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Dextran-Based Nanoparticles to Formulate pH-Responsive Pickering Emulsions: A Fully Degradable Vector at a Day Scale. | LitMetric

Dextran-Based Nanoparticles to Formulate pH-Responsive Pickering Emulsions: A Fully Degradable Vector at a Day Scale.

Biomacromolecules

Laboratoire de Chimie des Polymères Organiques, University Bordeaux, CNRS, Bordeaux INP, UMR 5629, Bordeaux, 16 Avenue Pey-Berland, 33607 Pessac, France.

Published: December 2020

AI Article Synopsis

  • Biosourced Pickering emulsion stabilizers are often designed for recycling but lack the quick degradability required for drug delivery, leading to the use of dextran, a polysaccharide from biomass, in creating pH-sensitive emulsions.
  • The dextran was modified to become hydrophobic and pH-sensitive, allowing it to break down into biocompatible components like dextran, ethanol, and acetone under acidic conditions.
  • The resulting nanoparticles effectively stabilized oil-in-water emulsions and were safely degraded in less than 24 hours without harmful byproducts, making them a promising option for eco-friendly drug delivery systems.

Article Abstract

Biosourced Pickering emulsion stabilizers with stimuli responsiveness are mostly designed for recycling and do not offer fast degradability as required for drug-delivery applications. Herein, dextran-a hydrophilic and biofriendly polysaccharide obtainable from biomass recovery-was used for the first time as a brick material for the formulation of (bio)degradable pH-sensitive Pickering emulsions. It was first modified with hydrophobic acetal moieties to provide pH-sensitive acetalated dextran. Under acidic conditions, it degrades into three biocompatible (macro)molecules: dextran, ethanol, and acetone. Nanoparticles of acetalated dextran were obtained using the nanoprecipitation process and could be similarly fully hydrolyzed under acidic conditions within 6 h. Then, O/W Pickering emulsions of dodecane (model oil) and medium-chain triglyceride (biocompatible oil) were successfully stabilized using these nanoparticles. pH-induced destabilization of these Pickering emulsions (including nanoparticles degradation) took less than 24 h. Finally, neither accumulation of nanoparticles nor harmful component release happened during the process, making this stimuli-responsive vector safe and environmentally friendly.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.biomac.0c01489DOI Listing

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