Fmoc-D-Glu(OtBu)-OH: Your Premier Protected Amino Acid for Advanced Synthesis

Discover the exceptional quality and versatility of Fmoc-D-Glu(OtBu)-OH (CAS 109745-15-5), a cornerstone reagent for demanding peptide synthesis and cutting-edge pharmaceutical research. As a leading manufacturer and supplier in China, we offer this high-purity Fmoc-protected D-amino acid to accelerate your groundbreaking projects.

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Key Advantages of Our Fmoc-D-Glu(OtBu)-OH

Exceptional Purity for Reliable Results

Our Fmoc-D-Glu(OtBu)-OH boasts exceptional purity, verified by stringent quality control measures. This ensures predictable outcomes in your peptide synthesis, minimizing side reactions and maximizing the yield of your desired peptide. We are a leading supplier committed to quality.

Optimized for Efficient Peptide Synthesis

The Fmoc group allows for stepwise deprotection and coupling, a fundamental advantage in Solid-Phase Peptide Synthesis (SPPS). Combined with the stable tert-butyl ester, this derivative streamlines your synthesis process, making it a sought-after reagent for researchers looking to buy advanced amino acids.

Versatile Applications in Life Sciences

Beyond basic peptide synthesis, Fmoc-D-Glu(OtBu)-OH is instrumental in drug development, bioconjugation, and protein engineering. Its structure enables the creation of complex molecules with specific biological activities, making it a vital component for pharmaceutical research and development laboratories. Purchase this key intermediate from a reliable manufacturer.

Applications Driving Innovation

Peptide Synthesis

A primary building block for solid-phase and solution-phase peptide synthesis, enabling the construction of complex peptide sequences for research and therapeutic applications. Buy in bulk from our trusted China supplier.

Drug Development

Crucial in the synthesis of novel pharmaceutical compounds, particularly in areas targeting neurological disorders, due to its structural role in biologically active molecules.

Bioconjugation

Used in processes to link biomolecules to surfaces or other molecules, enhancing drug delivery systems and diagnostic tools.

Protein Engineering

Enables the modification of proteins to study interactions and functions, supporting advancements in biotechnology and therapeutic design.

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