CAS No.
[1260619-61-1 (Salt fom)]
Storage Condition
Store at freezer (-20ยฐC) for long term storage
Synonyms
Acetaminophen-d3 Glucuronide, 1260619-61-1 (Salt fom)
Application Notes
Useful research chemical for a range of applications
Hazard Compound
No -Refer MSDS for accurate information
Acetaminophen-d3 Glucuronide is a drug product that is used as an analytical standard for HPLC, as well as in research and development of drugs.
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Acetaminophen-d3 Glucuronide usage and description
Acetaminophen-d3 glucuronide is a metabolite of acetaminophen, also known as paracetamol, which is a widely used analgesic and antipyretic drug. Acetaminophen is metabolized in the liver by glucuronidation, a process in which the drug is conjugated with glucuronic acid to form a water-soluble compound that can be excreted in urine. Acetaminophen-d3 glucuronide is a derivative of this process, in which three hydrogen atoms in the molecule are replaced with deuterium atoms, making it useful in pharmacokinetic studies.
The usage of acetaminophen-d3 glucuronide is primarily in research settings, where it is used as a tracer molecule to study the metabolism and elimination of acetaminophen in vivo. By measuring the levels of acetaminophen-d3 glucuronide in urine or blood samples, researchers can determine the rates of glucuronidation and elimination of acetaminophen from the body. This information can be useful in optimizing dosing regimens, predicting drug interactions, and identifying factors that may affect the pharmacokinetics of acetaminophen.
Chemically, acetaminophen-d3 glucuronide is a white crystalline powder with a molecular formula of C14H17D3NO9. It has a molecular weight of 353.27 g/mol and a melting point of 178-180ยฐC. The compound is stable under normal storage conditions and can be analyzed using various analytical techniques, such as high-performance liquid chromatography and mass spectrometry.
In summary, acetaminophen-d3 glucuronide is a useful tool in pharmacokinetic research, allowing for the study of acetaminophen metabolism and elimination. Its chemical properties make it amenable to analysis using various analytical techniques, and its stability ensures accurate measurements over time.