Product Name |
6-Hydroxy Chlorzoxazone-d2-15N |
Alternate Names |
Chlorzoxazone Stable Isotopes, Stable Isotopes of Chlorzoxazone |
CAT No. |
CS-P-07473
|
CAS No. |
1784060-40-7 |
Category |
Stable Isotopes |
Stock |
Enquire
|
Mol. Wt. |
188.57 g/mol |
Mol. For. |
C7H2ClD2¹⁵NNO3
|
Hazardous |
This is not a Hazardous Compound
|
COA |
View Sample COA
|
MSDS |
View Sample MSDS
|
Parent API |
Chlorzoxazone |
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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6-Hydroxy Chlorzoxazone-d2-15N is a deuterated and isotopically labeled version of 6-Hydroxy Chlorzoxazone, an active metabolite of Chlorzoxazone. Chlorzoxazone is a muscle relaxant drug used to treat muscle spasms and pain. The deuterated and isotopically labeled version of 6-Hydroxy Chlorzoxazone can be used in pharmacokinetic studies to determine the metabolism and elimination of Chlorzoxazone in the body.
The chemical formula of 6-Hydroxy Chlorzoxazone-d2-15N is C7H2D2ClN2O3, which indicates that the molecule contains two deuterium atoms and one nitrogen-15 atom. The deuterium atoms replace two of the hydrogen atoms in the molecule, while the nitrogen-15 atom replaces one of the nitrogen atoms. The isotopic labeling of 6-Hydroxy Chlorzoxazone-d2-15N makes it useful in mass spectrometry and nuclear magnetic resonance spectroscopy studies for the identification and quantification of Chlorzoxazone and its metabolites in biological samples.
In conclusion, 6-Hydroxy Chlorzoxazone-d2-15N is a valuable tool in pharmacokinetic studies for the determination of Chlorzoxazone metabolism and elimination in the body. The isotopically labeled version of 6-Hydroxy Chlorzoxazone can be used in mass spectrometry and nuclear magnetic resonance spectroscopy studies for the identification and quantification of Chlorzoxazone and its metabolites in biological samples.