Fmoc-Tic-OH: A Key Chiral Building Block for Advanced Peptide Synthesis and Drug Discovery

Discover the crucial role of Fmoc-Tic-OH in crafting complex peptide structures for pharmaceutical research and development. Explore its unique properties as a rigid amino acid analog and proline surrogate, essential for innovation in drug discovery.

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Advantages Offered by the Product

Enhanced Peptide Stability

Leverage Fmoc-Tic-OH to impart unique structural rigidity into peptide sequences, significantly improving their stability against enzymatic degradation, a key benefit when seeking reliable peptide synthesis reagents.

Versatile Mimicry in Peptides

Utilize Fmoc-Tic-OH as a precise analog for phenylalanine or tyrosine, or as a proline surrogate, offering unparalleled flexibility in designing peptides with desired pharmacological properties for drug discovery.

High Purity for Pharmaceutical Applications

Benefit from our commitment to high purity standards, ensuring that our Fmoc-Tic-OH is suitable for critical applications as pharmaceutical intermediates manufactured in China.

Key Applications

Peptide Synthesis

Fmoc-Tic-OH is indispensable in solid-phase peptide synthesis (SPPS) for incorporating unique structural constraints, aiding in the development of complex and stable peptide drugs.

Pharmaceutical Research

As a key intermediate, it supports the synthesis of novel drug candidates, contributing to the advancement of medicinal chemistry and drug discovery efforts.

Organic Synthesis

Its chiral nature makes Fmoc-Tic-OH a valuable building block for creating intricate organic molecules and specialty fine chemicals used in various R&D projects.

Biochemical Research

Researchers utilize Fmoc-Tic-OH to study the structure-activity relationships of peptides, understanding how specific amino acid modifications impact biological function.