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首页> 外文期刊>Journal of Electronic Materials >Sensitive Determination of 6-Thioguanine Using Caffeic Acid-functionalized Fe3O4 Nanoparticles as an Electrochemical Sensor
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Sensitive Determination of 6-Thioguanine Using Caffeic Acid-functionalized Fe3O4 Nanoparticles as an Electrochemical Sensor

机译:用咖啡酸官能化Fe3O4纳米粒子用咖啡酸官能化Fe304纳米粒子的敏感测定电化学传感器

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The study demonstrates the potential application of caffeic acid-functionalized magnetite nanoparticles (CA-Fe3O4 NPs) as an effective electrode modifying material for the electrochemical oxidation of the 6-thioguanine (6-TG) drug. The functionalized Fe3O4 NPs were prepared using simple wet-chemical methodology where the used caffeic acid acted simultaneously as growth controlling and functionalizing agent. The study discusses the influence of an effective functionalization on the signal sensitivity observed for the electro-oxidation of 6-TG over CA-Fe3O4 NPs in comparison to a glassy carbon electrode modified with bare and nicotinic acid (NA)-functionalized Fe3O4 NPs. The experiment results provided sufficient evidence to support the importance of favorable functionality to achieve higher signal sensitivity for the electro-oxidation of 6-TG. The presence of favorable interactions between the active functional moieties of caffeic acid and 6-TG synergized with the greater surface area of magnetic NPs produces a stable electro-oxidation signal within the working range of 0.01-0.23 mu M with sensitive up to 0.001 mu M. Additionally, the sensor showed the strong anti-interference potential against the common co-existing drug molecules such as benzoic acid, acetaminophen, epinephrine, norepinephrine, glucose, ascorbic acid and l-cysteine. In addition, the successful quantification of 6-TG from the commercial tablets obtained from local pharmacy further signified the practical capability of the discussed sensor.
机译:该研究表明,咖啡酸官能化磁铁矿纳米颗粒(CA-Fe3O4 NPS)作为用于6-Thioguanine(6-Tg)药物的电化学氧化的有效电极改性材料的潜在施用。使用简单的湿化学方法制备官能化Fe3O4 NP,其中使用的咖啡酸同时用作生长控制和官能化剂。该研究讨论了有效功能化对由裸露和烟酸(NA) - 官能化Fe3O4 NPS改性的玻璃碳电极相比,对Ca-Fe 3 O 4 NP的电氧化的信号灵敏度对观察到的信号敏感性的影响。实验结果提供了足够的证据,以支持有利功能的重要性,以实现6-TG的电氧化的更高信号敏感性。在磁性NPS更大的磁NPS的咖啡酸和6-Tg之间的有利相互作用的存在在0.01-0.23μm的工作范围内产生稳定的电氧化信号,敏感至0.001μm 。另外,该传感器显示了对普通共存药物分子如苯甲酸,乙酰氨基酚,肾上腺素,去甲肾上腺素,葡萄糖,抗坏血酸和L-半胱氨酸的强烈抗干扰电位。此外,从局部药房获得的商业片剂的成功定量6-Tg进一步意味着讨论的传感器的实际能力。

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