Coaxial electrospun angiogenic nanofiber wound dressing containing advanced platelet rich-fibrin

(2022) Coaxial electrospun angiogenic nanofiber wound dressing containing advanced platelet rich-fibrin. International Journal of Biological Macromolecules. pp. 1605-1618. ISSN 0141-8130

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Abstract

Advanced platelet-rich fibrin (A-PRF) provides long-term release of growth factors that potentially accelerate wound healing. In this study, core-shell nanofibrous structure of polyvinyl alcohol (PVA) core and gelatin (Gel) shell containing A-PRF is fabricated through coaxial electrospinning method. PVA/(Gel/A-PRF) core-shell nanofibers had the highest porosity, specific surface area and hydrophilicity among all the studied nanofibers. PVA/(Gel/A-PRF) core-shell nanofibers with a tensile stress of 7.43 +/- 0.38 MPa and an elastic modulus of 102.05 +/- 9.36 MPa had higher mechanical properties than PVA/Gel/A-PRF and PVA/Gel blend nanofibers. PVA/(Gel/A-PRF) nanofibers had a 47.41 +/- 1.97 degradability over 7 days of immersion in PBS. The release of VEGF and PDGF-AB growth factors from PVA/(Gel/A-PRF) core-shell nanofibers and PVA/Gel/A-PRF blend nanofibers were evaluated. It was shown that L929 cell proliferation and adhesion on PVA/(Gel/A-PRF) core-shell nano -fibers were significantly higher than other samples. Also, chicken chorioallantoic membrane (CAM) assay revealed that the highest angiogenic potential among the studied samples related to PVA/(Gel/A-PRF) sample. In vivo studies on a rat model showed wound closure for PVA/(Gel/A-PRF) group was 97.83 +/- 2.03 after 11 days. Histopathological and immunohistochemical examinations approved the acceleration of wound healing by PVA/ (Gel/A-PRF) core-shell nanofiber dressing. The results strongly recommend the use of PVA/(Gel/A-PRF) core -shell nanofiber dressing for the repair of full-thickness wounds.

Item Type: Article
Keywords: Advanced -platelet rich fibrin Angiogenesis Coaxial electrospinning Nanofiber Wound dressing cross-linking gelatin growth release hydrogel scaffold plasma films Biochemistry & Molecular Biology Chemistry Polymer Science
Page Range: pp. 1605-1618
Journal or Publication Title: International Journal of Biological Macromolecules
Journal Index: ISI
Volume: 222
Identification Number: https://doi.org/10.1016/j.ijbiomac.2022.09.109
ISSN: 0141-8130
Depositing User: خانم ناهید ضیائی
URI: http://eprints.mui.ac.ir/id/eprint/24400

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