Key role of adsorption site abundance in the direct electrochemical co-detection of estradiol and dopamine

IF 5.5 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Naela Delmo, Ishan Pande, Emilia Peltola
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引用次数: 0

Abstract

Estradiol (E2) is a hormone that influences various aspects of women’s health. Beyond its reproductive functions, E2 impacts neurotransmitter systems such as dopamine (DA). Vertically aligned carbon nanofibers (VACNFs) have shown good sensitivity, selectivity against ascorbic acid (AA) and uric acid (UA), biocompatibility, and reduced fouling in DA sensing. In this study, we explore the use of Ti-Ni-CNF electrodes with CNFs grown for 5 min and 30 min for the direct electrochemical co-detection of E2 and DA. The longer growth time led to a 142% increase in average CNF length and a 36% larger electroactive surface area. In E2 detection, the electrodes demonstrate a wide linear range of 0.05–10 µM and sensitivity of 0.016 and 0.020 µA/µM for Ti-Ni-CNF-5 min and Ti-Ni-CNF-30 min, respectively. The sensor performance remains largely unaffected even in the presence of other steroid hormones such as progesterone and testosterone. Co-detection of equimolar E2 and DA shows promising peak separation of 0.34 ± 0.01 V and repeatability after 10 measurements. A notable improvement in the E2/DA peak current ratio, from 0.53 ± 0.07 to 0.81 ± 0.16, was achieved with the increased CNF length. Our results demonstrate the influence of adsorption sites in electrochemical detection, especially for analytes such as E2 and DA that both rely on adsorption for oxidation. While detecting small and fluctuating physiological concentrations remains a challenge, these findings can be used in choosing and fabricating electrode materials for more accurate and accessible continuous hormone measurements, including the possibility of multianalyte sensing platforms.

Abstract Image

吸附位点丰度在直接电化学联合检测雌二醇和多巴胺中的关键作用。
雌二醇(E2)是一种影响女性健康各个方面的激素。除了生殖功能外,E2 还会影响神经递质系统,如多巴胺(DA)。垂直排列的碳纳米纤维(VACNFs)在 DA 传感中表现出良好的灵敏度、对抗坏血酸(AA)和尿酸(UA)的选择性、生物兼容性和减少堵塞。在本研究中,我们探索了使用生长了 5 分钟和 30 分钟 CNF 的 Ti-Ni-CNF 电极直接电化学共检测 E2 和 DA 的方法。生长时间越长,CNF 的平均长度增加了 142%,电活性表面积增大了 36%。在 E2 检测中,Ti-Ni-CNF-5 分钟和 Ti-Ni-CNF-30 分钟电极的线性范围分别为 0.05-10 µM,灵敏度分别为 0.016 和 0.020 µA/µM。即使存在其他类固醇激素(如黄体酮和睾酮),传感器的性能也基本不受影响。等摩尔 E2 和 DA 的联合检测显示出良好的峰值分离度(0.34 ± 0.01 V)和 10 次测量后的重复性。随着 CNF 长度的增加,E2/DA 峰值电流比明显提高,从 0.53 ± 0.07 提高到 0.81 ± 0.16。我们的研究结果表明了吸附位点在电化学检测中的影响,尤其是对 E2 和 DA 等分析物的影响,因为这两种物质的氧化都依赖于吸附。虽然检测微小和波动的生理浓度仍然是一项挑战,但这些发现可用于选择和制造电极材料,以进行更准确和更方便的连续激素测量,包括建立多分析传感平台的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Nanoscale Research Letters
Nanoscale Research Letters 工程技术-材料科学:综合
CiteScore
11.30
自引率
0.00%
发文量
110
审稿时长
48 days
期刊介绍: Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.
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