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聚乙二醇化氧化石墨烯与铜纳米颗粒对……的协同抗真菌研究

Synergistic Antifungal Study of PEGylated Graphene Oxides and Copper Nanoparticles against .

作者信息

Cheong Yuen-Ki, Arce Mariana P, Benito Alejandro, Chen Daijie, Luengo Crisóstomo Noemi, Kerai Laxmi V, Rodríguez Guillermo, Valverde José L, Vadalia Mansukhlal, Cerpa-Naranjo Arisbel, Ren Guogang

机构信息

School of Engineering and Computer Sciences, University of Hertfordshire, College Lane, Hatfield AL10 9AB, UK.

School of Architecture, Engineering and Design, European University of Madrid, C: Tajo s/n. Villaviciosa de Odón, 28670 Madrid, Spain.

出版信息

Nanomaterials (Basel). 2020 Apr 25;10(5):819. doi: 10.3390/nano10050819.

Abstract

The coupling reactions of polyethylene glycol (PEG) with two different nano-carbonaceous materials, graphene oxide (GO) and expanded graphene oxide (EGO), were achieved by amide bond formations. These reactions yielded PEGylated graphene oxides, GO-PEG and EGO-PEG. Whilst presence of the newly formed amide links (NH-CO) were confirmed by FTIR stretches observed at 1732 cm and 1712 cm, the associated Raman D- and G-bands resonated at 1311/1318 cm and 1584/1595 cm had shown the carbonaceous structures in both PEGylated products remain unchanged. Whilst SEM images revealed the nano-sheet structures in all the GO derivatives (GO/EGO and GO-PEG/EGO-PEG), TEM images clearly showed the nano-structures of both GO-PEG and EGO-PEG had undergone significant morphological changes from their starting materials after the PEGylated processes. The successful PEGylations were also indicated by the change of pH values measured in the starting GO/EGO (pH 2.6-3.3) and the PEGylated GO-PEG/EGO-PEG (pH 6.6-6.9) products. Initial antifungal activities of selective metallic nanomaterials (ZnO and Cu) and the four GO derivatives were screened against using the in vitro cut-well method. Whilst the haemocytometer count indicated GO-PEG and copper nanoparticles (CuNPs) exhibited the best antifungal effects, the corresponding SEM images showed had, respectively, undergone extensive shrinkage and porosity deformations. Synergistic antifungal effects all GO derivatives in various ratio of CuNPs combinations were determined by assessing viabilities using broth dilution assays. The best synergistic effects were observed when a 30:70 ratio of GO/GO-PEG combined with CuNPs, where MIC 185-225 μm/mL were recorded. Moreover, the decreased antifungal activities observed in EGO and EGO-PEG may be explained by their poor colloidal stability with increasing nanoparticle concentrations.

摘要

通过酰胺键的形成实现了聚乙二醇(PEG)与两种不同的纳米碳材料氧化石墨烯(GO)和膨胀氧化石墨烯(EGO)的偶联反应。这些反应生成了聚乙二醇化氧化石墨烯,即GO-PEG和EGO-PEG。虽然在1732 cm和1712 cm处观察到的FTIR拉伸证实了新形成的酰胺键(NH-CO)的存在,但在1311/1318 cm和1584/1595 cm处共振的相关拉曼D带和G带表明,两种聚乙二醇化产物中的碳质结构保持不变。扫描电子显微镜(SEM)图像显示了所有GO衍生物(GO/EGO和GO-PEG/EGO-PEG)中的纳米片结构,而透射电子显微镜(TEM)图像清楚地表明,在聚乙二醇化过程后,GO-PEG和EGO-PEG的纳米结构与其起始材料相比都发生了显著的形态变化。起始的GO/EGO(pH 2.6 - 3.3)和聚乙二醇化的GO-PEG/EGO-PEG(pH 6.6 - 6.9)产物测量的pH值变化也表明聚乙二醇化成功。使用体外切孔法筛选了选择性金属纳米材料(ZnO和Cu)和四种GO衍生物的初始抗真菌活性。虽然血细胞计数器计数表明GO-PEG和铜纳米颗粒(CuNPs)表现出最佳的抗真菌效果,但相应的SEM图像显示它们分别经历了广泛的收缩和孔隙变形。通过使用肉汤稀释试验评估存活率,确定了各种比例CuNPs组合中所有GO衍生物的协同抗真菌效果。当GO/GO-PEG与CuNPs的比例为30:70时观察到最佳协同效果,记录的最低抑菌浓度(MIC)为185 - 225μm/mL。此外,在EGO和EGO-PEG中观察到的抗真菌活性降低可能是由于随着纳米颗粒浓度增加它们的胶体稳定性较差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1606/7281513/36194c4ba8eb/nanomaterials-10-00819-g001.jpg

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