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Updated: Jun 15, 2026

Injectable Supramolecular Polymer-Nanoparticle Hydrogels for Cell and Drug Delivery Applications
Published on: February 7, 2021
Injectable Microparticle-Nanoliposome Hydrogel for Extended Release of Small Hydrophilic Molecules
Gil Aizik1, Wonmin Choi1, Claire A Ostertag-Hill1
1Laboratory for Biomaterials and Drug Delivery, Department of Anesthesiology, Division of Critical Care Medicine, Boston Childreǹs Hospital, Harvard Medical School, 300 Longwood Avenue, Boston, Massachusetts 02115, United States.
None:
Achieving sustained local release of small hydrophilic drugs is challenging and is particularly important when the drugs are toxic. To address these challenges, we developed a hybrid system comprising drug-containing microparticles embedded within a nanoliposomal hydrogel matrix. This system forms through salt-induced gelation using physiologically relevant sodium chloride concentrations (0.9%), allowing for microparticle encapsulation without harsh chemical processes. In vitro, the hybrid system exhibited a slower release of encapsulated cargo compared to microparticles or hydrogel alone. In vivo proof of principle was provided with tetrodotoxin (TTX), a small hydrophilic and ultrapotent local anesthetic, which can cause systemic toxicity if the release is not controlled. Encapsulating TTX within the microparticles of the hybrid system provided a very prolonged nerve block (∼100 h), without systemic toxicity. These findings demonstrate that the hybrid system of microparticles within a nanoliposome gel enabled sustained release, improved local drug retention, and provided a safer and prolonged delivery of potent small-molecule therapeutics.
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