviedes, P; Caviedes, R; Segura-Aguilar, J
      Possible role of salsolinol quinone methide in the decrease of RCSN-3 cellsurvival

      BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
    69. Nivinskas, H; Koder, RL; Anusevicius, Z; Sarlauskas, J; Miller, AF; Cenas, N
      Quantitative structure-activity relationships in two-electron reduction ofnitroaromatic compounds by Enterobacter cloacae NAD(P)H : nitroreductase

      ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
    70. Wu, KB; Eng, E; Knox, R; Chen, SA
      Demonstration of the activation of prodrug CB 1954 using human DT-diaphorase mutant Q104Y-transfected MDA-MB-231 cells and mouse xenograft model

      ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
    71. Au, JLS; Badalament, RA; Wientjes, MG; Young, DC; Warner, JA; Venema, PL; Pollifrone, DL; Harbrecht, JD; Chin, JL; Lerner, SP; Miles, BJ
      Methods to improve efficacy of intravesical mitomycin C: Results of a randomized phase III trial

      JOURNAL OF THE NATIONAL CANCER INSTITUTE
    72. Long, DJ; Waikel, RL; Wang, XJ; Roop, DR; Jaiswal, AK
      NAD(P)H: quinone oxidoreductase 1 deficiency and increased susceptibility to 7,12-dimethylbenz[a]anthracene-induced carcinogenesis in mouse skin

      JOURNAL OF THE NATIONAL CANCER INSTITUTE
    73. Martone, T; Vineis, P; Malaveille, C; Terracini, B
      Impact of polymorphisms in xeno(endo)biotic metabolism on pattern and frequency of p53 mutations in bladder cancer

      MUTATION RESEARCH-REVIEWS IN MUTATION RESEARCH
    74. Kruyt, FAE; Youssoufian, H
      Do Fanconi anemia genes control cell response to cross-linking agents by modulating cytochrome P-450 reductase activity?

      DRUG RESISTANCE UPDATES
    75. Cummings, J
      The role of reductive enzymes in cancer cell resistance to mitomycin C

      DRUG RESISTANCE UPDATES

    76. Nitrogen mustard derivatives of (1,4-benzoquinonyl) alkanoic acids as hypoxia-sensitive antitumour agents

      EXPERT OPINION ON THERAPEUTIC PATENTS
    77. Gutierrez, PL
      The metabolism of quinone-containing alkylating agents: Free radical production and measurement

      FRONTIERS IN BIOSCIENCE
    78. Beall, HD; Winski, SL
      Mechanisms of action of quinone-containing alkylating agents I: NQO1-directed drug development

      FRONTIERS IN BIOSCIENCE
    79. Begleiter, A
      Clinical applications of quinone-containing alkylating agents

      FRONTIERS IN BIOSCIENCE
    80. Hargreaves, RHJ; Hartley, JA; Butler, J
      Mechanisms of action of quinone-containing alkylating agents: DNA alkylation by aziridinylquinones

      FRONTIERS IN BIOSCIENCE
    81. Munday, R
      Autoxidation of naphthohydroquinones: Effects of pH, naphthoquinones and superoxide dismutase

      FREE RADICAL RESEARCH
    82. Weerapreeyakul, N; Visser, P; Brummelhuis, M; Gharat, L; Chikhale, PJ
      Reductive and bioreductive activation is controlled by electronic properties of substituents in conformationally-constrained anticancer drug deliverysystems

      MEDICINAL CHEMISTRY RESEARCH
    83. Padron, JM; van der Wilt, CL; Smid, K; Smitskamp-Wilms, E; Backus, HHJ; Pizao, PE; Giaccone, G; Peters, GJ
      The multilayered postconfluent cell culture as a model for drug screening

      CRITICAL REVIEWS IN ONCOLOGY HEMATOLOGY
    84. Lee, CS
      Excision repair of 2,5-diaziridinyl-1,4-benzoquinone (DZQ)-DNA adduct by bacterial and mammalian 3-methyladenine-DNA glycosylases

      MOLECULES AND CELLS
    85. Alvarez, S; Boveris, A
      Antioxidant adaptive response of human mononuclear cells to UV-B: effect of lipoic acid

      JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY
    86. Bergman, AM; Giaccone, G; van Moorsel, CJA; Mauritz, R; Noordhuis, P; Pinedo, HM; Peters, GJ
      Cross-resistance in the 2 ',2 '-difluorodeoxycytidine (gemcitabine)-resistant human ovarian cancer cell line AG6000 to standard and investigational drugs

      EUROPEAN JOURNAL OF CANCER
    87. Clarke, PA; Hostein, I; Banerji, U; Di Stefano, F; Maloney, A; Walton, M; Judson, I; Workman, P
      Gene expression profiling of human colon cancer cells following inhibitionof signal transduction by 17-allylamino-17-demethoxygeldanamycin, an inhibitor of hsp90 molecular chaperone

      ONCOGENE
    88. Imamura, Y; Koga, T; Uriu, Y; Otagiri, M; Satoh, K; Hara, A
      Catalytic properties for naphthoquinones and partial primary structure of rabbit heart acetohexamide reductase

      BIOLOGICAL & PHARMACEUTICAL BULLETIN
    89. Palom, Y; Belcourt, MF; Musser, SM; Sartorelli, AC; Rockwell, S; Tomasz, M
      Structure of adduct X, the last unknown of the six major DNA adducts of mitomycin C formed in EMT6 mouse mammary tumor cells

      CHEMICAL RESEARCH IN TOXICOLOGY
    90. Boersma, MG; Vervoort, J; Szymusiak, H; Lemanska, K; Tyrakowska, B; Cenas, N; Segura-Aguilar, J; Rietjens, IMCM
      Regioselectivity and reversibility of the glutathione conjugation of quercetin quinone methide

      CHEMICAL RESEARCH IN TOXICOLOGY
    91. Doughty, SW; Phillips, RM
      Molecular modelling of human DT-Diaphorase for enzyme-directed bioreductive drug design

      MOLECULAR SIMULATION
    92. Li, BB; Blough, NV; Gutierrez, PL
      Trace detection of hydroxyl radicals during the redox cycling of low concentrations of diaziquone: A new approach

      FREE RADICAL BIOLOGY AND MEDICINE
    93. van Muiswinkel, FL; Riemers, FM; Peters, GJ; LaFleur, MVM; Siegel, D; Jongenelen, CAM; Drukarch, B
      L-Dopa stimulates expression of the antioxidant enzyme NAD(P)H : quinone oxidoreductase (NQO) in cultured astroglial cells

      FREE RADICAL BIOLOGY AND MEDICINE
    94. Foster, CE; Bianchet, MA; Talalay, P; Faig, M; Amzel, LM
      Structures of mammalian cytosolic quinone reductases

      FREE RADICAL BIOLOGY AND MEDICINE
    95. Sieger, D; Ross, D
      Immunodetection of NAD(P)H : quinone oxidoreductase 1 (NQO1) in human tissues

      FREE RADICAL BIOLOGY AND MEDICINE
    96. Jaiswal, AK
      Regulation of genes encoding NAD(P)H : quinone oxidoreductases

      FREE RADICAL BIOLOGY AND MEDICINE
    97. Gutierrez, PL
      The role of NAD(P)H oxidoreductase (DT-diaphorase) in the bioactivation ofquinone-containing antitumor agents: A review

      FREE RADICAL BIOLOGY AND MEDICINE
    98. Chen, S; Wu, KB; Knox, R
      Structure-function studies of DT-diaphorase (NQO1) and NRH : quinone oxidoreductase (NQO2)

      FREE RADICAL BIOLOGY AND MEDICINE
    99. Long, DJ; Jaiswal, AK
      Mouse NRH : quinone oxidoreductase (NQO2): cloning of cDNA and gene- and tissue-specific expression

      GENE
    100. Romero, FJ; Roma, J; Bosch-Morell, F; Romero, B; Segura-Aguilar, J; Llombart-Bosch, A; Ernster, L
      Reduction of brain antioxidant defense upon treatment with butylated hydroxyanisole (BHA) and Sudan III in Syrian golden hamster

      NEUROCHEMICAL RESEARCH


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Documento generato il 25/10/20 alle ore 00:40:17