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N-Octanoylaminoacetic Acid-[d15]

General Information
Catalog: BLP-009960
Molecular Formula: C10H4D15NO3
Molecular Weight: 216.36
Chemical Structure
N-Octanoylaminoacetic Acid-[d15]
Description N-Octanoylaminoacetic Acid-[d15] is a labelled N-Octanoylaminoacetic Acid. N-Octanoylaminoacetic Acid is an acyl glycine. Acyl glycines are normally minor metabolites of fatty acids.
Synonyms N-Capryloylglycine-d15; N-Octanoyl-d15-glycine
Related CAS 14246-53-8 (unlabelled)
Purity 95% by HPLC; 98% atom D

N-Octanoylaminoacetic Acid-[d15] is a deuterated compound widely employed in biochemical research and analysis. Here are the key applications of N-Octanoylaminoacetic Acid-[d15]:

Mass Spectrometry: A cornerstone in mass spectrometry, N-Octanoylaminoacetic Acid-[d15] serves as a vital internal standard for the precise quantification of related compounds. Deuterated compounds play a pivotal role in enhancing the accuracy of mass spectrometric measurements by distinguishing signals from diverse isotopic species. This application is indispensable for metabolic profiling and cutting-edge pharmacokinetic investigations.

Metabolic Studies: Delving into the intricate realm of fatty acid metabolism and its intricate pathways, researchers rely on N-Octanoylaminoacetic Acid-[d15] for comprehensive insights. This deuterated compound facilitates the tracing and quantification of fatty acid incorporation and degradation within biological systems. Such data is imperative for unraveling the mysteries of metabolic disorders and formulating innovative therapeutic strategies.

Stable Isotope Labeling: Harnessing the power of stable isotope labeling, N-Octanoylaminoacetic Acid-[d15] plays a pivotal role in exploring biochemical flux and dynamics within cellular environments. By incorporating deuterium, researchers can meticulously track metabolic alterations over time, shedding light on complex biochemical pathways and monitoring cellular responses to a myriad of stimuli.

Pharmaceutical Research: At the forefront of pharmaceutical sciences, N-Octanoylaminoacetic Acid-[d15] emerges as a critical tool for investigating drug interactions and stability. Through its integration into drug formulation studies, researchers can closely monitor the metabolic destiny and degradation patterns of pharmaceutical compounds. This proactive approach ensures the development of safer and more efficacious medications, propelling pharmaceutical research forward into new realms of possibility.

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