Parylene Double-Layer Coated Screen-Printed Carbon Electrode for Label-Free and Reagentless Capacitive Aptasensing of Gliadin.

IF 8.2 1区 化学 Q1 CHEMISTRY, ANALYTICAL
ACS Sensors Pub Date : 2024-07-26 Epub Date: 2024-07-09 DOI:10.1021/acssensors.4c00875
Chun-Ning Tsai, Chin-Yun Lee, Hsien-Yeh Chen, Bo-Chuan Hsieh
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引用次数: 0

Abstract

Celiac patients are required to strictly adhere to a gluten-free diet because even trace amounts of gluten can damage their small intestine and leading to serious complications. Despite increased awareness, gluten can still be present in products due to cross-contamination or hidden ingredients, making regular monitoring essential. With the goal of guaranteeing food safety for consuming labeled gluten-free products, a capacitive aptasensor was constructed to target gliadin, the main allergic gluten protein for celiac disease. The success of capacitive aptasensing was primarily realized by coating a Parylene double-layer (1000 nm Parylene C at the bottom with 400 nm Parylene AM on top) on the electrode surface to ensure both high insulation quality and abundant reactive amino functionalities. Under the optimal concentration of aptamer (5 μM) used for immobilization, a strong linear relationship exists between the amount of gliadin (0.01-1.0 mg/mL) and the corresponding ΔC response (total capacitance decrease during a 20 min monitoring period after sample introduction), with an R2 of 0.9843. The detection limit is 0.007 mg/mL (S/N > 5), equivalent to 0.014 mg/mL (14 ppm) of gluten content. Spike recovery tests identified this system is free from interferences in corn and cassava flour matrices. The analytical results of 24 commercial wheat flour samples correlated well with a gliadin ELISA assay (R2 = 0.9754). The proposed label-free and reagentless capacitive aptasensor offers advantages of simplicity, cost-effectiveness, ease of production, and speediness, making it a promising tool for verifying products labeled as gluten-free (gluten content <20 ppm).

Abstract Image

聚对二甲苯双层涂层丝网印刷碳电极,用于无标签、无试剂的麸质蛋白电容感应。
乳糜泻患者必须严格遵守无麸质饮食,因为即使是微量的麸质也会损害他们的小肠,导致严重的并发症。尽管人们的意识有所提高,但由于交叉污染或隐藏成分,麸质仍然可能存在于产品中,因此定期监测至关重要。为了保证食用无麸质标签产品的食品安全,我们构建了一种电容式适达传感器,以麦角蛋白为目标,麦角蛋白是导致乳糜泻的主要过敏性麸质蛋白。电容式适配传感器的成功主要是通过在电极表面涂覆一层聚对二甲苯双层膜(底部为 1000 nm 聚对二甲苯 C,顶部为 400 nm 聚对二甲苯 AM)来实现的,以确保高绝缘质量和丰富的活性氨基功能。在用于固定的最佳适配体浓度(5 μM)下,麦胶蛋白的含量(0.01-1.0 mg/mL)与相应的 ΔC 响应(引入样品后 20 分钟监测期间的总电容下降)之间存在很强的线性关系,R2 为 0.9843。检测限为 0.007 mg/mL(S/N > 5),相当于 0.014 mg/mL(14 ppm)的麸质含量。斑点回收测试表明,该系统在玉米和木薯粉基质中不受干扰。24 份商用小麦粉样品的分析结果与麦胶蛋白 ELISA 检测法的相关性很好(R2 = 0.9754)。所提出的无标签、无试剂的电容式传感器具有操作简单、成本效益高、易于生产和速度快等优点,使其成为验证标注为无麸质(麸质含量为 0.1%)产品的一种有前途的工具。
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
ACS Sensors
ACS Sensors Chemical Engineering-Bioengineering
CiteScore
14.50
自引率
3.40%
发文量
372
期刊介绍: ACS Sensors is a peer-reviewed research journal that focuses on the dissemination of new and original knowledge in the field of sensor science, particularly those that selectively sense chemical or biological species or processes. The journal covers a broad range of topics, including but not limited to biosensors, chemical sensors, gas sensors, intracellular sensors, single molecule sensors, cell chips, and microfluidic devices. It aims to publish articles that address conceptual advances in sensing technology applicable to various types of analytes or application papers that report on the use of existing sensing concepts in new ways or for new analytes.
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