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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Synthesis and characterization of Cu/Ag nanoparticle loaded mullite nanocomposite system: A potential candidate for antimicrobial and therapeutic applications
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Synthesis and characterization of Cu/Ag nanoparticle loaded mullite nanocomposite system: A potential candidate for antimicrobial and therapeutic applications

机译:负载铜/银纳米颗粒的莫来石纳米复合材料系统的合成与表征:抗菌和治疗应用的潜在候选者

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摘要

Background Microbial resistance to antibiotics has triggered the development of nanoscale materials as an alternative strategy. To stabilize these particles an inert support is needed. Method Porous nanomullite developed by sol-gel route is loaded with copper and silver nanoparticle by simple adsorption method. These nanocomposites are characterized using XRD, FTIR, TEM, SEM, EDAX and UV-visible spectrophotometer. Antibacterial activity of these nanocomposites against Gram positive and Gram negative bacteria are performed by bactericidal kinetics, flow cytometry and MTT assay. The underlying mechanisms behind the antimicrobial property and cell death are also investigated by EPR spectroscopy, intracellular ROS measurement and β-galactosidase assay. The cytocompatibility of the nanocomposites is investigated by cell viability (MTT), proliferation (Alamar blue) and wound healing assay of mammalian fibroblast cell line. Results Nanocomposites show a fairly uniform distribution of metal nanoparticle within mullite matrix. They show excellent antibacterial activity. Metal ionsanoparticle is found to be released from the materials (CM and SM). Treated cells manifested high intracellular oxidative stress and β-galactosidase activity in the growth medium. The effect of nanocomposites on mammalian cell line depends on exposure time and concentration. The scratch assay shows normal cell migration with respect to control. Conclusion The fabricated nanoparticles possess diverse antimicrobial mechanism and exhibit good cytocompatibility along with wound healing characteristics in mouse fibroblast cell line (L929). General significance The newly synthesized materials are promising candidates for the development of antimicrobial ceramic coatings for biomedical devices and therapeutic applications.
机译:背景技术微生物对抗生素的耐药性已触发了纳米材料的发展,并将其作为一种替代策略。为了稳定这些颗粒,需要惰性载体。方法通过溶胶-凝胶法制备的多孔纳米莫来石通过简单的吸附方法负载了铜和银纳米颗粒。使用XRD,FTIR,TEM,SEM,EDAX和紫外可见分光光度计对这些纳米复合材料进行表征。这些纳米复合材料对革兰氏阳性和革兰氏阴性细菌的抗菌活性是通过杀菌动力学,流式细胞术和MTT测定法进行的。还通过EPR光谱,细胞内ROS测量和β-半乳糖苷酶测定法研究了抗菌性能和细胞死亡背后的潜在机制。纳米复合材料的细胞相容性是通过哺乳动物成纤维细胞系的细胞生存力(MTT),增殖(Alamar蓝)和伤口愈合试验研究的。结果纳米复合材料显示莫来石基质中金属纳米颗粒的分布相当均匀。它们具有出色的抗菌活性。发现金属离子/纳米粒子从材料(CM和SM)释放。处理过的细胞在生长培养基中表现出高的细胞内氧化应激和β-半乳糖苷酶活性。纳米复合材料对哺乳动物细胞系的作用取决于暴露时间和浓度。刮擦试验显示相对于对照而言正常的细胞迁移。结论所制备的纳米粒具有多种抗菌机制,在小鼠成纤维细胞系(L929)中具有良好的细胞相容性以及伤口愈合特性。一般意义新合成的材料是开发用于生物医学设备和治疗应用的抗菌陶瓷涂层的有希望的候选者。

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