D-3-(2-Furyl)-alanine: A Key Amino Acid Derivative for Research and Synthesis
Explore the chemical properties and applications of D-3-(2-Furyl)-alanine, a vital component in modern biochemistry.
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D-3-(2-Furyl)-alanine
D-3-(2-Furyl)-alanine is a specialized amino acid derivative with significant utility in various scientific disciplines. Its unique structure makes it an invaluable intermediate for the synthesis of complex organic molecules and pharmaceutical compounds. The detailed understanding of its properties supports advanced research in medicinal chemistry.
- Discover the synthesis pathways for D-3-(2-Furyl)-alanine, crucial for chemical research and development.
- Learn why CAS 110772-46-8 product is a critical component in medicinal chemistry intermediates.
- Understand the applications of this amino acid derivative in bioactive molecule synthesis.
- Source high-quality D-3-(2-Furyl)-alanine from reliable suppliers to ensure research integrity.
Advantages Provided by the Product
Precision Synthesis
Leverage the precision of D-3-(2-Furyl)-alanine in your synthesis projects, ensuring high purity and consistent results for your research, as highlighted by various CAS 110772-46-8 product analyses.
Versatile Intermediate
As a versatile intermediate, D-3-(2-Furyl)-alanine facilitates the creation of a wide range of bioactive molecules, making it indispensable for drug discovery and development efforts.
Enhanced Research Capabilities
Utilize this key amino acid derivative to enhance your research capabilities in biochemistry and medicinal chemistry, enabling novel compound development.
Key Applications
Drug Synthesis
D-3-(2-Furyl)-alanine serves as a critical building block in the synthesis of various pharmaceutical agents, contributing to the development of new therapeutic compounds.
Medicinal Chemistry Research
Its unique structure makes it a valuable tool for medicinal chemists exploring novel molecular scaffolds and structure-activity relationships.
Biochemical Applications
The compound plays a role in biochemical studies, aiding in the understanding of metabolic pathways and enzyme mechanisms.
Bioactive Molecule Synthesis
From drug discovery to novel material development, D-3-(2-Furyl)-alanine is instrumental in creating a diverse array of bioactive molecules.