78213-26-0
Chemical Structure
Phenytoin-15N2,13C
- CAS No.: 78213-26-0
- Formula:C1413CH1215N2O2
- Molecular Weight:255.25
IUPAC Name: 3-allyl-1-ethyl-1H-imidazol-3-ium bromide
InChIKey: CXOFVDLJLONNDW-JDOJCZCPSA-N
SMILES: O=C1C(C2=CC=CC=C2)(C3=CC=CC=C3)[15NH][13C]([15NH]1)=O
Biological Activity: Phenytoin-15N2,13C is the 13C and 15N labeled Phenytoin[1]. Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice[2][3].
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Phenytoin-15N2,13C | 99.84% | Phenytoin-15N2,13C is the 13C and 15N labeled Phenytoin. Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice. | ||||||||||||||||||||
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Phenytoin (Standard) | 99.94% | Phenytoin (Standard) is the analytical standard of Phenytoin. This product is intended for research and analytical applications. Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice. | ||||||||||||||||||||
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Phenytoin-d5 | Phenytoin-d5 (5,5-Diphenylhydantoin-d5) is deuterium labeled Phenytoin. Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice. | |||||||||||||||||||||
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Phenytoin-d10 | 99.50% | Phenytoin-d10 is the deuterium labeled Phenytoin. Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice. | ||||||||||||||||||||
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Phenytoin | 99.95% | Phenytoin (5,5-Diphenylhydantoin) is a potent Voltage-gated Na+ channels (VGSCs) blocker. Phenytoin has antiepileptic activity and reduces breast tumour growth and metastasis in mice. | ||||||||||||||||||||
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- [1]. Russak EM, et al. Impact of Deuterium Substitution on the Pharmacokinetics of Pharmaceuticals. Ann Pharmacother. 2019 Feb;53(2):211-216. [Content Brief]
- [2]. Rogawski, M.A. and W. Loscher, The neurobiology of antiepileptic drugs. Nat Rev Neurosci, 2004. 5(7): p. 553-64. [Content Brief]
- [3]. Porter, R.J., et al., Mechanisms of action of antiseizure drugs. Handb Clin Neurol, 2012. 108: p. 663-81. [Content Brief]