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-007031 |
Molecular Formula: C5H9DO5 |
Molecular Weight: 151.14 |
Chemical Structure |
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Synonyms | D-[5-2H]xylose; D-[5-2H]xylo-pentose; D-xylose-5-d; D-[5-D]xylose |
IUPAC Name | (3R,4S,5R)-tetrahydro-2H-pyran-6-d-2,3,4,5-tetraol |
Related CAS | 58-86-6 (unlabelled) |
Solubility | Soluble in Methanol, Water |
Appearance | White to Off-white Solid |
Storage | Store at -20°C |
D-xylose-[5-d], a stable isotope-labeled sugar, finds wide-ranging applications in research and industry. Explore the multifaceted uses of D-xylose-[5-d] through the key applications:
Metabolic Tracing: Delving into carbohydrate metabolism, researchers utilize D-xylose-[5-d] in metabolic tracing studies, unraveling the intricate pathways of energy utilization in cells and organisms. By meticulously monitoring the isotopic label, scientists uncover the dynamic uptake and utilization of xylose, shedding light on metabolic intricacies and revealing clues to potential metabolic disorders.
Biomarker Discovery: In the realm of clinical research, D-xylose-[5-d] emerges as a pivotal tool for identifying biomarkers associated with gastrointestinal and liver functions. Through ingestion, this isotope-labeled sugar aids in assessing gastrointestinal tract absorption capabilities and liver function, offering valuable insights into conditions like malabsorption syndromes and liver diseases, empowering precise diagnostics and targeted interventions.
Plant Physiology Studies: Within the domain of plant physiology, D-xylose-[5-d] serves as a cornerstone for investigating sugar transport and metabolism in plants. By leveraging the unique capabilities of stable isotopes, scientists trace the intricate movement of xylose across plant tissues, unraveling its pivotal role in plant growth and development. This knowledge fuels advancements in enhancing crop yields and optimizing biofuel production, offering a sustainable pathway for agricultural innovation.
Pharmaceutical Formulations: Driving innovation in drug delivery systems, D-xylose-[5-d] plays a crucial role in formulating new therapeutic compounds. Leveraging its distinctive labeling, researchers can precisely track the metabolism and distribution of pharmaceutical compounds in the body, unraveling crucial insights into drug efficacy and safety profiles. This meticulous study of drug metabolism aids in the development of novel medications, ensuring optimal therapeutic outcomes.
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