Fmoc-(S)-3-Amino-4-(2,4-dichlorophenyl)butyric Acid: A Key Building Block for Advanced Peptide Synthesis and Drug Discovery

Discover the critical role of Fmoc-(S)-3-Amino-4-(2,4-dichlorophenyl)butyric Acid in advancing peptide synthesis and driving innovation in medicinal chemistry. Explore its unique properties and applications.

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Advantages Provided by the Product

Enhanced Peptide Structure

The unique 2,4-dichlorophenyl moiety contributes distinctive structural and electronic properties, enabling the synthesis of peptides with tailored characteristics for specific biological targets.

Controlled Synthesis

The Fmoc protecting group ensures selective reactions during peptide chain elongation, a critical aspect of efficient custom peptide synthesis.

Medicinal Chemistry Applications

This compound is invaluable in medicinal chemistry for designing novel drug candidates, offering improved pharmacokinetic profiles and target interactions within drug discovery programs.

Key Applications

Peptide Synthesis

Serves as a fundamental building block for the solid-phase or solution-phase synthesis of peptides, crucial for research and development in life sciences.

Drug Discovery

A key reagent in the development of new pharmaceutical compounds, particularly those based on peptide structures with modified properties.

Medicinal Chemistry

Enables the design and synthesis of novel molecules with potential therapeutic benefits, exploring structure-activity relationships.

Research and Development

Supports ongoing research in biochemistry, pharmacology, and materials science requiring specialized amino acid derivatives.