CAS 478506-23-9
:D-Ribose-2,3,4,5-13C4(9CI)
Description:
D-Ribose-2,3,4,5-^13C4 (9CI) is a stable isotope-labeled form of D-ribose, a naturally occurring sugar that plays a crucial role in cellular metabolism, particularly in the synthesis of nucleotides and nucleic acids. The presence of carbon-13 isotopes in the molecular structure allows for enhanced tracking and analysis in metabolic studies using techniques such as nuclear magnetic resonance (NMR) spectroscopy. D-ribose is a pentose monosaccharide, characterized by its five carbon atoms, and is essential for the formation of ATP (adenosine triphosphate), which is vital for energy transfer in cells. The compound is typically white, crystalline, and soluble in water. Its applications extend to biochemistry and pharmaceutical research, particularly in studies related to energy metabolism and cellular function. The specific labeling with ^13C isotopes can provide insights into metabolic pathways and the dynamics of ribose utilization in various biological systems.
Formula:C5H10O5
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Found 2 products.
D-Ribose-2,3,4,5-13C4
CAS:Controlled Product<p>Applications Labeled D-Ribose, which is produced by microorganism fermentation of glucose in a fermentation culture medium without adding calcium carbonate.<br>References Ostrowski, S., et al.: Science, 305, 71 (2004), Vavilin, D., et al.: Biochim. Biophys. Acta, 1708, 91 (2005), Fletcher, J., et al.: Anal. Chem., 79, 2199 (2007), Weissleder, R., et al.: Nature, 452, 580 (2008),<br></p>Formula:C4CH10O5Color and Shape:NeatMolecular weight:154.10D-Ribose-2,3,4,5-13C4
CAS:<p>D-Ribose-2,3,4,5-13C4 is a complex carbohydrate with saccharide units. It is synthesized by the chemical modification of D-ribose. This product can be used to modify or methylate glucose and other carbohydrates. It has been shown to inhibit the formation of amyloid plaques in Alzheimer's disease, which may be due to its ability to reduce nitric oxide and reactive oxygen species levels. The purity of this product is at least 98%.</p>Formula:C5H10O5Purity:Min. 95%Molecular weight:154.1 g/mol

