High-Purity FMOC-S-Trityl-L-Cysteine (103213-32-7): A Key Intermediate for Peptide Synthesis & Drug Development

Discover the critical role of FMOC-S-Trityl-L-Cysteine in advancing peptide synthesis and drug development. As a leading manufacturer and supplier in China, we provide high-purity intermediates crucial for your research and production needs.

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Key Advantages of Sourcing FMOC-S-Trityl-L-Cysteine

Exceptional Purity for Reliable Results

Our FMOC-S-Trityl-L-Cysteine boasts a purity of ≥99.70%, ensuring that your peptide synthesis reactions proceed with maximum efficiency and minimal side products. This high standard makes us a trusted supplier for demanding applications.

Facilitates Complex Peptide Synthesis

This protected amino acid derivative is indispensable for introducing cysteine residues into peptides. The Fmoc protection and S-trityl group offer orthogonal deprotection strategies, allowing for precise control in multi-step synthesis, a key benefit for drug development.

Supplier in China for Cost-Effective Procurement

As a dedicated manufacturer based in China, we offer competitive pricing and efficient logistics for FMOC-S-Trityl-L-Cysteine. Partner with us to secure a stable supply chain and optimize your procurement costs for this vital chemical intermediate.

Versatile Applications of FMOC-S-Trityl-L-Cysteine

Peptide Synthesis

Utilized extensively in solid-phase and solution-phase peptide synthesis, enabling the creation of complex peptide chains with disulfide bond potential. Look for reliable peptide synthesis building blocks for sale.

Drug Development

A crucial intermediate in the development of peptide-based therapeutics, supporting the creation of drugs targeting specific biological pathways with enhanced stability and efficacy.

Bioconjugation

Essential for linking peptides to other molecules or surfaces, aiding in the development of diagnostics, biosensors, and targeted drug delivery systems.

Protein Engineering

Supports the design and synthesis of novel proteins with tailored properties, such as improved stability or altered binding affinities, for advanced biotechnological applications.