Rifampin |
![]() Last updated: 16/09/2025 |
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(Also known as: rafampicin) |
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A veterinary broad spectrum semi-synthetic antibiotic used to treat various bacterial infections. It is derived from Amycolatopsis rifamycinica | |
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Infections caused by Rhodococcus, Mycobacteria and Staphylocci, especially those of the skin | |
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Dogs; Horses |
Approval status |
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Not approved | |
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Not approved |
Chemical structure |
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Rifampin contains 9 asymmetric carbon atoms and 3 double bonds but only one isomer is specifically produced by the microorganism. | |
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C₄₃H₅₈N₄O₁₂ | |
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C[C@H]1/C=C/C=C(\C(=O)NC\2=C(C3=C(C4=C(C(=C3O)C)O[C@@](C4=O)(O/C=C/[C@@H]([C@H]([C@H]([C@@H]([C@@H]([C@@H]([C@H]1O)C)O)C)OC(=O)C)C)OC)C)C(=O)/C2=C/NN5CCN(CC5)C)O)/C | |
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FZYOVNIOYYPUPY-ZTWDQPHTSA-N | |
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InChI=1S/C43H58N4O12/c1-21-12-11-13-22(2)42(55)45-33-28(20-44-47-17-15-46(9)16-18-47)37(52)30-31(38(33)53)36(51)26(6)40-32(30)41(54)43(8,59-40)57-19-14-29(56-10)23(3)39(58-27(7)48)25(5)35(50)24(4)34(21)49/h11-14,19-21,23-25,29,34-35,39,44,49-51,53H,15-18H2,1-10H3,(H,45,55)/b12-11+,19-14+,22-13-,28-20+/t21-,23+,24+,25+,29-,34-,35+,39+,43-/m0/s1 | |
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Yes |
General status |
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Antibiotic | |
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Ansamycin compound | |
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Semi-synthetic | |
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Rifampin interferes with the synthesis of RNA in microorganisms via binding to subunits of sensitive DNA-dependent RNA polymerase | |
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[DNA-directed RNA polymerase subunit beta, Inhibitor], [Nuclear receptor subfamily 1 group I member 2, Agonist], [ | |
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13292-46-1 | |
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5381226 | |
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Antiinfectives for systemic use: Antibiotics | |
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QJ04AB02 | |
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No | |
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822.95 | |
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[(7S,9E,11S,12R,13S,14R,15R,16R,17S,18S,19E,21Z,26E)-2,15,17,29-tetrahydroxy-11-methoxy-3,7,12,14,16,18,22-heptamethyl-26-[[(4-methylpiperazin-1-yl)amino]methylidene]-6,23,27-trioxo-8,30-dioxa-24-azatetracyclo[23.3.1.14,7.05,28]triaconta-1(28),2,4,9,19,21,25(29)-heptaen-13-yl] acetate | |
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Orange, odourless, crystalline powder |
Commercial |
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Current | |||
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1957, discovered; 1980s, vet use begins | |||
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Usually formulated as capsules or tablets for oral administration | |||
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The production of rifampin begins with the fermentation of Amycolatopsis rifamycinica, a soil-dwelling bacterium that produces rifamycin B. This natural compound is chemically oxidised to form rifamycin S, which serves as the key intermediate. Rifamycin S is then reacted with N-bis-hydroxymethylamine to form a rifamycin oxazine derivative, a crucial step that introduces the oxazine ring. This intermediate undergoes ring-opening through reaction with 1-amino-4-methylpiperazine, yielding rifampin with its characteristic piperazine side chain. The synthesis is typically carried out in aprotic dipolar solvents like tetrahydrofuran, under controlled pH and temperature conditions to preserve structural integrity. Modern methods, including continuous flow microreactor systems, have improved efficiency and reduced reagent consumption. | |||
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As microbial-based products tend to use fermentation-based production processes rather than chemical synthesis, they typically have a lower fossil fuel input in formulation and active ingredient creation, and also have reduced downstream emissions due to biodegradability and minimal soil disruption, their life-cycle GHG emissions are expected to be low. Whilst hard and precise data is not available, broad estimates suggest that typically emissions are likely to be below 5 kg CO₂e/kg. |
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As this parameter is not normally measured directly, a surrogate measure is used: ‘Photochemical oxidative DT₅₀’. Where data is available, this can be found in the Fate Indices section below. | ||||||||||
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Known metabolites |
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Terrestrial ecotoxicology |
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1570 | F4 F = U.S. EPA ECOTOX database / U.S. EPA pesticide fate database / Miscellaneous WHO documents / FAO data, IPCS INCHEM data (US EPA Databases Related to Pesticide Risk Assessment ) Rat4 = Verified data |
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General |
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1570 | F4 F = U.S. EPA ECOTOX database / U.S. EPA pesticide fate database / Miscellaneous WHO documents / FAO data, IPCS INCHEM data (US EPA Databases Related to Pesticide Risk Assessment ) Rat4 = Verified data |
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Eliminated rapidly in bile | Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source |
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Health issues |
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Some inconclusive information suggests rifampin is a possible carcinogen |
Handling issues |
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Not compatible with strong oxidisng agents | |||
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Health: H302, H315, H319, H335 | |||
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Not regulated | |||
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Store under ambient conditions. Shelf life is around 3-5 years is stored appropriately |
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rifampin | ||
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Record last updated: | 16/09/2025 |
Contact: | aeru@herts.ac.uk |
Please cite as: | Lewis, K.A., Tzilivakis, J., Warner, D. and Green, A. (2016) An international database for pesticide risk assessments and management. Human and Ecological Risk Assessment: An International Journal, 22(4), 1050-1064. DOI: 10.1080/10807039.2015.1133242 |