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Updated: Jun 14, 2026

Fabrication and Characterization of Microneedle Patches for Loading and Delivery of Exosomes
Published on: July 12, 2024
Microneedles with intrinsic immunoadjuvant properties: microfabrication, protein stability, and modulated release
Alexander K Andrianov1, Alexander Marin, Daniel P DeCollibus
1Research & Development, Apogee Technology, Inc., 129 Morgan Drive, Norwood, Massachusetts 02062, USA. aandrianov@apogeebio.com
Purpose:
Intradermal immunization using microneedles requires compatible immunoadjuvant system. To address this challenge, we investigated microneedles coated with polyphosphazene polyelectrolyte, which served both as microfabrication material and an immunoadjuvant compound.
Methods:
Coated microneedles were fabricated by depositing formulations containing Poly[di(carboxylatophenoxy)phosphazene], PCPP, on metal shafts, and their physico-chemical characterization was conducted.
Results:
Microfabrication of PCPP-coated microneedles exhibited strong dependence on protein-PCPP interactions in solutions and allowed for high efficiency of protein encapsulation. 70°C thermal inactivation studies demonstrated a remarkable increase in functional stability of protein in coated microneedles compared to solution formulation. A potential for modulation of protein release from coated microneedles has been demonstrated through ionic complexation of PCPP with small ions.
Conclusions:
Microneedles containing PCPP coatings provide improved protein stability, modulated release, and protein-friendly microfabrication process.
