H-Lys-OEt·2HCl: Your Reliable Supplier for L-Lysine Ethyl Ester Dihydrochloride in Peptide Synthesis

Discover the essential amino acid derivative, L-Lysine ethyl ester dihydrochloride (H-Lys-OEt·2HCl), a critical component for high-quality peptide synthesis. As a leading manufacturer and supplier, we provide this high-purity compound to researchers and formulators globally. Explore its specifications and learn why partnering with a trusted Chinese supplier ensures consistency and competitive pricing for your critical projects.

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Advantages of Sourcing Our H-Lys-OEt·2HCl

Exceptional Purity and Consistency

Our H-Lys-OEt·2HCl is guaranteed to be over 98% pure, ensuring predictable and reproducible results in your complex organic synthesis projects. Trust our expertise as a dedicated supplier to deliver unwavering quality.

Critical for Peptide Chain Elongation

This L-lysine derivative serves as a fundamental building block in constructing peptide chains. Its esterified form facilitates efficient coupling reactions, vital for developing novel therapeutic peptides and research compounds.

Competitive Pricing and Reliable Supply

As a leading manufacturer in China, we offer competitive pricing for H-Lys-OEt·2HCl, making high-quality amino acid derivatives accessible. Partner with us for a stable and cost-effective supply chain, ensuring you can buy with confidence.

Key Applications of L-Lysine Ethyl Ester Dihydrochloride

Peptide Synthesis

The primary application for H-Lys-OEt·2HCl is in solid-phase and solution-phase peptide synthesis, where it acts as a protected lysine residue for incorporation into peptide sequences.

Pharmaceutical Intermediate

As a key organic intermediate, it is valuable in the synthesis of various pharmaceutical compounds and active pharmaceutical ingredients (APIs) that utilize lysine structures.

Research and Development

Universities and research institutions worldwide utilize this compound for exploratory research in medicinal chemistry, biochemistry, and drug discovery programs.

Chemical Synthesis

Beyond peptides, its reactive functional groups make it a versatile starting material or intermediate in a wide range of specialty chemical synthesis pathways.