8-Arm PLGA-Biotin

Price range: $300.00 through $1,200.00

8-Arm PLGA-Biotin (Eight-Arm Poly(lactic-co-glycolic acid)-Biotin) is a star-shaped biodegradable polymer consisting of eight PLGA chains radiating from a multifunctional core and terminated with biotin groups. Compared with linear PLGA-Biotin, 8-Arm PLGA-Biotin provides significantly higher functional group density, enhanced conjugation efficiency, improved drug loading capability, and greater control over polymer architecture. The terminal biotin groups enable high-affinity binding to streptavidin and avidin, making this polymer ideal for targeted drug delivery, nanoparticle functionalization, diagnostics, bioseparation, and biomaterials research.

Product Specifications

Product Name: 8-Arm PLGA-Biotin
Polymer Composition: Eight-Arm Poly(lactic-co-glycolic acid)-Biotin
Molecular Weight: Custom molecular weights available
Lactide:Glycolide Ratio: 50:50, 65:35, 75:25, 85:15, Custom
Functional Groups: Biotin
Appearance: White to off-white solid
Solubility: DMSO, DMF, Acetone, THF, Dichloromethane, Chloroform
Storage: -20°C, dry and protected from light
Purity: Typically ≥95%

8-Arm PLGA-Biotin structure

 

SKU: 13859 Categories: , ,

Description

General Description

8-Arm PLGA-Biotin is a highly branched biodegradable polyester designed for advanced drug delivery and biomedical applications. The polymer consists of eight PLGA chains attached to a central multifunctional core, creating a star-shaped architecture with multiple terminal biotin groups.

The biotin functionalities enable highly specific interactions with streptavidin and avidin proteins, facilitating the attachment of antibodies, proteins, peptides, fluorophores, nucleic acids, targeting ligands, and other biomolecules. Compared with conventional linear PLGA derivatives, the eight-arm architecture offers substantially higher functional group density and increased versatility for the preparation of multifunctional nanoparticles, targeted delivery systems, bioactive materials, and diagnostic platforms.

Upon hydrolysis, the polymer degrades into lactic acid and glycolic acid, making it suitable for biodegradable pharmaceutical formulations, regenerative medicine, and biomaterials development.


Applications

  • Drug delivery systems
  • Polymeric nanoparticles
  • Polymeric micelles
  • Streptavidin-mediated conjugation
  • Targeted drug delivery
  • Antibody immobilization
  • Protein conjugation
  • Diagnostic assay development
  • Bioseparation applications
  • Nanomedicine research

Features and Benefits

  • Star-shaped eight-arm PLGA architecture
  • Multiple terminal biotin groups
  • Higher functional group density than linear PLGA
  • Strong streptavidin/avidin binding affinity
  • Biodegradable and biocompatible
  • Enhanced drug loading capability
  • Suitable for nanoparticle and hydrogel fabrication
  • Enables multifunctional biomolecule conjugation

Additional information

Molecular Weight

10K, 20K, 40K

Package Size

1g, 5g