CAS · 557756-85-1
Product Overview
Fmoc-N-amido-PEG4-acid is a high-purity polyethylene-glycol supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | Light yellow viscous liquid |
|---|---|
| Purity (by HNMR) | 95% min |
Applications
Fmoc-N-amido-PEG4-acid is widely used as a building block in peptide synthesis and bioconjugation chemistry. The Fmoc-protected amino group allows for selective deprotection and sequential coupling in solid-phase peptide synthesis (SPPS), while the PEG4 spacer imparts solubility and flexibility to peptide chains or other biomolecules. It is applied in the preparation of peptide-drug conjugates, PEGylated peptides, and other modified biomolecules for therapeutic, diagnostic, or research purposes. Additionally, it is used in the development of functionalized surfaces, linkers for antibody-drug conjugates (ADCs), and other biocompatible conjugates where controlled spacing and solubility are critical.
Benefits
The benefits of Fmoc-N-amido-PEG4-acid include its ability to enhance solubility and reduce aggregation in peptides or bioconjugates due to the PEG4 spacer. The Fmoc protecting group provides stability and selective deprotection under mild conditions, allowing precise stepwise synthesis. Its versatility enables incorporation into a wide range of biomolecular constructs, improving the pharmacokinetic properties of peptide therapeutics, including increased circulation time and reduced immunogenicity. The compound also facilitates reproducible and efficient synthesis of complex molecules, supporting research and development in drug design, diagnostics, and materials science.
Conclusion
Fmoc-N-amido-PEG4-acid is an essential intermediate for peptide synthesis and the creation of functional bioconjugates. Its combination of Fmoc protection, PEG4 spacer benefits, and chemical stability makes it highly valuable for enhancing solubility, flexibility, and performance of peptide-based therapeutics and biomolecular constructs. By enabling efficient, precise, and versatile synthesis, it continues to play a key role in pharmaceutical development, bioconjugate chemistry, and biomedical research.
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