Unlock Advanced Peptide Synthesis with Nalpha-Boc-Nepsilon-Fmoc-L-lysine Methyl Ester
The essential building block for cutting-edge peptide research and development.
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Nalpha-Boc-Nepsilon-Fmoc-L-lysine Methyl Ester
Nalpha-Boc-Nepsilon-Fmoc-L-lysine Methyl Ester (CAS 84624-27-1) is a vital component in the field of peptide synthesis, particularly for solid-phase peptide synthesis (SPPS). Its dual protection strategy, employing the acid-labile tert-butyloxycarbonyl (Boc) group and the base-labile 9-fluorenylmethoxycarbonyl (Fmoc) group, allows for precise control over peptide chain elongation. This reagent is indispensable for researchers and manufacturers involved in drug discovery and the development of complex biomolecules.
- Discover the advantages of using Fmoc-protected lysine derivatives for reliable solid-phase peptide synthesis outcomes.
- Explore how this Nalpha-Boc-Nepsilon-Fmoc-L-lysine methyl ester serves as a critical building block in custom peptide manufacturing processes.
- Learn about the chemical synthesis advantages offered by this high-purity Fmoc amino acid, ensuring efficient and accurate peptide chain assembly.
- Find competitive Boc-Lys(Fmoc)-OMe prices and purchase options for your research needs.
Key Advantages
Orthogonal Protection
The strategic placement of Boc and Fmoc protecting groups offers true orthogonality, allowing for selective removal under different conditions, a cornerstone of efficient peptide synthesis.
Milder Synthesis Conditions
Embracing Fmoc chemistry means adopting milder deprotection conditions compared to older methods, enhancing compatibility with sensitive amino acid side chains and complex peptide structures.
High Purity and Reliability
Sourced for its exceptional purity, this Fmoc amino acid derivative is crucial for achieving high yields and purity in your peptide synthesis projects, minimizing downstream purification challenges.
Key Applications
Peptide Synthesis
A fundamental reagent for constructing peptide chains in both research and industrial settings, enabling the creation of novel therapeutic peptides.
Organic Synthesis
Serves as a versatile building block in complex organic synthesis pathways, facilitating the creation of diverse chemical structures.
Biotechnology Research
Supports advancements in biotechnology by providing a reliable component for developing new diagnostic tools and experimental reagents.
Drug Discovery
Plays a pivotal role in the early stages of drug discovery by enabling the synthesis of peptide-based drug candidates and libraries.
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