
CAS 1216956-86-3
:Didesethyl Chloroquine Hydroxyacetamide-d4
Description:
Didesethyl Chloroquine Hydroxyacetamide-d4 is a deuterated derivative of chloroquine, a well-known antimalarial drug. This compound is characterized by the presence of two deuterium atoms, which are isotopes of hydrogen, replacing the hydrogen atoms in the hydroxyacetamide moiety. The deuteration enhances the stability and can improve the pharmacokinetic properties of the molecule, making it useful in research applications, particularly in studies involving drug metabolism and pharmacodynamics. The compound retains the basic structural features of chloroquine, including its quinoline ring system, which is essential for its biological activity. Didesethyl Chloroquine Hydroxyacetamide-d4 is primarily utilized in scientific research, particularly in the fields of medicinal chemistry and pharmacology, to investigate the mechanisms of action of chloroquine and its derivatives. Its unique isotopic labeling allows for precise tracking in metabolic studies, providing insights into the drug's behavior in biological systems. As with any chemical substance, proper handling and safety protocols should be observed when working with this compound.
Formula:C16H20ClN3O2
Synonyms:- Didesethyl Chloroquine Hydroxyacetamide-d4
- 4-(4'-GlycolaMidyl-1'-Methyl-3,4-d4-butylaMino)-7-chloroquinoline
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Found 2 products.
Didesethyl Chloroquine Hydroxyacetamide-d4
CAS:Controlled Product<p>Applications An intermediate in the preparation of labelled Cletoquine Oxalate It is a COVID19-related research product.<br></p>Formula:C16D4H16ClN3O2Color and Shape:NeatMolecular weight:325.83Didesethyl chloroquine hydroxyacetamide-d4
CAS:<p>Didesethyl chloroquine hydroxyacetamide-d4 is a deuterated pharmaceutical compound, which serves as a stable isotope-labeled analog. Such compounds are often synthesized in specialized laboratories for research purposes, providing insightful data on pharmacokinetics and metabolic pathways. The deuteration, involving the replacement of hydrogen atoms with deuterium, offers enhanced accuracy in mass spectrometry analysis due to its unique isotopic signature.</p>Formula:C16H20ClN3O2Purity:Min. 95%Molecular weight:325.82 g/mol

