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Fabrication of Hybrid Nanofibers from Biopolymers and Poly (Vinyl Alcohol)/Poly (ε-Caprolactone) for Wound Dressing Applications

期刊

POLYMERS
卷 13, 期 13, 页码 -

出版社

MDPI
DOI: 10.3390/polym13132104

关键词

wound dressing; biopolymers; poly (vinyl alcohol); poly (epsilon-caprolactone); electrospinning; nanofibers

资金

  1. Govan Mbeki Research and Development Council
  2. University of Fort Hare
  3. Medical Research Council
  4. National Research Foundation, South Africa

向作者/读者索取更多资源

The management of chronic wounds is challenging due to factors such as malnutrition, diseases, and bacterial infection. Wound dressings formulated from a combination of biopolymers and synthetic polymers show promising properties, especially when prepared using electrospinning technique.
The management of chronic wounds is challenging. The factors that impede wound healing include malnutrition, diseases (such as diabetes, cancer), and bacterial infection. Most of the presently utilized wound dressing materials suffer from severe limitations, including poor antibacterial and mechanical properties. Wound dressings formulated from the combination of biopolymers and synthetic polymers (i.e., poly (vinyl alcohol) or poly (epsilon-caprolactone) display interesting properties, including good biocompatibility, improved biodegradation, good mechanical properties and antimicrobial effects, promote tissue regeneration, etc. Formulation of these wound dressings via electrospinning technique is cost-effective, useful for uniform and continuous nanofibers with controllable pore structure, high porosity, excellent swelling capacity, good gaseous exchange, excellent cellular adhesion, and show a good capability to provide moisture and warmth environment for the accelerated wound healing process. Based on the above-mentioned outstanding properties of nanofibers and the unique properties of hybrid wound dressings prepared from poly (vinyl alcohol) and poly (epsilon-caprolactone), this review reports the in vitro and in vivo outcomes of the reported hybrid nanofibers.

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