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L-Citrulline-[5,5-d2]

General Information
Catalog: BLP-004497
CAS: 1021439-17-7
Molecular Formula: C6H11D2N3O3
Molecular Weight: 177.20
Chemical Structure
L-Citrulline-[5,5-d2]
Description L-Citrulline-[5,5-d2] is the labelled derivative of L-Citrulline, which is used as a radiolabelled internal standard. L-Citrulline is an amino acid, first isolated from the juice of watermelon, used in the treatment of asthenia.
Synonyms L-Citrulline D2; L-CITRULLINE-5,5-D2; H-Orn(CONH2)-OH-d2
IUPAC Name (2S)-2-amino-5-(carbamoylamino)-5,5-dideuteriopentanoic acid
Related CAS 372-75-8 (unlabelled)
Canonical SMILES C(CC(C(=O)O)N)CNC(=O)N
InChI InChI=1S/C6H13N3O3/c7-4(5(10)11)2-1-3-9-6(8)12/h4H,1-3,7H2,(H,10,11)(H3,8,9,12)/t4-/m0/s1/i3D2
InChI Key RHGKLRLOHDJJDR-XHNVGKFISA-N
Purity 98% by CP; 98% atom D

L-Citrulline-[5,5-d2], an isotopically labeled amino acid, finds extensive utilization in both clinical and research domains. Here are the key applications of L-Citrulline-[5,5-d2]:

Metabolic Pathway Tracing: Employing L-Citrulline-[5,5-d2] as a tracer in metabolic investigations allows researchers to meticulously monitor the conversion and utilization of citrulline within the urea cycle. By leveraging mass spectrometry to track the labeled compound, insights into the intricate dynamics of nitrogen metabolism are revealed. This methodology plays a pivotal role in elucidating metabolic disorders and advancing nutritional therapies.

Clinical Research: Within the realm of clinical research, L-Citrulline-[5,5-d2] serves as a fundamental tool for scrutinizing the pharmacokinetics and pharmacodynamics of citrulline-based supplements and therapies. Through the utilization of an isotopically labeled molecule, researchers can accurately measure patterns of absorption, distribution, and excretion in human subjects. Such data is imperative for refining dosing regimens and enhancing therapeutic efficacy.

Nitric Oxide Production Studies: Acting as a precursor to arginine, which is crucial for nitric oxide synthesis, L-Citrulline facilitates precise tracking of nitrogen atoms along the nitric oxide production pathway. This capability enables in-depth exploration of cardiovascular health, muscle performance, and erectile function, offering profound insights into the multifaceted role of nitric oxide across various physiological processes.

Nutritional Supplement Research: In the realm of nutritional supplement research, L-Citrulline-[5,5-d2] emerges as a valuable asset for evaluating the efficacy and metabolic implications of dietary supplements containing citrulline. By utilizing the labeled compound, researchers can differentiate between exogenous supplementation and endogenous citrulline production. These studies play a crucial role in formulating evidence-based dietary recommendations and optimizing supplement compositions to promote superior health outcomes.

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