Product Name |
Adenosine-5’,5’’-d2 |
Alternate Names |
Adenosine Stable Isotopes, Stable Isotopes of Adenosine |
CAT No. |
CS-T-64708
|
CAS No. |
82741-17-1 |
Category |
Stable Isotopes |
Stock |
Enquire
|
Mol. Wt. |
Not Available |
Mol. For. |
Not Available
|
Hazardous |
This is not a Hazardous Compound
|
COA |
View Sample COA
|
MSDS |
View Sample MSDS
|
Parent API |
Adenosine |
Controlled |
No |
Shipping |
Free for purchase above 1000$ |
Delivery |
In-Stock, products will be dispatched within 24 hours via FedEx for USA, Europe, and other countries. |
Return |
Returns/replacement accepted if you are not satisfied with the quality of the product, (please send us an email with the reason/issues which are facing, within 15 days, after receipt of the product). |
Ordering |
Place your order online or by email sales@clearsynth.com |
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Adenosine-5’,5’’-d2 is a modified form of adenosine, a naturally occurring nucleotide that plays a vital role in cellular metabolism. Adenosine-5’,5’’-d2 is a stable isotope-labeled compound that is used in a variety of research applications. It is commonly used as an internal standard in mass spectrometry-based assays for the quantification of adenosine levels in biological samples.
The chemical formula of Adenosine-5’,5’’-d2 is C10H12D2N5O4. The compound is labeled with two deuterium atoms at the 5’ and 5’’ positions of the ribose sugar moiety. This modification makes Adenosine-5’,5’’-d2 chemically distinct from the naturally occurring adenosine, allowing for accurate and precise quantification of adenosine levels in biological samples.
Adenosine-5’,5’’-d2 has been used in numerous studies to investigate the role of adenosine in various physiological processes, including cardiovascular function, inflammation, and neurotransmission. Additionally, Adenosine-5’,5’’-d2 has been used in pharmacokinetic studies to evaluate the metabolism and pharmacokinetics of adenosine in vivo.
Overall, Adenosine-5’,5’’-d2 is a valuable tool for researchers who are interested in studying the role of adenosine in biological systems. Its stable isotope labeling and chemical properties make it an ideal internal standard for the accurate and precise quantification of adenosine levels in biological samples.