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 1-20    21-38 
1.
Еженедельный цисплатин+облучение по сравнению с цисплатином+тирапазамин+облучение при раке шейки матки, ограниченном малым тазом (IB2, IIA, IIB, IIIB и IVA стадии): рандомизированное исследование III фазы Gynecologic Oncology Group Study // J. Clin. Oncol. Рус. изд.. -Москва, 2014. Т. 8, N 2.-С.125

2.
Yuan Implantable polymers for tirapazamine treatments of experimental intracranial malignant glioma // Radiat. Oncol. Invest., 1999. Vol. 7, N 4.-С.218 -230

3.
Yuan Implantable polymers for tirapazamine treatments of experimental intracranial malignant glioma // Radiat. Oncol. Invest., 1999. Vol. 7, N 4.-С.218 -230

4.
Toxicity of the bioreductive drug SR 4233 (tirapazamine is determined by P450 reductase activity in human breast but not lung cancer lines // Brit. J. Clin. Pharmacol., 1995. Vol. 40, N 2.-С.194-195

5.
Tirapazamine is metabolized to its DNA-damaging radical by intranuclear enzymes // Cancer Res., 1998. Vol. 58, N 10.-С.2098-2101

6.
Tirapazamine is metabolized to its DNA-damaging radical by intranuclear enzymes // Cancer Res., 1998. Vol. 58, N 10.-С.2098-2101

7.
Synergistic interaction between tirapazamine and cyclophosphamide in human breast cancer xenografts // Cancer Res, 1994. Vol. 54, N 11.-С.2845-2847

8.
Reaction of the hypoxia-selective antitumor agent tirapazamine with a C1'-radical in single-stranded and double-stranded DNA: The drug and its metabolites can serve as surrogates for molecular oxygen in radical-mediated DNA damage reactions // Biochemistry, 1999. Vol. 38, N 43.-С.14248-14255

9.
Reaction of the hypoxia-selective antitumor agent tirapazamine with a C1'-radical in single-stranded and double-stranded DNA: The drug and its metabolites can serve as surrogates for molecular oxygen in radical-mediated DNA damage reactions // Biochemistry, 1999. Vol. 38, N 43.-С.14248-14255

10.
Patterson L.H. Electron paramagnetic resonance spectrometry evidence for bioreduction of tirapazamine to oxidizing free-radicals under anaerobic conditions // Biochem. Pharmacol., 2000. Vol. 60, N 12.-С.1933-1935

11.
Nitric oxide synthases catalyze the activation of redox cycling and bioreductive anticancer agents // Cancer Res., 1999. Vol. 59, N 8.-С.1929-1934

12.
Nitric oxide synthases catalyze the activation of redox cycling and bioreductive anticancer agents // Cancer Res., 1999. Vol. 59, N 8.-С.1929-1934

13.
Lin New cytotoxic mechanism of the bioreductive agent tirapazamine (SR 4233) mediated by forming complex with copper // Radiat. Oncol. Investigat., 1996. Vol. 4, N 5.-С.211-220

14.
Lin New cytotoxic mechanism of the bioreductive agent tirapazamine (SR 4233) mediated by forming complex with copper // Radiat. Oncol. Investigat., 1996. Vol. 4, N 5.-С.211-220

15.
Hypoxic cell cytotoxin tirapazamine induces acute changes in tumor energy metabolism and pH: A{31}P magnetic resonance spectroscopy study // Radiat. Oncol. Invest., 1998. Vol. 6, N 6.-С.249-254

16.
Hypoxic cell cytotoxin tirapazamine induces acute changes in tumor energy metabolism and pH: A{31}P magnetic resonance spectroscopy study // Radiat. Oncol. Invest., 1998. Vol. 6, N 6.-С.249-254

17.
Hypoxic cell cytotoxin tirapazamine induces acute changes in tumor energy metabolism and pH: A{31}P magnetic resonance spectroscopy study // Radiat. Oncol. Invest., 1998. Vol. 6, N 6.-С.249-254

18.
Hypoxia-targeting agent in phase III lung Ca // Oncol. News Int., 2002. Vol. 11, N 1.-С.35

19.
Hypoxia-targeting agent in phase III lung Ca // Oncol. News Int., 2002. Vol. 11, N 1.-С.35

20.
Effectiveness of combined modality radiotherapy of orthotopic human squamous cell carcinomas in Nu/Nu mice using cetuximab, tirapazamine and MnSOD-plasmid liposome gene therapy // In vivo, 2010. Vol. 24, N 1.-С.1-8

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