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合成与表征金属取代钴铁氧体 [M Co FeO;(M = Zn、Cu 和 Mn;x = 0 和 0.5)] 纳米粒子作为抗菌剂和用于生物样品中阿那格雷测定的传感器。

Synthesis and characterization of metals-substituted cobalt ferrite [M Co FeO; (M = Zn, Cu and Mn; x = 0 and 0.5)] nanoparticles as antimicrobial agents and sensors for Anagrelide determination in biological samples.

机构信息

Materials Science Lab., Radiation Physics Department, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority, Cairo, Egypt.

Drug Microbiology Lab., Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Atomic Energy Authority, Cairo, Egypt.

出版信息

Mater Sci Eng C Mater Biol Appl. 2018 Nov 1;92:644-656. doi: 10.1016/j.msec.2018.07.007. Epub 2018 Jul 7.

Abstract

Nanocrystalline spinel ferrite nanoparticles [MCoFeO;(M = Zn,Cu,Mn;x = 0 and 0.5)] like: Cobalt ferrite (CFO), Zinc Cobalt ferrite (ZCFO), Copper Cobalt ferrite (CCFO), and Manganese Cobalt ferrite (MCFO) modified carbon paste electrodes (CPE) were synthesized via sol-gel technique utilizing citric acid and ethylene glycol as a polymerization agent. The synthesized ferrite NPs were used as bi-functional smart biosensor, not only used to determine the drug Anagrelide-HCl (ANDH) in urine and serum samples, but also possesses antimicrobial potential against some pathogenic microbes, founded in the biological samples. The synthesized ferrite NPs were confirmed by XRD, FTIR spectroscopy, SEM, EDX, and elemental mapping images. Antimicrobial activities of ferrite NPs against selected urinary tract infected microbes were investigated. From XRD data and FTIR spectroscopy it is found that the average crystallite size is lies in the range 12.86 to 33.92 ± 1.5 nm, also the bond lengths R and R increase from 1.8986 to 1.9145 Å and from 2.0434 to 2.0606 Å respectively and Debye temperature θ lies in the range of 681.52-708.87 K. Our study describes the improvement of a screen-printed sensor, modified with ferrite NPs materials for rapid, sensitive and cost-effective quantification of ANDH present in the real samples such as blood serum samples, urine and in the pharmaceutical formulations. The results obtained postulate a linear regression between the ANDH charge density of peak current and its concentration in the range from (0.64-8.18 μg/ml) with DL 0.31 μg/ml and QL 0.94 μg/ml. Antimicrobial results indicated that ZCFO NPs were a novel antibacterial agent against Klebsiella pneumoniae (28.0 mm ZOI), and multidrug-resistant bacteria Enterococcus faecalis (27.0 mm ZOI). Additionally, ZCFO NPs were active against Candida albicans (18.0 mm ZOI) seems to be a smart antifungal agent. Therefore, ZCFO NPs can be used as applicant resources for industrial, medical, and biological applications.

摘要

纳米晶尖晶石铁氧体纳米粒子 [MCoFeO;(M=Zn、Cu、Mn;x=0 和 0.5)],如:钴铁氧体 (CFO)、锌钴铁氧体 (ZCFO)、铜钴铁氧体 (CCFO) 和锰钴铁氧体 (MCFO) 修饰碳糊电极 (CPE) 是通过溶胶-凝胶技术合成的,使用柠檬酸和乙二醇作为聚合剂。合成的铁氧体 NPs 被用作双功能智能生物传感器,不仅用于测定尿液和血清样品中的药物盐酸安格来林 (ANDH),而且还具有针对一些在生物样品中发现的致病微生物的抗菌潜力。通过 XRD、FTIR 光谱、SEM、EDX 和元素映射图像证实了合成的铁氧体 NPs 的存在。研究了铁氧体 NPs 对选定的尿路感染微生物的抗菌活性。从 XRD 数据和 FTIR 光谱可以发现,平均晶粒尺寸在 12.86 到 33.92 ± 1.5 nm 范围内,键长 R 和 R 分别从 1.8986 增加到 1.9145 Å 和从 2.0434 增加到 2.0606 Å,德拜温度θ 在 681.52-708.87 K 范围内。我们的研究描述了改进的丝网印刷传感器,用铁氧体 NPs 材料修饰,用于快速、灵敏和经济高效地定量分析实际样品(如血清样品、尿液和药物制剂)中的 ANDH。所得结果表明,在(0.64-8.18μg/ml)范围内,ANDH 电荷量与浓度之间存在线性回归,检出限为 0.31μg/ml,定量限为 0.94μg/ml。抗菌结果表明,ZCFO NPs 是一种针对肺炎克雷伯菌(28.0 mm ZOI)和多药耐药菌粪肠球菌(27.0 mm ZOI)的新型抗菌剂。此外,ZCFO NPs 对白色念珠菌(18.0 mm ZOI)有效,似乎是一种智能抗真菌剂。因此,ZCFO NPs 可作为工业、医疗和生物应用的候选资源。

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