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D-sorbose-[UL-13C6]

General Information
Catalog: BLP-013339
Molecular Formula: [13C]6H12O6
Molecular Weight: 186.11
Chemical Structure
D-sorbose-[UL-13C6]
Synonyms D-[UL-13C6]sorbose; D-sorbose-U-13C6
Related CAS 3615-56-3 (unlabelled)

D-sorbose-[UL-13C6], a uniformly labeled carbon-13 sugar utilized in diverse scientific research applications, offers unique insights into cellular processes. Here are the critical applications of D-sorbose-[UL-13C6]:

Metabolic Flux Analysis: Employing D-sorbose-[UL-13C6] in metabolic flux analysis enables researchers to track carbon pathways within cells meticulously. By integrating this isotopically labeled sugar into cellular metabolism, scientists can precisely monitor and quantify metabolic fluxes, unveiling valuable insights into cellular metabolism and identifying pivotal regulatory steps.

NMR Spectroscopy: Utilization of D-sorbose-[UL-13C6] in nuclear magnetic resonance (NMR) spectroscopy facilitates intricate structural and dynamic studies of carbohydrates and glycoconjugates. The uniform labeling with carbon-13 amplifies NMR signals, simplifying the resolution of complex molecular structures. This technique is indispensable for unraveling the conformational properties and interactions of carbohydrates at a molecular level.

Biochemical Pathway Studies: D-sorbose-[UL-13C6] plays a crucial role in biochemical pathway studies, shedding light on the functions and activities of specific enzymes within metabolic networks. By tracing the labeled carbon atoms, scientists can discern conversion rates and intermediate products generated within pathways, providing essential insights into the regulation and integration of metabolic processes.

Isotope Dilution Mass Spectrometry: In the realm of isotope dilution mass spectrometry (IDMS), D-sorbose-[UL-13C6] acts as a standard for the quantitative analysis of metabolic intermediates and end products. This labeled sugar serves as a reference point for comparing with natural abundance isotopes, facilitating precise quantification with exceptional accuracy and sensitivity. Widely employed in clinical diagnostics and metabolic research, this method stands out for its reliability and precision.

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