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首页> 外文期刊>Materials science & engineering >Single step production of high-purity copper oxide-titanium dioxide nanocomposites and their effective antibacterial and anti-biofilm activity against drug-resistant bacteria
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Single step production of high-purity copper oxide-titanium dioxide nanocomposites and their effective antibacterial and anti-biofilm activity against drug-resistant bacteria

机译:高纯度铜氧化钛 - 二氧化钛纳米复合材料的单步生产及其针对耐药细菌的有效抗菌和抗生物膜活性

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摘要

In the present research work, copper oxide-titanium dioxide nanocomposites were synthesized for the first time using advanced pulsed laser ablation in liquid (PLAL) technique for disinfection of drug-resistant pathogenic waterborne biofilm-producing bacterial strains. For this, a series of copper oxide-titanium dioxide nanocomposites were synthesized by varying the composition of copper oxide (5%, 10%, and 20%) with titanium dioxide. The pure titanium dioxide and copper oxide-titanium dioxide nanocomposites were characterized by advanced instrumental techniques. XRD, TEM, FE-SEM, EDX, elemental mapping and XPS analysis results consistently revealed the successful formation of copper oxide-titanium dioxide nanocomposites using PLAL technique. The antibacterial and antibiofilm activities of pure titanium dioxide and copper oxide-titanium dioxide nanocomposites were investigated against biofilm-producing strains of Methicillin-resistant Staphylococcus aureus and Pseudomonas aeruginosa by various methods. Our results revealed that the PLAL synthesized copper oxide-titanium dioxide nanocomposites showed enhanced anti-biofilm and antibacterial activity compared to pure titanium dioxide in a dose-dependent manner against targeted pathogens. Furthermore, the effects of pure titanium dioxide and copper oxide-titanium dioxide nanocomposites on bacterial morphology, biofilm formation, aggregation and their colonization by targeted pathogens were also examined using scanning electron microscopy. Microscopic images clearly showed that the cell envelope of almost all the cells were rumples, rough, had irregularities and abnormal appearance with the major damage being characterized by the formation of "pits". Many depressions and indentations were also seen in their cell envelope and the original shape of Pseudomonas aeruginosa cells changed from normal rod to swollen, large and elongated which indicates the loss of membrane integrity and damage of cell wall and membrane. The findings suggested that PLAL synthesized copper oxide-titanium dioxide nanocomposites have good potential for removal of biofilm or killing of pathogenic bacteria in water distribution network and for wastewater treatment, hospital and environmental applications. In addition, cytotoxic activity of pure TiO2 and PLAL synthesized copper oxide-titanium dioxide nanocomposites against normal and healthy cells (HEK-293) and cancerous cells (HCT-116) were also evaluated by MTT assay. The MTT assay results showed no cytotoxic effects on HEK-293 cells, which suggest TiO2 and PLAL synthesized copper oxide-titanium dioxide nanocomposites are non-toxic to the normal cells.
机译:在本研究工作中,首次使用液体(PLAL)技术中首次合成氧化铜二氧化钛纳米复合材料,用于消毒耐药致抗药性致毒性水性生物膜的细菌菌株。为此,通过改变二氧化钛的氧化铜(5%,10%和20%)的组合物来合成一系列氧化铜二氧化钛纳米复合材料。通过先进的仪器技术,表征纯二氧化钛和二氧化钛 - 二氧化钛纳米复合材料。 XRD,TEM,FE-SEM,EDX,元素映射和XPS分析结果始终如一地揭示了使用PLAL技术成功形成氧化铜二氧化钛纳米复合材料。通过各种方法研究了纯二氧化钛和氧化铜二氧化钛和氧化铜二氧化钛纳米复合材料的抗菌和抗氧化钛 - 二氧化钛纳米复合材料。通过各种方法对生物膜产生甲氧西林耐金黄色葡萄球菌和假单胞菌铜绿假单胞菌的菌株。我们的结果表明,与纯二氧化钛以靶向病原体的剂量依赖性方式相比,PLA1合成的氧化钛 - 二氧化钛纳米复合材料显示出增强的抗生物膜和抗菌活性。此外,还使用扫描电子显微镜检查了纯二氧化钛和二氧化钛二氧化钛纳米复合材料对细菌形态学,生物膜形成,聚集,聚集的影响及其定植。显微镜图像清楚地表明,几乎所有细胞的细胞包络是纹状体,粗糙,具有不规则性和异常外观,具有“凹坑”的形成特征。在其细胞包络中也观察到许多凹陷和凹痕,并且铜绿假单胞菌细胞的原始形状从正常杆发生变为肿胀,大而细长,表示膜完整性和细胞壁损伤的损失和膜的损伤。研究结果表明,PLA1合成的氧化铜二氧化钛纳米复合材料具有良好的去除生物膜或杀死分流网络中的病原细菌的潜力,以及用于废水处理,医院和环境应用。此外,还通过MTT测定评估纯TiO 2和PLA1合成的纯铜氧化钛氧化物 - 二氧化铜氧化物 - 氧化钛纳米复合材料和癌细胞(HCT-116)。 MTT测定结果显示出对HEK-293细胞的细胞毒性作用,其提示TiO 2和PLAL合成的氧化钛纳米复合材料对正常细胞无毒。

著录项

  • 来源
    《Materials science & engineering》 |2020年第8期|110992.1-110992.16|共16页
  • 作者单位

    King Fahd Univ Petr & Minerals Ctr Res Excellence Desalinat & Water Treatment Dhahran 31261 Saudi Arabia|King Fahd Univ Petr & Minerals Ctr Environm & Water Dhahran 31261 Saudi Arabia;

    Imam Abdulrahman Bin Faisal Univ Inst Res & Med Consultat IRMC Epidem Dis Res Dept POB 1982 Dammam 31441 Saudi Arabia;

    King Fahd Univ Petr & Minerals Dept Phys Dhahran 31261 Saudi Arabia|King Fahd Univ Petr & Minerals Ctr Res Excellence Nanotechnol Dhahran 31261 Saudi Arabia;

    Imam Abdulrahman Bin Faisal Univ Inst Res & Med Consultat IRMC Dept Biophys POB 1982 Dammam 31441 Saudi Arabia;

    Imam Abdulrahman Bin Faisal Univ Inst Res & Med Consultat Dept Stem Cell Biol IRMC Dammam 31441 Saudi Arabia;

    King Fahd Univ Petr & Minerals Ctr Res Excellence Desalinat & Water Treatment Dhahran 31261 Saudi Arabia|King Fahd Univ Petr & Minerals Ctr Environm & Water Dhahran 31261 Saudi Arabia|King Fahd Univ Petr & Minerals Dept Mech Engn Dhahran 31261 Saudi Arabia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanocomposites; Metal oxides; Morphological analysis; Antibacterial activity; Anti-biofilm activity; Water-borne pathogens;

    机译:纳米复合材料;金属氧化物;形态分析;抗菌活性;抗生物膜活性;水性病原体;

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