Stable isotope labeling allows researchers to study metabolic pathways in vivo in a safe manner.
Stable isotope-labeled compounds are used as environmental pollutant standards for the detection of air, water, soil, sediment and food.
In addition to treating various diseases, isotopes are used for imaging, diagnosis, and newborn screening.
Small molecule compounds labeled with stable isotopes can be used as chemical reference for chemical identification, qualitative, quantitative, detection, etc. Various types of NMR solvents can be used to study the structure, reaction mechanism and reaction kinetics of compounds.
Stable isotope labeling allows researchers to study metabolic pathways in vivo in a safe manner.
Stable isotope-labeled compounds are used as environmental pollutant standards for the detection of air, water, soil, sediment and food.
General Information |
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Catalog: BLP-009914 |
CAS: 284665-15-2 |
Molecular Formula: C6H6D3NO5 |
Molecular Weight: 178.16 |
Chemical Structure |
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Description | N-Acetyl-L-aspartic acid-[2,3,3-d3] is a labelled N-acetyl-L-aspartic acid. N-Acetyl-L-aspartic acid is a derivative of aspartic acid, which is a non-essential amino acid. |
Synonyms | N-Acetyl-L-aspartic-2,3,3-d3 Acid |
IUPAC Name | (2S)-2-acetamido-2,3,3-trideuteriobutanedioic acid |
Related CAS | 997-55-7 (unlabelled) |
Canonical SMILES | CC(=O)NC(CC(=O)O)C(=O)O |
InChI | InChI=1S/C6H9NO5/c1-3(8)7-4(6(11)12)2-5(9)10/h4H,2H2,1H3,(H,7,8)(H,9,10)(H,11,12)/t4-/m0/s1/i2D2,4D |
InChI Key | OTCCIMWXFLJLIA-BWBLNMPZSA-N |
Purity | 95% by HPLC; 98% atom D |
N-Acetyl-L-Aspartic acid-[2,3,3-d3] (NAA-d3) is a specialized compound widely employed in diverse biochemical and preclinical research settings. Here are the key applications of NAA-d3:
Neuroimaging Studies: In the realm of Magnetic Resonance Spectroscopy (MRS), NAA-d3 takes center stage as a pivotal tool for investigating brain metabolism and unraveling the intricacies of neurological disorders. By quantifying the concentration of NAA-d3, researchers unveil critical insights into neuronal vitality and functionality. This precise analysis proves invaluable for diagnosing and monitoring complex conditions like multiple sclerosis, Alzheimer’s disease, and traumatic brain injuries.
Metabolic Tracing: Within the realm of metabolic studies, NAA-d3 assumes the role of a versatile tracer, shedding light on the intricate pathways and dynamic fluxes of N-acetylaspartic acid in biological systems. Researchers harness this labeled compound to meticulously trace its incorporation and dispersion, deciphering its metabolic destiny. This method unveils valuable insights into metabolic perturbations during disease states, offering a platform for evaluating potential therapeutic strategies.
Biomarker Development: Positioned at the frontier of biomarker research, NAA-d3 emerges as a potent ally in the quest to conceive and validate diagnostic tools for a spectrum of neurological maladies. By scrutinizing alterations in NAA-d3 levels, scientists can pinpoint early biomarkers signaling disease initiation and progression. This pioneering approach holds promise for enhancing diagnostic precision and tailoring personalized treatment modalities for individuals grappling with neurological challenges.
Pharmacokinetic Studies: In the domain of pharmacokinetics, NAA-d3 assumes a critical role in assessing the absorption, distribution, metabolism, and excretion (ADME) of pharmaceutical agents that intersect with N-acetylaspartic acid pathways. Employing this labeled compound enables researchers to meticulously track the biodistribution of therapeutic compounds within living organisms. This comprehensive data is indispensable for fine-tuning drug dosages, optimizing therapeutic efficacy, and mitigating potential adverse effects.
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