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3-Carboxy Detomidine-13C,15N2

Chemical Name 3-Carboxy Detomidine-13C,15N2
CAT No. CS-BI-00026
CAS Registry# 1346605-14-8
Status Under Certification (Usually dispatched in 5 days)
Category Stable Isotopes
Hazardous This is not a Hazardous Compound
COA View Sample COA
Controlled No

Additional Information

Controlled No
Parent API Detomidine
Smileys CC1=C(C=CC=C1C(=O)O)CC2=CN=CN2
Canonical Smiles CC1=C(C=CC=C1C(=O)O)CC2=CN=CN2
Inchl InChI=1S/C12H12N2O2/c1-8-9(5-10-6-13-7-14-10)3-2-4-11(8)12(15)16/h2-4,6-7H,5H2,1H3,(H,13,14)(H,15,16)/i7+1,13+1,14+1
IUPAC 3-((213C,1,3-15N2)1H-imidazol-5-ylmethyl)-2-methylbenzoic acid
Hazardous No

Usage and description

3-Carboxy Detomidine-13C,15N2 is a chemical compound used in medical research and development. It is a labeled derivative of detomidine, a sedative and analgesic drug commonly used in veterinary medicine. The compound has been labeled with carbon-13 and nitrogen-15 isotopes for use in studies involving stable isotope labeling, which can provide valuable information about the metabolic pathways and pharmacokinetics of detomidine. The primary use of 3-Carboxy Detomidine-13C,15N2 is in pharmacokinetic studies, where it is administered to animal subjects and the isotope-labeled metabolites are tracked and measured in biological samples. This information can be used to determine the drug's effectiveness, as well as its safety and potential side effects. The compound can also be used in developing new drug formulations and delivery methods. Chemically, 3-Carboxy Detomidine-13C,15N2 is a derivative of imidazole, a five-membered heterocyclic ring containing two nitrogen atoms. The compound has a molecular formula of C12H11D2N4O3 and a molecular weight of 269.3 g/mol. It is a white crystalline powder that is soluble in water and other polar solvents. Overall, 3-Carboxy Detomidine-13C,15N2 is an important tool for researchers in the field of pharmacology and drug development. Its stable isotope labeling allows for precise and accurate measurements of drug metabolism and pharmacokinetics, which can ultimately lead to the development of safer and more effective drugs.

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