4.6 Article

Development and characterization of a poly (vinyl alcohol) and sodium alginate blend foam for wound dressing loaded with propolis and all-trans retinoic acid

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JOURNAL OF APPLIED POLYMER SCIENCE
卷 138, 期 21, 页码 -

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WILEY
DOI: 10.1002/app.50480

关键词

biomaterials; biomedical applications; biopolymers and renewable polymers

资金

  1. Fundacao de Amparo a Pesquisa do Estado de Minas Gerais
  2. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico

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Propolis and vitamin A were incorporated into a polymeric wound dressing and the results showed improved healing properties along with controlled release dynamics. The SEM images and FTIR spectra provided insights into the structure of the dressing, while the anti-inflammatory effects of the bioactive substances were confirmed. Further studies are needed to ensure biocompatibility and explore other biological activities of the therapeutic agents.
Propolis is a complex mixture of phytochemicals, with antibacterial, anti-inflammatory, and healing properties. All-trans retinoic acid is implicated in wound healing by stimulating angiogenesis, cell recruitment, extracellular matrix deposition, and reepithelization. The incorporation of both agents to a polymeric wound dressing composed of poly (vinyl alcohol) and sodium alginate may result in improved healing allied to controlled release, fluid uptake, and wound protection. In the present work, we have physically characterized this wound dressing and analyzed its release kinetics. The anti-inflammatory capacity was assayed. SEM images showed a highly porous structure with a diverse morphology. FTIR spectra displayed a highly cross-linked structure with both polymers connected by hydrogen bonds and acetal bridges. The wound dressings were able to retain great volumes of PBS. Propolis and vitamin A releasing behavior were maintained for 6 h. The concentrations of the biologically active substances were capable of promoting anti-inflammatory action in an erythrocyte membrane stabilization model. The wound dressings obtained here showed adequate physical properties. The fabrication process did not affect the anti-inflammatory capacity. Further tests are needed to ensure the biocompatibility and to assess other biological activities of the therapeutic agents.

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