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Product Line: Food Industry

Fmoc-L-hydroxyproline

CAS 88050-17-3

Molecular structure of Fmoc-L-hydroxyproline

CAS · 88050-17-3

01

Product Overview

Fmoc-L-hydroxyproline is a high-purity amino-acids supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance White powder
Purity (HPLC) 98% min
TLC 98% min
Specific Rotation [α]20/D (C=1 in MeOH) -58° ± 3°
Melting Point 186–196°C
Clarity of solution 0.3 gram in 2ml DMF clear solution
Water Content (K.F.) 1.0% max
Element analysis (C,H,N) 5.0% max
Loss on drying (70°C, 2h) 1.0% max
IR Spectrum In accordance with the structure
Mass Spectrum In accordance with the structure
NMR Spectrum In accordance with the structure
03

Applications

Fmoc-L-hydroxyproline is primarily used as a protected amino acid in peptide synthesis, particularly in solid-phase peptide synthesis (SPPS). The Fmoc (9-fluorenylmethyloxycarbonyl) protecting group safeguards the amino functionality during multi-step synthesis, allowing selective deprotection and sequential coupling. It is applied in the preparation of collagen-like peptides, cyclic peptides, and other bioactive sequences where hydroxyproline contributes to structural stability and biological function. Additionally, Fmoc-L-hydroxyproline is used in research for designing therapeutic peptides, peptide-based biomaterials, and molecular probes.

04

Benefits

The benefits of Fmoc-L-hydroxyproline include its stability, solubility, and selective reactivity, which facilitate efficient and reproducible peptide synthesis. Hydroxyproline residues enhance peptide secondary structure, particularly in collagen-mimetic sequences, improving stability and biological activity. The Fmoc protection ensures compatibility with a wide range of synthetic conditions while preventing undesired side reactions. Its versatility allows incorporation into diverse peptide constructs, supporting drug discovery, biochemical studies, and biomaterial development.

05

Conclusion

Fmoc-L-hydroxyproline is a valuable intermediate for the synthesis of structurally stable and biologically active peptides. Its combination of Fmoc protection, hydroxyproline functionality, and chemical stability makes it essential for solid-phase peptide synthesis and advanced peptide research. By enabling efficient and precise incorporation of hydroxyproline residues, it continues to play a critical role in peptide-based therapeutics, biomaterials, and biochemical studies.

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