Hyaluronic Acid Amine (HA-NH2), MW 2500K is an ultra-high-molecular-weight, amine-functionalized hyaluronic acid derivative. Its primary amine groups specifically provide reactive sites for bioconjugation, crosslinking, surface modification, and functional biomaterial development
Key Features and Benefits
- Amine Functionalization: Provides primary amine groups specifically for conjugation and further chemical modification.
- MW 2500K: Ultra-high molecular weight supports highly viscous solutions and macromolecular HA-based systems.
- Reactive NH2 Groups: React with NHS esters, aldehydes, and other amine-reactive compounds.
- HA-Based Material: Uses hyaluronic acid as a hydrophilic polysaccharide backbone.
- Crosslinking Capability: Amine groups enable covalent network formation with complementary reactive polymers.
- Versatile Platform: Supports conjugation, immobilization, hydrogel formation, and surface functionalization.
Applications
- Bioconjugation: Enables attachment of peptides, proteins, probes, drugs, and other functional molecules.
- Hydrogel Formation: Supports crosslinked HA networks using compatible multifunctional crosslinkers.
- Surface Modification: Provides reactive amines for immobilization and functional biomaterial surfaces.
- Drug Delivery: Supports functional HA-based carriers and drug delivery research.
- Tissue Engineering: Enables development of functional hydrogels, scaffolds, and extracellular matrix-inspired materials.
Storage and Handling
- Storage: Store at –20 °C in a fully sealed container under dry and dark conditions.
- Handling: Protect from moisture, light, and excessive heat to maintain polymer integrity and amine functionality.
Hyaluronic Acid Amine (HA-NH2), MW 2500K combines ultra-high-molecular-weight HA with reactive amine functionality that specifically supports bioconjugation, crosslinking, hydrogel formation, surface modification, and advanced biomaterial development.
AxisPharm offers 5000+ PEG Linkers with high purity. Different kinds of PEG Reagents may be available by custom synthesis.





