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Updated: Oct 26, 2025

Formulation of Diblock Polymeric Nanoparticles through Nanoprecipitation Technique
Published on: September 20, 2011
Synthesis of Polyphosphate-Loaded Nanoparticles Using Inverse Miniemulsion Polymerization for Sustained Delivery to
Fernando T P Borges1, Georgia Papavasiliou2, Fouad Teymour1
1Department of Chemical and Biological Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.
Abstract:
Polyphosphate salts, such as sodium hexametaphosphate (PPi), are effective in the attenuation of collagenase and biofilm production and prevention of anastomotic leak in mice models. However, systemic administration of polyphosphate solutions to the gut presents a series of difficulties such as uncontrolled delivery to target and off-site tissues. In this article a process to produce PPi-loaded poly(ethylene glycol) diacrylate (PEGDA) hydrogel nanoparticles through miniemulsion polymerization is developed. The effects of using a polyphosphate salt, as compared to a monophosphate salt, is investigated through cloud point measurements, which is then translated to a change in the required HLB of the miniemulsion system. A parametric study is developed and yields a way to control particle swelling ratio and mean diameter based on the surfactant and/or initiator concentration, among other parameters. Finally, release kinetics of two different crosslink density particles shows a sustained and tunable release of the encapsulated polyphosphate.

