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Valeryl-L-carnitine Chloride-13C3

Chemical Properties and Information

Product Code: CS-T-97118 Stable Isotopes
Valeryl-L-carnitine Chloride-13C3
API Family
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Product Code
CS-T-97118

Valeryl-L-carnitine Chloride-13C3

Stable Isotopes
Stock Status: : Enquire Live

CAT No.
CS-T-97118
CAS No.
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Molecular Formula
C9¹³C3H23ClNO4
Molecular Weight
283.75
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There is no hazardous surcharge associated with this product.
There is no packaging charge associated with this product.
For Research Purposes only. Not for Personal use.
All compounds supplied are strictly intended for laboratory, research, analytical, and scientific use only. They are not meant for human consumption, therapeutic use, or any form of clinical application.
CAS No.
NA
Product Code
CS-T-97118
M.F.
C9¹³C3H23ClNO4
M.W.
283.75
Category
Stable Isotopes
Storage Condition
Refer MSDS for complete information.
IUPAC Name
Valeryl-L-carnitine Chloride-13C3
References
"Napolitano, C., et al.: Molecules 14, 3268 (2009); Gong, X., et. al.: J. Chem. Res., 6, 327 (2008); Pettegrew, J. W. and Gershon, S.: PCT Int. Appl. WO 2003066041 A1 20030814 (2003)"
Synonyms
Valeryl-L-carnitine Chloride-13C3
Application Notes
"Valeryl-L-carnitine Chloride-13C3 is carbon-13 labeled Valeryl-L-carnitine Chloride (V091465). Valeryl-L-carnitine Chloride is a derivative of L-carnitine, which is a cofactor that facilitates the oxidation of fatty acid. Valeryl-L-carnitine Chloride can be used to synthesize antidepressants for treating geriatric depression and may have potential application for developing nutrient conjugates that can be transported across the blood brain barrier."
Hazard Compound
Refer MSDS for complete information.
Overview
"Valeryl-L-carnitine Chloride-13C3 is carbon-13 labeled Valeryl-L-carnitine Chloride (V091465). Valeryl-L-carnitine Chloride is a derivative of L-carnitine, which is a cofactor that facilitates the oxidation of fatty acid. Valeryl-L-carnitine Chloride can be used to synthesize antidepressants for treating geriatric depression and may have potential application for developing nutrient conjugates that can be transported across the blood brain barrier."
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