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Catalog Number:
12024
N-Methyl-DL-tyrosine methyl ester hydrochloride
Purity:
≥ 98% (HPLC)
Synonym(s):
N-Me-DL-Tyr-OMe·HCl
Documents
$60.39 /250MG
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Product Information

N-Methyl-DL-tyrosine methyl ester hydrochloride is a versatile compound widely utilized in biochemical research and pharmaceutical applications. This derivative of tyrosine is known for its role as a precursor in the synthesis of various bioactive molecules, making it invaluable in the development of new therapeutic agents. Researchers often leverage its unique properties to study neurotransmitter functions and metabolic pathways, particularly in the context of neurological disorders.

In addition to its research applications, N-Methyl-DL-tyrosine methyl ester hydrochloride is also employed in the formulation of dietary supplements aimed at enhancing cognitive function and mood stabilization. Its ability to cross the blood-brain barrier allows for effective delivery of its benefits, making it a popular choice among formulators. With its high purity and consistent quality, this compound stands out in the market, providing researchers and industry professionals with a reliable tool for advancing their work in neurochemistry and related fields.

Synonyms
N-Me-DL-Tyr-OMe·HCl
Purity
≥ 98% (HPLC)
Molecular Formula
C11H16NO3·HCl
Molecular Weight
246.75
MDL Number
MFCD03788157
Melting Point
143-150 ?C
Appearance
Light brown powder
Conditions
Store at 0-8°C
General Information
Synonyms
N-Me-DL-Tyr-OMe·HCl
Purity
≥ 98% (HPLC)
Molecular Formula
C11H16NO3·HCl
Molecular Weight
246.75
MDL Number
MFCD03788157
Melting Point
143-150 ?C
Appearance
Light brown powder
Conditions
Store at 0-8°C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N-Methyl-DL-tyrosine methyl ester hydrochloride is widely utilized in research focused on:

  • Neuroscience Research: This compound serves as a valuable tool for studying neurotransmitter systems, particularly in understanding dopamine pathways and their implications in various neurological disorders.
  • Pharmaceutical Development: It is used in the synthesis of novel pharmaceutical agents, helping researchers design drugs that target specific receptors, enhancing therapeutic efficacy.
  • Biochemical Assays: The compound acts as a substrate in enzyme assays, allowing scientists to investigate enzyme kinetics and mechanisms, which is crucial for drug discovery.
  • Protein Engineering: It is employed in the modification of proteins to study structure-function relationships, aiding in the development of more effective biopharmaceuticals.
  • Metabolic Studies: Researchers utilize this compound to explore metabolic pathways, providing insights into metabolic disorders and potential treatment strategies.

Citations