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Xenobiotica
the fate of foreign compounds in biological systems
Volume 6, 1976 - Issue 1
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Original Article

Implication of Rifampicin-quinone in the Irreversible Binding of Rifampicin to Macromolecules

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Pages 21-32 | Received 22 Mar 1975, Published online: 30 Sep 2009

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Jennie L. Walgren, Michael D. Mitchell & David C. Thompson. (2005) Role of Metabolism in Drug-Induced Idiosyncratic Hepatotoxicity. Critical Reviews in Toxicology 35:4, pages 325-361.
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H. Peter, K. E. Appel, R. Berg & H. M. Bolt. (1983) Irreversible binding of acrylonitrile to nucleic acids. Xenobiotica 13:1, pages 19-25.
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Articles from other publishers (19)

Faezeh Zivari-Moshfegh, Fereshteh Javanmardi & Davood Nematollahi. (2023) A comprehensive electrochemical study on anti-tuberculosis drug rifampicin. Investigating reactions of rifampicin-quinone with other anti-tuberculosis drugs, isoniazid, pyrazinamide and ethambutol. Electrochimica Acta, pages 142487.
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Alexander D. Giddey, Tariq A. Ganief, Naadir Ganief, Anastasia Koch, Digby F. Warner, Nelson C. Soares & Jonathan M. Blackburn. (2021) Cell Wall Proteomics Reveal Phenotypic Adaption of Drug-Resistant Mycobacterium smegmatis to Subinhibitory Rifampicin Exposure. Frontiers in Medicine 8.
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Zohar B. Weinstein & Muhammad H. Zaman. (2019) Evolution of Rifampin Resistance in Escherichia coli and Mycobacterium smegmatis Due to Substandard Drugs. Antimicrobial Agents and Chemotherapy 63:1.
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Fuguo Shi, Xiaobing Li, Hong Pan & Li Ding. (2017) NQO1 and CYP450 reductase decrease the systemic exposure of rifampicin-quinone and mediate its redox cycle in rats. Journal of Pharmaceutical and Biomedical Analysis 132, pages 17-23.
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Sandeep Golegaonkar, Syed S. Tabrez, Awadhesh Pandit, Shalini Sethurathinam, Mashanipalya G. Jagadeeshaprasad, Sneha Bansode, Srinivasa‐Gopalan Sampathkumar, Mahesh J. Kulkarni & Arnab Mukhopadhyay. (2015) Rifampicin reduces advanced glycation end products and activates DAF ‐16 to increase lifespan in Caenorhabditis elegans . Aging Cell 14:3, pages 463-473.
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Paul Jennings, Michael Schwarz, Brigitte Landesmann, Silvia Maggioni, Marina Goumenou, David Bower, Martin O. Leonard & Jeffrey S. Wiseman. (2014) SEURAT-1 liver gold reference compounds: a mechanism-based review. Archives of Toxicology 88:12, pages 2099-2133.
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Tamara Staudinger, Bernhard Redl & Ben J. Glasgow. (2014) Antibacterial activity of rifamycins for M. smegmatis with comparison of oxidation and binding to tear lipocalin. Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 1844:4, pages 750-758.
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John C. L. Erve, Ming Gu, Yongdong Wang, William DeMaio & Rasmy E. Talaat. (2011) Spectral accuracy of molecular ions in an LTQ/Orbitrap mass spectrometer and implications for elemental composition determination. Journal of the American Society for Mass Spectrometry 20:11, pages 2058-2069.
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Seema Saksena, Ravi Rastogi, Narendra K. Garg & Bhola N. Dhawan. (2008) Rifampicin induced hepatotoxicity in rats: Protective effect of picrolive effect of picroliv. Drug Development Research 33:1, pages 46-50.
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S. Lachau, M.A. Rochas, A.E. Tufenkji, N. Martin, P. Levillain & G. Houin. (1992) First-Derivative Spectroscopic Determination of Binding Characteristics of Rifampicin to Human Albumin and Serum. Journal of Pharmaceutical Sciences 81:3, pages 287-289.
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Jos M. van den Broek, Helen C. ten Wolde-Kraamwinkel, Cees H. Kleinbloesem & Douwe D. Breimer. (1984) Effect of rifampicin treatment on in vitro drug-metabolizing activities in the pig. Biochemical Pharmacology 33:2, pages 325-327.
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H. Bundgaard. 1983. Allergic Reactions to Drugs. Allergic Reactions to Drugs 37 74 .
Werner K. Lutz. (1979) In vivo covalent binding of organic chemicals to DNA as a quantitative indicator in the process of chemical carcinogenesis. Mutation Research/Reviews in Genetic Toxicology 65:4, pages 289-356.
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D.J. Back, K.J. Cross, C.R. Hiley & M.S. Yates. (1979) The effect of rifampicin on liver blood flow, microsomal enzyme activity and bile flow in the rat. Biochemical Pharmacology 28:8, pages 1293-1296.
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H. Ottenw�lder, R. J. Laib & H. M. Bolt. (1979) Alkylation of RNA by vinyl bromide metabolites in vitro and in vivo. Archives of Toxicology 41:4, pages 279-286.
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Lyle S. Rice & Claude F. Meares. (1978) Subunit contacts of the rifamycin binding site of RNA polymerase (B. subtilis). Biochemical and Biophysical Research Communications 80:1, pages 26-32.
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R. J. Laib & H. M. Bolt. (1978) Formation of 3,N4-ethenocytidine moieties in RNA by vinyl chloride metabolites in vitro and in vivo. Archives of Toxicology 39:3, pages 235-240.
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R.J. Laib & H.M. Bolt. (1977) Alkylation of RNA by vinyl chloride metabolites in vitro and in vivo: Formation of 1-N6-etheno-adenosine. Toxicology 8:2, pages 185-195.
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Hugh M. McIlhenny. 1977. 201 209 .

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