| Clamoxyquin (Ref: NSC 20246) |
![]() Last updated: 10/09/2025 |
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(Also known as: clamoxyquine; Cl-433) |
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A veterinary antiamebic and antidiarrheal drug that is usually used as the pamoate or hydrochloride salt. | |
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Used to treat salmonids for the myxozoan parasite Myxobolus cerebralis. | |
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Fish (Salmon family) |
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Not approved | |
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Not approved |
| Chemical structure |
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None | |
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C₁₇H₂₄ClN₃O | |
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CCN(CC)CCCNCC1=CC(=C2C=CC=NC2=C1O)Cl | |
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HOFHLRCDGWSLHX-UHFFFAOYSA-N | |
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InChI=1S/C17H24ClN3O/c1-3-21(4-2)10-6-8-19-12-13-11-15(18)14-7-5-9-20-16(14)17(13)22/h5,7,9,11,19,22H,3-4,6,8,10,12H2,1-2H3 | |
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Yes |
| General status |
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Medicinal drug: antiparasitic agent | ||||||||||||||
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Organochloride | ||||||||||||||
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Often acts by interfering with nucleic acid synthesis or mitochondrial function in protozoa and parasites. | ||||||||||||||
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[Nucleic acid synthesis, Disruption], [Mitochondrial function, Disruption] | ||||||||||||||
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2545-39-3 | ||||||||||||||
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18029 | ||||||||||||||
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[Antiamebic and antidiarrheal agent] | ||||||||||||||
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None allocated | ||||||||||||||
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No | ||||||||||||||
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321.85 | ||||||||||||||
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5-chloro-7-((((3-diethylamino)propyl)amino)methyl)quinolin-8-ol | ||||||||||||||
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5-chloro-7-((((3-diethylamino)propyl)amino)methyl)quinolin-8-ol | ||||||||||||||
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| Commercial |
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Obsolete | |||
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Mid 1950s, introduced | |||
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Commonly supplied as a suspension or solution, often using the pamoate or hydrochloride salt forms | |||
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Clamoxyquin is synthesised through a Mannich condensation reaction, starting with 5-chloro-8-hydroxyquinoline as the core structure. This compound is reacted with formaldehyde and N,N-diethylpropylenediamine, introducing a side chain at the 7-position of the quinoline ring to yield clamoxyquin. The reaction typically occurs under mild acidic conditions to facilitate the formation of the aminomethyl linkage. Once the base compound is formed, it is often converted into more stable and bioavailable salt forms, such as the pamoate or hydrochloride, for veterinary use. | |||
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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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Likely to be soluble | Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source |
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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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Unclear | Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source |
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| Health issues |
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No information available | ||||||||||||||||||||||||||||
| Handling issues |
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No information available | |||
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Not listed (Not listed) | |||
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clamoxyquin | ||
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| Record last updated: | 10/09/2025 |
| 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 |
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