Methocarbamol |
![]() Last updated: 15/09/2025 |
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(Not known by any other names) |
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A veterinary drug used to ttreat a variety of musculoskeletal conditions | |
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Muscle relaxation | |
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Cats; Dogs; Horses |
Approval status |
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Not approved | |
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Not approved |
Chemical structure |
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Methocarbamol possesses chiral centers, meaning it can exist as different enantiomers or stereoisomers.The drug is usually a racemate. | |
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C₁₁H₁₅NO₅ | |
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COC1=CC=CC=C1OCC(COC(=O)N)O | |
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GNXFOGHNGIVQEH-UHFFFAOYSA-N | |
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InChI=1S/C11H15NO5/c1-15-9-4-2-3-5-10(9)16-6-8(13)7-17-11(12)14/h2-5,8,13H,6-7H2,1H3,(H2,12,14) | |
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Yes |
General status |
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Muscle relaxant | |
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Carbamate drug | |
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Synthetic | |
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Mode of action is not competely clear but thought to be dependant on its central nervous system depressant activity | |
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[Carbonic anhydrase 1, Inhibitor] | |
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532-03-6 | |
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208-524-3 | |
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4107 | |
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Musculo-skeletal system: Carbamic acid esters | |
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QM03BA53 | |
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No | |
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Not approved | |
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241.24 | |
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[2-hydroxy-3-(2-methoxyphenoxy)propyl] carbamate | |
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White solid when pure |
Commercial |
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Current | |||
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1956, first developed; 1957, first clinical approval US | |||
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Methocarbamol is normally administerd as tablets or intramuscular injection | |||
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The production of methocarbamol typically begins with guaifenesin as the starting material. In a controlled reaction, guaifenesin is treated with dimethyl carbonate in the presence of a base such as lithium hydroxide and a catalyst like DMAP (4-dimethylaminopyridine) at elevated temperatures. This step forms the carbamate linkage, converting guaifenesin into methocarbamol. After the reaction is complete, the mixture is cooled and treated with ammonia solution to drive the final transformation. The crude product is then recrystallised with water to yield purified methocarbamol. | |||
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Published GHG data is not available for most pharmaceuticals. However, according to industry, global averages suggest producing 1 kg of a typical active pharmaceutical ingredient can range from 10 to 100 kg CO₂e for small molecule drugs and potentially up to 1000 kg CO₂e for complex biologicals such as vaccines, depending on the drug type, its formulation, complexity of synthesis, solvent recovery, and energy sources used. |
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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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Fate indices |
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Known metabolites |
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Terrestrial ecotoxicology |
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3576 | 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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Aquatic ecotoxicology |
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General |
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3576 | 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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Metabolises in the liver and rapidly eliminated, mostly in urine | 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 ) 4 = Verified data |
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Health issues |
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May cause headaches, sleepiness and dizziness |
Handling issues |
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No information available | |||
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Not regulated | |||
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Store tablets at ambient conditions. Protected from moisture and light. |
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methocarbamol | ||
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Record last updated: | 15/09/2025 |
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 |