Fahimirad Shohreh, Satei Parastu, Ganji Ali, Abtahi Hamid
Molecular and Medicine Research Center, Arak University of Medical Sciences, Arak, Iran.
Department of Microbiology and Immunology, School of Medicine, Arak University of Medical Sciences, Arak, Iran.
J Biomater Sci Polym Ed. 2023 Feb;34(3):277-301. doi: 10.1080/09205063.2022.2116209. Epub 2022 Sep 5.
In this study, copper nanoparticles (CuNPs) were synthetized through green chemistry approach using flowers extract. The biosynthetized nanoparticles were characterized by FESEM, XRD, DLS and FTIR analysis. Subsequently, PCL nanofiber was fabricated as first supportive layer by electrospinning method. Afterward, PVA/ galls (QLG) extracts/biosynthetized CuNPs blending solution was electrospinned as second bioactive topical layer. The morphology, physicochemical properties and biological characteristics of the produced PCL, PCL/PVA, PCL/PVA/CuNPs, PCL/PVA/QLG and PCL/PVA/QLG/CuNPs were investigated. Eventually, wound healing effectiveness was examined. Histologic investigation was carried out for visualization of the healing wounds architecture in different treated groups. FESEM, XRD and DLS assays confirmed the successful synthesis of CuNPs in range of 40-70 nm and FTIR spectrum approve the presence of functional constituents of C. officinalis extract on synthesized CuNPs. The incorporation of CuNPs and QLG extract into PCL/PVA based nanofibers improved their biological capabilities and physicochemical properties. Furthermore, PCL/PVA/QLG/CuNPs illustrated significant wound healing potentials and excellent antibacterial function against at wounds infected with MRSA. Histological assay demonstrated complete wound healing and less inflammation on day 10th. These outcomes recommended the utilization of PCL/PVA/QLG/CuNPs as a novel promising wound dressings with considerable antibacterial features.
在本研究中,采用绿色化学方法,利用花朵提取物合成了铜纳米颗粒(CuNPs)。通过场发射扫描电子显微镜(FESEM)、X射线衍射(XRD)、动态光散射(DLS)和傅里叶变换红外光谱(FTIR)分析对生物合成的纳米颗粒进行了表征。随后,通过静电纺丝法制备了聚己内酯(PCL)纳米纤维作为第一支撑层。之后,将聚乙烯醇(PVA)/没食子(QLG)提取物/生物合成的CuNPs混合溶液静电纺丝作为第二生物活性表层。对制备的PCL、PCL/PVA、PCL/PVA/CuNPs、PCL/PVA/QLG和PCL/PVA/QLG/CuNPs的形态、物理化学性质和生物学特性进行了研究。最后,考察了伤口愈合效果。进行组织学研究以观察不同治疗组愈合伤口的结构。FESEM、XRD和DLS分析证实成功合成了粒径在40 - 70纳米范围内的CuNPs,FTIR光谱证实合成的CuNPs上存在药用菊花提取物的功能成分。将CuNPs和QLG提取物掺入基于PCL/PVA的纳米纤维中提高了它们的生物学性能和物理化学性质。此外,PCL/PVA/QLG/CuNPs显示出显著的伤口愈合潜力以及对耐甲氧西林金黄色葡萄球菌(MRSA)感染伤口的优异抗菌功能。组织学分析表明在第10天时伤口完全愈合且炎症较少。这些结果表明PCL/PVA/QLG/CuNPs作为一种具有相当抗菌特性的新型有前景的伤口敷料具有应用价值。