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Review
. 2023 Nov 29;24(8):246.
doi: 10.1208/s12249-023-02702-9.

State-of-the-Art Review of Advanced Electrospun Nanofiber Composites for Enhanced Wound Healing

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Review

State-of-the-Art Review of Advanced Electrospun Nanofiber Composites for Enhanced Wound Healing

Eman Abdelhakeem et al. AAPS PharmSciTech. .

Abstract

Wound healing is a complex biological process with four main phases: hemostasis, inflammation, proliferation, and remodeling. Current treatments such as cotton and gauze may delay the wound healing process which gives a demand for more innovative treatments. Nanofibers are nanoparticles that resemble the extracellular matrix of the skin and have a large specific surface area, high porosity, good mechanical properties, controllable morphology, and size. Nanofibers are generated by electrospinning method that utilizes high electric force. Electrospinning device composed of high voltage power source, syringe that contains polymer solution, needle, and collector to collect nanofibers. Many polymers can be used in nanofiber that can be from natural or from synthetic origin. As such, electrospun nanofibers are potential scaffolds for wound healing applications. This review discusses the advanced electrospun nanofiber morphologies used in wound healing that is prepared by modified electrospinning techniques.

Keywords: coaxial electrospinning; core–shell nanofiber; emulsion electrospinning; janus nanofiber; layer-by-layer; multi-layer nanofiber; side-by-side electrospinning; wound healing.

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References

    1. Jiang T, Li Q, Qiu J, Chen J, Du S, Xu X, et al. Nanobiotechnology: applications in chronic wound healing. Int J Nanomedicine. 2022;17:3125–45. https://doi.org/10.2147/IJN.S372211 . - DOI - PubMed - PMC
    1. Mssillou I, Bakour M, Slighoua M, Laaroussi H, Saghrouchni H, Ez-Zahra Amrati F, et al. Investigation on wound healing effect of Mediterranean medicinal plants and some related phenolic compounds: a review. J Ethnopharmacol. 2022;298: 115663. https://doi.org/10.1016/j.jep.2022.115663 . - DOI - PubMed
    1. Naderi N, Karponis D, Mosahebi A, Seifalian AM. Nanoparticles in wound healing; from hope to promise, from promise to routine. Front Biosci (Landmark Ed. 2018;23:1038–59. https://doi.org/10.2741/4632 .
    1. Sideek SA, El-nassan HB, Fares AR, Elmeshad AN. Different curcumin-loaded delivery systems for wound healing applications : a comprehensive review. 2023;1–21.
    1. Kharat Z, Amiri Goushki M, Sarvian N, Asad S, Dehghan MM, Kabiri M. Chitosan/PEO nanofibers containing Calendula officinalis extract: preparation, characterization, in vitro and in vivo evaluation for wound healing applications. Int J Pharm. 2021;609: 121132. https://doi.org/10.1016/j.ijpharm.2021.121132 . - DOI - PubMed

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