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集成 EC-SERS 芯片与具有均匀纳米结构的 EC-SERS 活性工作电极,用于快速检测尿酸。

Integrated EC-SERS Chip with Uniform Nanostructured EC-SERS Active Working Electrode for Rapid Detection of Uric Acid.

机构信息

Department of Mechanical Engineering, National Chung Hsing University, Taichung 402, Taiwan.

出版信息

Sensors (Basel). 2020 Dec 10;20(24):7066. doi: 10.3390/s20247066.

Abstract

Toxemia of pregnancy is a very dangerous disease for pregnant women. The mortality rate of toxemia of pregnancy is close to 10% to 15%. Early detection of pregnancy toxemia is to monitoring uric acid concentration in urine. The current mainstream method for detecting uric acid requires an enzyme (urate oxidase), which needs to be stored in a low-temperature environment, and the method requires complex chemical steps, which takes a longer time and more samples. In this study, we propose an integrated miniature three-electrode electrochemical surface-enhanced Raman spectroscopy chip (EC-SERS chip) suitable for rapid EC-SERS detection applications. The integrated microfluidic reservoir on the chip makes it easy to use, which is very suitable for rapid detection applications. The SERS active working electrode for the proposed integrated EC-SERS chip is a nanocone array polycarbonate (PC) substrate decorated with an evenly distributed and tightly packed array of gold nanospheres. It showed good uniformity and can be easily reproduced. The integrated EC-SERS chip is very small compared to the traditional electrochemical cell, which reduces the sample volume required for the testing. In addition, the chip is for one-time use only. It eliminates the need to clean electrochemical cells for reuse, thereby reducing the possibility of contamination and inaccurate detection. Various low-concentration Rhodamine 6G (R6G) solutions were tested to verify the performance of the developed EC-SERS chip. Experimental results showed that the proposed EC-SERS chip has a strong enhancement factor of up to 8.5 × 10 and a very good EC-SERS uniformity (the relative standard deviation of EC-SERS intensity is as low as 1.41%). The EC-SERS chip developed has been further tested for the detection of uric acid in synthetic urine. The results showed that the EC-SERS signal intensity has a highly linear relationship with the logarithm of the uric acid concentration in synthetic urine, which indicates that the developed EC-SERS chip is suitable for the quantitative detection of uric acid in synthetic urine. Therefore, the developed EC-SERS chip is very promising to be used in routine and early diagnosis of pregnancy toxemia and may be used in many other medical tests, food safety, and biotechnology applications.

摘要

妊娠毒血症是一种对孕妇非常危险的疾病。妊娠毒血症的死亡率接近 10%至 15%。早期发现妊娠毒血症就是监测尿液中的尿酸浓度。目前主流的尿酸检测方法需要用到一种酶(尿酸氧化酶),这种酶需要保存在低温环境中,而且该方法需要复杂的化学步骤,耗时更长,需要的样本也更多。在这项研究中,我们提出了一种集成微型三电极电化学表面增强拉曼光谱芯片(EC-SERS 芯片),适用于快速 EC-SERS 检测应用。芯片上集成的微流控储液器使其使用更加方便,非常适合快速检测应用。用于提出的集成 EC-SERS 芯片的 SERS 活性工作电极是一个纳米锥阵列聚碳酸酯(PC)基底,上面装饰有均匀分布且紧密排列的金纳米球阵列。它表现出良好的均匀性,且易于重现。与传统电化学池相比,集成 EC-SERS 芯片非常小,这减少了测试所需的样品体积。此外,该芯片为一次性使用,无需清洗电化学池以重复使用,从而减少了污染和不准确检测的可能性。各种低浓度的罗丹明 6G(R6G)溶液被用来验证所开发的 EC-SERS 芯片的性能。实验结果表明,所提出的 EC-SERS 芯片具有高达 8.5×10 的强增强因子和非常好的 EC-SERS 均匀性(EC-SERS 强度的相对标准偏差低至 1.41%)。所开发的 EC-SERS 芯片已进一步用于合成尿液中尿酸的检测。结果表明,EC-SERS 信号强度与合成尿液中尿酸浓度的对数具有高度线性关系,这表明所开发的 EC-SERS 芯片适用于合成尿液中尿酸的定量检测。因此,所开发的 EC-SERS 芯片非常有希望用于妊娠毒血症的常规和早期诊断,并且可能用于许多其他医学测试、食品安全和生物技术应用。

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