D-Ribose-d-2

Catalog No.: A73572
Stable Isotope
D-Ribose-d-2 is a deuterium-labeled derivative of D-Ribose. Its primary role is to serve as a stable isotope, enabling advanced metabolic studies. D-Ribose is integral to ATP synthesis and plays a significant role in energy metabolism, making it useful in research focusing on chronic fatigue syndrome and cardiac energy dynamics. This compound is essential for tracing metabolic pathways and understanding energy-related disorders.
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Adooq Products cited in reputable paper
Science VOLUME 380, ISSUE 6663 (2023)
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Science VOLUME 356, ISSUE 6336 (2017)
Cell Vol. 185 Issue 23 p4428-4447.e28
Cell Vol 177, Issue 7, p1933-1947.e25
Cell Vol 156, Issue 5, p857-1114
Nature Volume 622 Issue 7982 (2023)
Nature volume 620, pages890-897 (2023)
Nature volume 610, pages540-546 (2022)
Nature volume 588, pages83-88 (2020)
Nature volume 574, pages268-272 (2019)
Nature volume 573, pages539-545 (2019)
Nature volume 567, pages118-122 (2019)
Nature volume 551, pages639-643 (2017)
Nature volume 551, pages247-250 (2017)
Nature volume 548, pages356-360 (2017)
Nature volume 545, pages187-192 (2017)
Biological Activity
DescriptionD-Ribose-d-2 is a deuterium-labeled derivative of D-Ribose. Its primary role is to serve as a stable isotope, enabling advanced metabolic studies. D-Ribose is integral to ATP synthesis and plays a significant role in energy metabolism, making it useful in research focusing on chronic fatigue syndrome and cardiac energy dynamics. This compound is essential for tracing metabolic pathways and understanding energy-related disorders.
Product Information
Catalog NumA73572
FormulaC5H9DO5
Molecular Weight151.14
CAS Number169783-76-0
SMILESO=C[C@@H]([C@]([C@@H](CO)O)([2H])O)O
Useful Calculator

This calculator helps you calculate mass of compound based on solution concentration, volume and molecular weight in a specific solution using the formula:

Mass (mg) = Concentration (mM) × Volume (mL) × Molecular Weight (g/mol)

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Please check COA/MSDS for correct molecular weight.

Calculate the dilution required to prepare a stock solution.
This equation is commonly abbreviated as: C1V1 = C2V2

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    C2

    V2