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-006979 |
Molecular Formula: C5H5D7O5 |
Molecular Weight: 159.19 |
Chemical Structure |
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Synonyms | [UL-2H7]xylitol; [1,1',2,3,4,5,5'-2H7]xylitol; xylitol-1,1,2,3,4,5,5-d7; xylitol-C-d7 |
IUPAC Name | pentane-d7-1,2,3,4,5-pentaol |
Related CAS | 87-99-0 (unlabelled) |
Boiling Point | 494.5±40.0 °C at 760 mmHg |
Melting Point | 94-97 °C(lit.) |
Purity | 98% (CP); 99% atom D |
Solubility | Soluble in Water |
Appearance | White Solid |
Storage | Store at -20°C |
xylitol-[1,1',2,3,4,5,5'-d7], a deuterated derivative of xylitol, finds extensive utilization in diverse research and industrial settings. Here are the key applications of xylitol-[1,1',2,3,4,5,5'-d7]:
Metabolic Studies: Delving into metabolic intricacies, xylitol-[1,1',2,3,4,5,5'-d7] plays a pivotal role in tracking the destiny and metabolism of xylitol within biological realms. By integrating deuterium into the equation, researchers harness mass spectrometry to discern and quantify metabolic intermediates. This aids in unraveling the labyrinthine pathways of xylitol metabolism and its implications on human health and disease.
Pharmaceutical Research: In the realm of pharmaceuticals, this labeled compound stands as a critical benchmark in unraveling the pharmacokinetics of xylitol-based medications. By scrutinizing the behavior of deuterated xylitol within the organism, scientists glean essential insights into absorption, distribution, and clearance kinetics. This data serves as a cornerstone for refining and perfecting therapeutic agents containing xylitol.
Food Science: Within the domain of food science research, xylitol-[1,1',2,3,4,5,5'-d7] assumes a pivotal position as an internal reference standard for evaluating the conversion of xylitol during food processing and preservation. Standards featuring this compound elevate the precision of quantitative analyses by compensating for analytical fluctuations. This meticulous approach ensures stringent quality control and uniformity in products incorporating xylitol.
Isotope Dilution Analysis: Embracing the nuances of isotope dilution mass spectrometry (IDMS), xylitol-[1,1',2,3,4,5,5'-d7] emerges as a cornerstone for accurate and precise quantification of xylitol within diverse matrices. The presence of deuterium facilitates a clear distinction from naturally occurring xylitol, thereby amplifying analytical specificity. This cutting-edge technique shines in the realm of trace analysis and quality assurance, serving as a stalwart pillar in research and industrial domains.
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