Mirhaj Marjan, Salehi Saeideh, Tavakoli Mohamadreza, Varshosaz Jaleh, Labbaf Sheyda, Abadi Shaghayegh Amini Mosleh, Haghighi Vida
Department of Materials Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran.
Department of Materials Engineering, Islamic Azad University, Najaf Abad, Iran.
Biomater Adv. 2022 Oct;141:213082. doi: 10.1016/j.bioadv.2022.213082. Epub 2022 Aug 18.
Platelet-rich fibrin (PRF) is extracted from the blood without biochemical interference and, also, with the ability of a long-term release of growth factors that can stimulate tissue repair and regerenation. Here, leucocyte- and platelet-rich fibrin (L-PRF) and advanced platelet-rich fibrin (A-PRF) were extracted and utilized for the creation of nanofibers containing polyacrylamide (PAAm), PAAm / L-PRF and PAAm / A-PRP through electrospinning processing technique. The effect of the type of PRF on the physical, mechanical and biological properties of the resultant nanofiberous wound dressings are thoroughly evaluated. The results presented in the current study reveals that the fiber diameter is grealtly reduced through the utilization of L-PRF. In addition, mechanical property is also positively affected by L-PRF and the degradation rate is found to be higher compared to A-PRF group. The L929 cells proliferation and adhesion, angiogenesis potential and wound healing ability was significantly higher in PAAm/A-PRF nanofibers compared to pure PAAm and PAAm/L-PRF nanofibers owed to the release of vascular endothelial growth factor (VEGF) and platelet derived growth factor (PDGF). Overall, the utilization of L-PRF or A-PRF can improve the physical, mechanical and biological behavior of nanofiber making them an ideal candidate for wound dressings, with the emphasis on the skin tissue repair and regeneration applications.
富血小板纤维蛋白(PRF)是从血液中提取的,不受生化干扰,并且具有长期释放生长因子的能力,这些生长因子可以刺激组织修复和再生。在此,通过静电纺丝工艺提取了富含白细胞和血小板的纤维蛋白(L-PRF)和高级富血小板纤维蛋白(A-PRF),并将其用于制备含有聚丙烯酰胺(PAAm)、PAAm/L-PRF和PAAm/A-PRP的纳米纤维。全面评估了PRF类型对所得纳米纤维伤口敷料的物理、机械和生物学性能的影响。当前研究结果表明,通过使用L-PRF,纤维直径大大减小。此外,L-PRF对机械性能也有积极影响,并且发现其降解率比A-PRF组更高。与纯PAAm和PAAm/L-PRF纳米纤维相比,由于血管内皮生长因子(VEGF)和血小板衍生生长因子(PDGF)的释放,PAAm/A-PRF纳米纤维中的L929细胞增殖和粘附、血管生成潜力和伤口愈合能力显著更高。总体而言,L-PRF或A-PRF的使用可以改善纳米纤维的物理、机械和生物学性能,使其成为伤口敷料的理想候选材料,尤其适用于皮肤组织修复和再生应用。