Koca Fatih Doğan, Demirezen Yilmaz Dilek, Ertas Onmaz Nurhan, Ocsoy Ismail
Erciyes University, Faculty of Veterinary Medicine, Department of Aquatic Animal and Diseases, 38039 Kayseri, Turkey.
Erciyes University, Faculty of Sciences, Department of Biology, 38039 Kayseri, Turkey.
Saudi J Biol Sci. 2020 Oct;27(10):2574-2579. doi: 10.1016/j.sjbs.2020.05.025. Epub 2020 May 19.
For the first time in this study, curcumin was utilized as an organic component reacting with Cu (II) ion (Cu) as an inorganic component for fabrication of curcumin based Cu hybrid nanostructure (Cu-hNs). We also systematically examined the catalytic effect towards guaiacol and antimicrobial activities of Cu-hNs towards fish pathogen bacteria. For the characterization of Cu-hNs, Scanning Electron Microscopy (SEM), Energy Dispersive X-ray spectroscopy (EDX) and Fourier transform infrared spectrometry (FT-IR) analysis were used. We claimed that hydroxyl group might react with Cu in phosphate solution (PO ) to form Cu-hNs. However, more uniform and spherical Cu-hNs were not seen owing to absence of more reactive functional groups like amine and carboxyl groups on structure of curcumin. In addition to our findings, synthesis of Cu-hNs were carried out in the various pH values to evaluate the effect of pHs on formation of Cu-hNs. The Cu-hNs exhibited remarkable catalytic activity throught the Fenton reaction in the presence of hydrogen peroxide (HO) and effective antimicrobial activities against Gram-positive/negative fish pathogen bacteria. In this study, cheap and efficient synthesis of nanoflowers (NFs) using plant extracts is proposed for biomedical applications rather than expensive molecules such as amino acids and DNA.
在本研究中,姜黄素首次被用作有机成分,与作为无机组分的铜(II)离子(Cu)反应,以制备基于姜黄素的铜杂化纳米结构(Cu-hNs)。我们还系统地研究了Cu-hNs对愈创木酚的催化作用以及对鱼类病原菌的抗菌活性。为了表征Cu-hNs,使用了扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)和傅里叶变换红外光谱(FT-IR)分析。我们认为羟基可能在磷酸盐溶液(PO)中与铜反应形成Cu-hNs。然而,由于姜黄素结构上缺乏胺基和羧基等更具反应性的官能团,未观察到更均匀、呈球形的Cu-hNs。除了我们的研究结果外,还在不同pH值下进行了Cu-hNs的合成,以评估pH值对Cu-hNs形成的影响。Cu-hNs在过氧化氢(HO)存在下通过芬顿反应表现出显著的催化活性,并对革兰氏阳性/阴性鱼类病原菌具有有效的抗菌活性。在本研究中,提出使用植物提取物廉价高效地合成纳米花(NFs)用于生物医学应用,而不是使用氨基酸和DNA等昂贵分子。