Overview
Fluorophenylalanine is a synthetic amino acid derivative where a fluorine atom is substituted on the phenyl ring of phenylalanine. This modification alters the compound's biochemical properties, making it valuable for research in protein engineering and metabolic studies. The fluorinated aromatic ring increases the molecule's stability and introduces unique electronic effects, which are exploited in various biochemical applications. It is commonly used as a non-natural amino acid in studies of enzyme mechanisms and protein structure-function relationships.
Physical and Chemical Properties
Fluorophenylalanine exists as a white crystalline powder with moderate solubility in polar solvents like water and methanol. The fluorine substitution on the phenyl ring increases the compound's lipophilicity compared to unmodified phenylalanine. The melting point is typically around 270-275°C, indicating good thermal stability. The chiral center at the alpha carbon means it exists as L- and D-enantiomers, with the L-form being more commonly used in biological research.
Main Applications
In biochemical research, fluorophenylalanine is primarily used to study protein structure and function through amino acid substitution experiments. Its fluorinated ring serves as a spectroscopic probe in NMR studies. The compound also finds use as a building block in pharmaceutical synthesis, particularly for developing fluorinated drug analogs. Additionally, it's employed in metabolic pathway studies to investigate amino acid uptake and incorporation mechanisms.
Safety and Storage
Fluorophenylalanine should be handled with standard laboratory precautions, including gloves and eye protection. While not highly toxic, it may cause irritation upon contact with skin or eyes. For long-term storage, keep the compound in a tightly sealed container under dry conditions at room temperature. Exposure to moisture may lead to degradation, while light exposure could potentially cause decomposition over extended periods.
B2B Procurement Guide
When sourcing fluorophenylalanine for research or industrial applications, purity is the most critical specification. HPLC purity of ≥98% is typically required for most applications. Bulk purchasers should verify the enantiomeric purity (L- or D-form) based on their specific needs. Lead times may vary as this is a specialty chemical, so planning procurement well in advance of project timelines is recommended.
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