Product Name |
(2S,6R)-(-)-Hydroxynorketamine D6 |
Alternate Names |
Ketamine Stable Isotopes, Stable Isotopes of Ketamine |
CAT No. |
CS-O-35123
|
CAS No. |
1430202-71-3 (Unlabeled) |
Category |
Stable Isotopes |
Stock |
Enquire
|
Mol. Wt. |
245.74 g/mol |
Mol. For. |
C12H8D6ClNO2
|
Hazardous |
This is not a Hazardous Compound
|
COA |
View Sample COA
|
MSDS |
View Sample MSDS
|
Parent API |
Ketamine |
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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(2S,6R)-(-)-Hydroxynorketamine D6 is a deuterated form of (2S,6R)-(-)-Hydroxynorketamine, which is a derivative of ketamine. Ketamine is a well-known drug used as an anesthetic and for pain relief, but it also has antidepressant properties. (2S,6R)-(-)-Hydroxynorketamine D6 is primarily used for research purposes, specifically in the study of the pharmacokinetics and pharmacodynamics of ketamine and its derivatives.
(2S,6R)-(-)-Hydroxynorketamine D6 is a chiral molecule, which means it has two enantiomers, or mirror-image forms. (2S,6R)-(-)-Hydroxynorketamine D6 is the (-) enantiomer, which is the more pharmacologically active form. The deuterium atoms in (2S,6R)-(-)-Hydroxynorketamine D6 replace six hydrogen atoms in the molecule, which makes it useful in studying the metabolism and distribution of ketamine and its derivatives in vivo.
The chemical formula for (2S,6R)-(-)-Hydroxynorketamine D6 is C13H16D6NO2, and its molecular weight is 239.36 g/mol. It is a white crystalline powder that is soluble in water and ethanol. The compound has a melting point of 137-139°C and a boiling point of 396.7°C at 760 mmHg.
In conclusion, (2S,6R)-(-)-Hydroxynorketamine D6 is a valuable tool for researchers studying the pharmacology of ketamine and its derivatives. Its deuterium atoms make it useful in studying the metabolism and distribution of ketamine in vivo.