Laylani Layla Abd-Al-Sattar Sadiq, Al-Dolaimy F, Altharawi Ali, Sulaman Ghasen M, Mustafa Mohammed Ahmed, Alkhafaji Adnan Taan, Alkhatami Ali G
Community Health Department, Kirkuk Technical Institute, Northern Technical University, Mosul, Iraq.
Community Health Department, Al-Zahraa University for Women, Karbala, Iraq.
Front Oncol. 2024 May 1;14:1321557. doi: 10.3389/fonc.2024.1321557. eCollection 2024.
Goserelin is an effective anticancer drug, but naturally causes several side effects. Hence the determination of this drug in biological samples, plays a key role in evaluating its effects and side effects. The current studies have concentrated on monitoring Goserelin using an easy and quick DNA biosensor for the first time. In this study, copper(II) oxide nanoparticles were created upon the surface of multiwalled carbon nanotubes (CuO/MWCNTs) as a conducting mediator. The modified pencil graphite electrode (ds-DNA/PA/CuO/MWCNTs/PGE) has been modified with the help of polyaniline (PA), ds-DNA, and CuO/MWCNTs nanocomposite. Additionally, the issue with the bio-electroanalytical guanine oxidation signal in relation to ds-DNA at the surface of PA/CuO/MWCNTs/PGE has been examined to determination Goserelin for the first time. It also, established a strong conductive condition to determination Goserelin in nanomolar concentration. Thus, Goserelin's determining, however, has a 0.21 nM detection limit and a 1.0 nM-110.0 µM linear dynamic range according to differential pulse voltammograms (DPV) of ds-DNA/PA/CuO/MWCNTs/PGE. Furthermore, the molecular docking investigation highlighted that Goserelin is able to bind ds-DNA preferentially and supported the findings of the experiments. The determining of Goserelin in real samples has been effectively accomplished in the last phase using ds-DNA/PA/CuO/MWCNTs/PGE.
戈舍瑞林是一种有效的抗癌药物,但会自然引发多种副作用。因此,在生物样品中测定这种药物,对于评估其疗效和副作用起着关键作用。目前的研究首次集中于使用简便快速的DNA生物传感器来监测戈舍瑞林。在本研究中,在多壁碳纳米管(CuO/MWCNTs)表面制备了氧化铜纳米颗粒作为导电介质。修饰后的铅笔石墨电极(ds-DNA/PA/CuO/MWCNTs/PGE)借助聚苯胺(PA)、双链DNA(ds-DNA)和CuO/MWCNTs纳米复合材料进行了修饰。此外,首次研究了PA/CuO/MWCNTs/PGE表面与ds-DNA相关的生物电分析鸟嘌呤氧化信号问题,以测定戈舍瑞林。它还为测定纳摩尔浓度的戈舍瑞林建立了良好的导电条件。因此,根据ds-DNA/PA/CuO/MWCNTs/PGE的差分脉冲伏安图(DPV),戈舍瑞林的测定具有0.21 nM的检测限和1.0 nM - 110.0 µM的线性动态范围。此外,分子对接研究表明戈舍瑞林能够优先结合ds-DNA,支持了实验结果。最后阶段使用ds-DNA/PA/CuO/MWCNTs/PGE有效地完成了实际样品中戈舍瑞林的测定。