Product Name |
Allotetrahydrocortisone-[d5] |
Alternate Names |
hydrocortisone Stable Isotopes, Stable Isotopes of hydrocortisone |
CAT No. |
CS-I-00446
|
CAS No. |
Not Available |
Category |
Stable Isotopes |
Stock |
Enquire
|
Mol. Wt. |
369.51 g/mol |
Mol. For. |
C21H27D5O5
|
Hazardous |
This is not a Hazardous Compound
|
COA |
View Sample COA
|
MSDS |
View Sample MSDS
|
Parent API |
hydrocortisone |
Controlled |
No |
Shipping |
Free for purchase above 1000$ |
Delivery |
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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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Allotetrahydrocortisone-[d5] is a synthetic steroid that is used in medical research as a tracer molecule. It is a deuterated analog of the hormone Allotetrahydrocortisone, which is also known as 11-Dehydrocorticosterone. Allotetrahydrocortisone-[d5] is labeled with deuterium, which is an isotope of hydrogen, making it useful for tracking the metabolism of the hormone in the body.
Allotetrahydrocortisone-[d5] is used in medical research to study the metabolism of steroids in the body. It is particularly useful in the study of steroid hormone biosynthesis, as it allows researchers to track the production and metabolism of hormones like cortisol and aldosterone. The deuterium label on Allotetrahydrocortisone-[d5] allows researchers to differentiate it from endogenous hormones, which do not contain deuterium.
Chemically, Allotetrahydrocortisone-[d5] is a modified form of the hormone Allotetrahydrocortisone. It contains five deuterium atoms, which replace hydrogen atoms in the molecule. The deuterium atoms do not significantly alter the chemical properties of the molecule, but they do allow for the molecule to be tracked in the body using mass spectrometry.
In summary, Allotetrahydrocortisone-[d5] is a useful tool for medical researchers studying the metabolism of steroids in the body. Its deuterium label allows for easy tracking of the molecule, and it can be used to study the biosynthesis of important hormones like cortisol and aldosterone.