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Original Article

Electrochemical Properties As A Function of Ph for the Benzotriazine DI-N-Oxides

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Pages 295-302 | Received 07 Feb 1990, Published online: 07 Jul 2009

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K. Indira Priyadarsini, Michael Tracy & Peter Wardman. (1996) The One-Electron Reduction Potential of 3-Amino-1, 2, 4-benzotriazine 1, 4-dioxide (Tirapazamine): A Hypoxia-Selective Bioreductive Drug. Free Radical Research 25:5, pages 393-399.
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Joanne H. Tocher & D. I. Edwards. (1994) Electrochemical Studies of Tirapazamine: Generation of the One-Electron Reduction Product. Free Radical Research 21:5, pages 277-283.
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Articles from other publishers (5)

Xiulong Shen & Kent S. Gates. (2019) Enzyme-Activated Generation of Reactive Oxygen Species from Heterocyclic N -Oxides under Aerobic and Anaerobic Conditions and Its Relevance to Hypoxia-Selective Prodrugs . Chemical Research in Toxicology 32:3, pages 348-361.
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Guangzhi Hu, Yong Guo & Shijun Shao. (2009) Ultrasensitive electrochemical sensing of the anticancer drug tirapazamine using an ordered mesoporous carbon modified pyrolytic graphite electrode. Biosensors and Bioelectronics 24:11, pages 3391-3394.
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Hye-Jin Shin, Joo-Young Kim, Chong-Woo Yoo, Stephen A. Roberts, Sun Lee, Soo-Jin Choi, Hee-Young Lee, Doo-Hyun Lee, Tae Hyun Kim & Kwan Ho Cho. (2007) Carbonic anhydrase 9 (CA9) expression in tumor cells enhances sensitivity to tirapazamine. Journal of Cancer Research and Clinical Oncology 134:3, pages 397-404.
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Joanne H. Tocher & David I. Edwards. (1994) Evidence for the direct interaction of reduced metronidazole derivatives with DNA bases. Biochemical Pharmacology 48:6, pages 1089-1094.
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David I. Edwards & Narinder S. Virk. (1992) Repair of damage induced by SR 4233. International Journal of Radiation Oncology*Biology*Physics 22:4, pages 677-679.
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