N-Hydroxysuccinimide (HOSu): Your Premier Supplier in China

Discover high-purity N-Hydroxysuccinimide (CAS 6066-82-6) for your critical peptide synthesis and bioconjugation needs. As a leading manufacturer and supplier in China, we offer exceptional quality and competitive pricing for bulk and research quantities. Secure your supply chain with us.

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Advantages of Sourcing N-Hydroxysuccinimide from Us

Uncompromising Purity and Quality

Our N-Hydroxysuccinimide boasts a purity of 98% or higher, making it ideal for demanding applications like peptide synthesis, where impurity levels can significantly impact reaction outcomes. We are a dedicated HOSu supplier you can trust.

Expertise in Chemical Manufacturing

Leveraging advanced manufacturing processes, we ensure consistent quality and supply. As a reputable chemical manufacturer in China, we are committed to supporting your research and production needs with our reliable N-Hydroxysuccinimide.

Streamlined Procurement and Global Supply

We offer flexible ordering options, from research quantities to bulk purchases, ensuring you can buy N-Hydroxysuccinimide efficiently. Our logistics network facilitates prompt delivery worldwide, making us your go-to HOSu supplier.

Key Applications of N-Hydroxysuccinimide

Peptide Synthesis

N-Hydroxysuccinimide is a cornerstone reagent in solid-phase and solution-phase peptide synthesis, activating carboxylic acids to form stable succinimidyl esters, thereby facilitating efficient amide bond formation.

Bioconjugation

Used for conjugating biomolecules, HOSu is vital in creating labeled proteins, antibody-drug conjugates, and in immobilizing enzymes for biosensor applications, enhancing specificity and reaction efficiency.

Protein Modification

It serves as an essential tool for modifying proteins by forming stable covalent linkages, which is critical in various biochemical research and diagnostic assay development.

Organic Synthesis Intermediate

Beyond its biochemical roles, N-Hydroxysuccinimide acts as a versatile intermediate in general organic synthesis, enabling the creation of diverse amide derivatives and other functionalized compounds.