Cas no 139264-15-6 (Didesmethyl Zolmitriptan)

Didesmethyl Zolmitriptan is a metabolite of Zolmitriptan, a selective serotonin receptor agonist primarily used in migraine treatment. As an active derivative, it retains affinity for 5-HT1B/1D receptors, contributing to vasoconstriction and inhibition of neuropeptide release. Its key advantages include a well-characterized pharmacological profile and relevance in pharmacokinetic studies, aiding in the understanding of Zolmitriptan's metabolic pathways. The compound is utilized in research to explore drug metabolism, bioavailability, and potential interactions. Its structural specificity makes it valuable for analytical applications, such as reference standards in HPLC or LC-MS assays, ensuring accurate quantification of Zolmitriptan and its metabolites in biological matrices.
Didesmethyl Zolmitriptan structure
Didesmethyl Zolmitriptan structure
Product Name:Didesmethyl Zolmitriptan
CAS No:139264-15-6
MF:C14H17N3O2
MW:259.303683042526
CID:902724
Update Time:2025-08-05

Didesmethyl Zolmitriptan Chemical and Physical Properties

Names and Identifiers

    • Didesmethyl Zolmitriptan
    • 4-[[3-(2-aminoethyl)-1H-indol-5-yl]methyl]-1,3-oxazolidin-2-one
    • (4S)-4-[3-(2-aminoethyl)-1H-5-indolylmethyl]-1,3-oxazolan-2-one
    • (S)-2-[5-[(2-oxo-1,3-oxazolidin-4-yl)methyl]-1H-indol-3-yl]ethanamine
    • (S)-2-<5-<(2-oxo-1,3-oxazolidin-4-yl)methyl>-1H-indol-3-yl>ethylamine
    • 2-Oxazolidinone,4-[[3-(2-aminoethyl)-1H-indol-5-yl]methyl]-,(S)
    • 4-[3-(2-Aminoethyl)-1H-indol-5-yl]methyl-2-oxazolidinone
    • Didesmethyl Zolmitriptan ()
    • Inchi: 1S/C14H17N3O2/c15-4-3-10-7-16-13-2-1-9(6-12(10)13)5-11-8-19-14(18)17-11/h1-2,6-7,11,16H,3-5,8,15H2,(H,17,18)/t11-/m0/s1
    • InChI Key: NKOBWHOGNBPTDO-NSHDSACASA-N
    • SMILES: O1C(N[C@H](C1)CC1C=CC2=C(C=1)C(=CN2)CCN)=O

Computed Properties

  • Exact Mass: 259.13200

Experimental Properties

  • PSA: 83.63000
  • LogP: 1.66030

Didesmethyl Zolmitriptan Pricemore >>

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Didesmethyl Zolmitriptan Production Method

Additional information on Didesmethyl Zolmitriptan

Comprehensive Overview of Didesmethyl Zolmitriptan (CAS No. 139264-15-6): Properties, Applications, and Research Insights

Didesmethyl Zolmitriptan (CAS No. 139264-15-6) is a pharmacologically significant metabolite of Zolmitriptan, a well-known selective serotonin receptor agonist primarily used in the treatment of migraines. As a didesmethyl derivative, this compound has garnered attention in both academic and pharmaceutical research due to its unique biochemical properties and potential therapeutic applications. This article delves into the molecular characteristics, synthesis pathways, and emerging trends surrounding Didesmethyl Zolmitriptan, while addressing frequently searched questions such as "What is the role of Didesmethyl Zolmitriptan in drug metabolism?" and "How does Didesmethyl Zolmitriptan compare to Zolmitriptan?".

The chemical structure of Didesmethyl Zolmitriptan features the removal of two methyl groups from the parent compound Zolmitriptan, resulting in altered pharmacokinetic and pharmacodynamic profiles. Researchers have identified this metabolite as a key intermediate in understanding the bioactivation pathways of triptan-class drugs. Recent studies highlight its potential as a biomarker for monitoring drug efficacy, particularly in personalized medicine approaches for migraine patients. With growing interest in precision pharmacology, the demand for high-purity Didesmethyl Zolmitriptan reference standards (CAS No. 139264-15-6) has surged among analytical laboratories.

From a synthetic chemistry perspective, Didesmethyl Zolmitriptan presents intriguing challenges due to its stereochemical complexity. Modern green chemistry techniques have been explored to optimize its production, aligning with the pharmaceutical industry's focus on sustainable manufacturing. Analytical methods such as HPLC-MS and NMR spectroscopy are routinely employed for characterization, with researchers frequently searching for "validated analytical methods for Didesmethyl Zolmitriptan quantification". The compound's stability under various pH conditions has also become a hot topic in formulation science.

In drug discovery circles, Didesmethyl Zolmitriptan is being investigated for potential off-target effects and novel therapeutic indications beyond migraine treatment. Some preclinical studies suggest possible applications in neuroprotection, sparking queries like "Can Didesmethyl Zolmitriptan cross the blood-brain barrier?" in scientific forums. The compound's interaction with 5-HT receptor subtypes continues to be a focus area, with particular interest in its binding affinity compared to other triptan metabolites.

The regulatory landscape surrounding Didesmethyl Zolmitriptan remains dynamic, with pharmacopoeias gradually incorporating specifications for this metabolite. Quality control professionals often search for "ICH guidelines for Didesmethyl Zolmitriptan impurity profiling", reflecting the compound's importance in pharmaceutical quality assurance. As a reference material, it plays a crucial role in method development for pharmacokinetic studies and bioequivalence testing of generic migraine medications.

Emerging trends in computational chemistry have enabled more efficient study of Didesmethyl Zolmitriptan's molecular interactions. Virtual screening approaches are being employed to predict its metabolic fate, addressing common search queries like "in silico prediction of Didesmethyl Zolmitriptan pharmacokinetics". These advancements complement traditional laboratory research, offering cost-effective solutions for early-stage drug development.

From a commercial standpoint, the global market for Didesmethyl Zolmitriptan (CAS No. 139264-15-6) reflects the growing emphasis on complete drug metabolite profiling in pharmaceutical development. Suppliers frequently update their catalogs with improved purity grades, responding to the research community's need for "highly characterized Didesmethyl Zolmitriptan standards". The compound's pricing and availability trends are closely monitored by procurement specialists in the pharmaceutical industry.

Looking ahead, Didesmethyl Zolmitriptan research is expected to expand into novel areas such as metabolomics and personalized migraine therapy. With increasing awareness of interindividual variability in drug response, scientists are exploring how this metabolite's concentration correlates with treatment outcomes. This aligns with current healthcare trends toward patient-specific treatment regimens and biomarker-guided therapy, making Didesmethyl Zolmitriptan a compound of enduring scientific and clinical interest.

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