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Electroresponsive Alginate-Based Hydrogels for Controlled Release of Hydrophobic Drugs.

Anna Puiggalí-JouEric CazorlaGuillem RuanoIsmael BabeliMaria-Pau GinebraJose García-TorresCarlos Alemán
Published in: ACS biomaterials science & engineering (2020)
Stimuli-responsive biomaterials have attracted significant attention for the construction of on-demand drug release systems. The possibility of using external stimulation to trigger drug release is particularly enticing for hydrophobic compounds, which are not easily released by simple diffusion. In this work, an electrochemically active hydrogel, which has been prepared by gelling a mixture of poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) and alginate (Alg), has been loaded with curcumin (CUR), a hydrophobic drug with a wide spectrum of clinical applications. The PEDOT/Alg hydrogel is electrochemically active and organizes as segregated PEDOT- and Alg-rich domains, explaining its behavior as an electroresponsive drug delivery system. When loaded with CUR, the hydrogel demonstrates a controlled drug release upon application of a negative electrical voltage. Comparison with the release profiles obtained applying a positive voltage and in the absence of electrical stimuli indicates that the release mechanism dominating this system is complex because of not only the intermolecular interactions between the drug and the polymeric network but also the loading of a hydrophobic drug in a water-containing delivery system.
Keyphrases
  • drug release
  • drug delivery
  • cancer therapy
  • wound healing
  • ionic liquid
  • tissue engineering
  • aqueous solution
  • adverse drug
  • working memory
  • perovskite solar cells
  • emergency department
  • bone regeneration
  • energy transfer