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首页> 外文期刊>Macromolecular Research >Fabrication and characterization of electrospun curcumin-loaded polycaprolactone-polyethylene glycol nanofibers for enhanced wound healing
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Fabrication and characterization of electrospun curcumin-loaded polycaprolactone-polyethylene glycol nanofibers for enhanced wound healing

机译:电纺姜黄素负载聚己内酯-聚乙二醇纳米纤维的制备和表征,可增强伤口愈合

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This study focused on the development of biomedicated electrospun nanofiber mats for preventing wound infections and accelerating wound healing. Polycaprolactone (PCL) nanofibers-loaded curcumin (Cur) and polyethylene glycol (PEG) were generated by an electrospinning technique. The change in surface morphology of the electrospun nanofibers to porous surface after immersion was obtained by field emission scanning electron microscopy (FE-SEM). The biological characteristics of the Cur-loaded PCL-PEG nanofiber mats such as cell viability, cell attachment, anti-inflammatory and antibacterial properties, and in vivo wound healing capability were examined. The blending of PEG with PCL resulted in the formation of pores on the nanofibers after immersion, which supports cell viability and proliferation. The mouse myoblast cell line C2C12 showed about 80% viability on the Cur-loaded PCL-PEG nanofiber mat. SEM images showed that the cells could extremely attach and spread out over the surface of the Cur-loaded PCL-PEG nanofiber mat. The inclusion of 0.5 wt% Cur (with respect to PCL) in both the PCL and PCL-PEG blended nanofiber mats inhibited excessive production of nitric oxide (NO) in RAW264.7 mouse macrophages and exhibited good antibacterial activity against Staphylococcus aureus (S. aureus). In vivo wound healing showed that the treatment using Cur-loaded PCL-PEG nanofiber mat significantly increased the rate of wound closure (99%) on day 10 as compared that using PCL nanofiber mat (59%). These results suggest that the PCL nanofiber matrix containing Cur and PEG can facilitate wound healing with cell proliferation and anti-inflammatory properties.
机译:这项研究的重点是用于预防伤口感染和加速伤口愈合的生物医用电纺纳米纤维垫。通过静电纺丝技术生成了聚己内酯(PCL)纳米纤维负载姜黄素(Cur)和聚乙二醇(PEG)。通过场发射扫描电子显微镜(FE-SEM)获得浸没后电纺纳米纤维到多孔表面的表面形态变化。检查了载有Cur的PCL-PEG纳米纤维垫的生物学特性,例如细胞活力,细胞附着,抗炎和抗菌性能以及体内伤口愈合能力。 PEG与PCL的共混导致浸泡后纳米纤维上形成孔,从而支持细胞活力和增殖。小鼠成肌细胞系C2C12在装有Cur的PCL-PEG纳米纤维垫上显示出约80%的活力。扫描电镜图像显示,细胞可以在附着有Cur的PCL-PEG纳米纤维垫的表面上极度附着并扩散。在PCL和PCL-PEG混合的纳米纤维垫中均包含0.5 wt%的Cur(相对于PCL)抑制了RAW264.7小鼠巨噬细胞中一氧化氮(NO)的过量产生,并且对金黄色葡萄球菌(S.金黄色)。体内伤口愈合显示,与使用PCL纳米纤维垫(59%)相比,使用Cur加载的PCL-PEG纳米纤维垫的治疗在第10天显着提高了伤口闭合率(99%)。这些结果表明,含有Cur和PEG的PCL纳米纤维基质可以促进伤口愈合,并具有细胞增殖和抗炎特性。

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