Pentoxyfylline |
![]() Last updated: 15/09/2025 |
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(Also known as: oxpentifylline) |
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A blood viscosity reducer for improved circulation used in veterinary medicine | |
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Pain, cramping, numbness, or limb weakness | |
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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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None | |
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C₁₃H₁₈N₄O₃ | |
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CC(=O)CCCCN1C(=O)C2=C(N=CN2C)N(C1=O)C | |
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BYPFEZZEUUWMEJ-UHFFFAOYSA-N | |
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InChI=1S/C13H18N4O3/c1-9(18)6-4-5-7-17-12(19)10-11(14-8-15(10)2)16(3)13(17)20/h8H,4-7H2,1-3H3 | |
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Yes |
General status |
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Hemorrheologic agent | |
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Xanthine derivative | |
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Synthetic | |
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[Adenosine receptor A2a, Agonist], [Phosphodiesterase enzymes, Inhibitor], [5'-nucleotidase, Inhibitor] | |
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6493-05-6 | |
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229-374-5 | |
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4740 | |
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Cardiovascular system: purine derivatives | |
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QC04AD03 | |
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No | |
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Not approved | |
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278.31 | |
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3,7-dimethyl-1-(5-oxohexyl)purine-2,6-dione | |
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Solid |
Commercial |
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Current | |||
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1972, first marketed in EU | |||
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Usually administered orally in the form of extended-release tablets | |||
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The production of pentoxifylline involves a multi-step chemical synthesis starting from theobromine or 3-methylxanthine. A key step includes the alkylation of the xanthine nucleus using agents like 6-chloro-2-hexanone in the presence of a base such as potassium carbonate and a solvent like dimethyl sulfoxide. The reaction mixture is heated to promote nucleophilic substitution, forming the desired side chain at the N1 position of the purine ring. After completion, the product is extracted using organic solvents, purified through crystallisation in ethanol, and dried under vacuum to yield high-purity pentoxifylline. Modern methods aim to simplify the process by using one-step condensation and ring closure reactions, improving efficiency and enabling recycling of by-products. | |||
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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 |
None
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Terrestrial ecotoxicology |
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Aquatic ecotoxicology |
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General |
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1170 | E4 E = Manufacturers safety data sheets Rat4 = Verified data |
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Mostly eliminated in the urine (~95%) | Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source |
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Health issues |
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May cause gastrointestinal disturbances, nausea, vomiting, indigestion, dizziness, and flushing |
Handling issues |
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May emit hazardous combustion gases or vapours possible in the event of fire Combustable solid Incompatible with oxidising agents Possible risk of dust explosion |
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Health: H302, H362 | |||
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Not regulated | |||
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Chemically stable under standard ambient condition |
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pentoxyfylline | ||
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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 |