Integrating cobalt aluminate nanoparticles with functionalized carbon nanotubes for enhanced detection of oxicam-type piroxicam in pharmacological and biological real samples

IF 6.3 2区 材料科学 Q2 CHEMISTRY, PHYSICAL
Gunasekar Vijay , Tse-Wei Chen , Cheng-Di Dong , Sivaprakash Sengodan , Jaysan Yu , Shen-Ming Chen
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引用次数: 0

Abstract

Topical non-steroidal anti-inflammatory drugs (NSAID) like Piroxicam (PXM) from the oxicam family, which is commonly used to treat rheumatoid arthritis considered a strong painkiller. It exhibits deleterious effects for kidney failure and gastrointestinal disorders while consuming an over intake of PXM. Thus, it is necessary to monitor PXM in the pharmacological samples frequently. The current study was performed to evaluate the determination of PXM by rapid analysis as an electrochemical sensor. This technique involves the use of a glassy carbon electrode (GCE) enhanced with cobalt aluminate (CAO) nanoparticles prepared by the sol-gel method and interconnected with surface functionalization carbon nanotube (f-CNT) via ultrasonication as a nanocomposite to leverage signal amplification strategies. As a result, the current signal significantly increased the electron-rich centers on the electrode surface, as investigated by electrochemical active surface area (EASA). The voltammetry analysis generates an enhanced electrochemical oxidation signal for PXM detection. The CAO@f-CNT/GCE sensor was capable of exhibiting a wide linear range (0.01 – 188.5 μM) with high sensitivities by different pulse voltammetry (DPV) methods. The lower limit of detection is calculated to be (4 nM), which is significantly lower than that achieved in previous literature. The proposed sensor displayed the strong synergistic interactions between CAO and f-CNT providing a more active site of PXM detection. f-CNT increases the electron transfer and large surface area due to the surface functional groups which contribute to improved electrical conductivity. This combined effect leads to excellent selectivity, reproducibility, repeatability, and stability. The feasibility of using this modified CAO@f-CNT/GCE for PXM determination for pharmacological and biological as real samples has also been validated with acceptable recoveries. Hence, the CAO@f-CNT nanocomposite opens a potential candidate for NSAID determination to prevent human health.

Abstract Image

将铝酸钴纳米颗粒与功能化碳纳米管结合,增强对奥昔康型吡罗昔康在药理学和生物学真实样品中的检测
局部非甾体类抗炎药(NSAID),如奥昔康家族的吡罗西康(PXM),通常用于治疗类风湿性关节炎,被认为是一种强效止痛药。当过量摄入PXM时,它会对肾衰竭和胃肠道疾病产生有害影响。因此,有必要经常监测药理学样品中的PXM。本研究对快速分析作为电化学传感器测定PXM进行了评价。该技术涉及使用溶胶-凝胶法制备的铝酸钴纳米颗粒增强的玻碳电极(GCE),并通过超声与表面功能化碳纳米管(f-CNT)作为纳米复合材料连接,以利用信号放大策略。结果,通过电化学活性表面积(EASA)研究,电流信号显著增加了电极表面的富电子中心。伏安法分析产生一个增强的电化学氧化信号,用于PXM检测。通过不同的脉冲伏安(DPV)方法,CAO@f-CNT/GCE传感器具有宽线性范围(0.01 ~ 188.5 μM)和高灵敏度。计算出的检测下限为(4 nM),明显低于以往文献的检测下限。所提出的传感器显示了CAO和f-CNT之间的强协同相互作用,提供了一个更活跃的PXM检测位点。由于表面官能团有助于提高电导率,f-CNT增加了电子转移和大表面积。这种综合效应导致了极好的选择性、再现性、可重复性和稳定性。该改进CAO@f-CNT/GCE用于药理学和生物学样品的PXM测定的可行性也得到了可接受的回收率的验证。因此,CAO@f-CNT纳米复合材料开启了测定非甾体抗炎药预防人类健康的潜在候选物。
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来源期刊
Journal of Alloys and Compounds
Journal of Alloys and Compounds 工程技术-材料科学:综合
CiteScore
11.10
自引率
14.50%
发文量
5146
审稿时长
67 days
期刊介绍: The Journal of Alloys and Compounds is intended to serve as an international medium for the publication of work on solid materials comprising compounds as well as alloys. Its great strength lies in the diversity of discipline which it encompasses, drawing together results from materials science, solid-state chemistry and physics.
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