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基于微流控的铁蛋白电化学免疫传感。

Microfluidic-Based Electrochemical Immunosensing of Ferritin.

机构信息

CSIR-Central Scientific Instruments Organisation, Sector 30-C, Chandigarh 160030, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

出版信息

Biosensors (Basel). 2020 Aug 5;10(8):91. doi: 10.3390/bios10080091.

Abstract

Ferritin is a clinically important biomarker which reflects the state of iron in the body and is directly involved with anemia. Current methods available for ferritin estimation are generally not portable or they do not provide a fast response. To combat these issues, an attempt was made for lab-on-a-chip-based electrochemical detection of ferritin, developed with an integrated electrochemically active screen-printed electrode (SPE), combining nanotechnology, microfluidics, and electrochemistry. The SPE surface was modified with amine-functionalized graphene oxide to facilitate the binding of ferritin antibodies on the electrode surface. The functionalized SPE was embedded in the microfluidic flow cell with a simple magnetic clamping mechanism to allow continuous electrochemical detection of ferritin. Ferritin detection was accomplished via cyclic voltammetry with a dynamic linear range from 7.81 to 500 ng·mL and an LOD of 0.413 ng·mL. The sensor performance was verified with spiked human serum samples. Furthermore, the sensor was validated by comparing its response with the response of the conventional ELISA method. The current method of microfluidic flow cell-based electrochemical ferritin detection demonstrated promising sensitivity and selectivity. This confirmed the plausibility of using the reported technique in point-of-care testing applications at a much faster rate than conventional techniques.

摘要

铁蛋白是一种重要的临床生物标志物,反映了体内铁的状态,与贫血直接相关。目前可用的铁蛋白估计方法通常不便于携带,或者不能提供快速响应。为了解决这些问题,尝试基于芯片实验室的电化学检测铁蛋白,采用集成的电化学活性丝网印刷电极(SPE)开发,结合纳米技术、微流控和电化学。SPE 表面经过胺功能化氧化石墨烯修饰,以促进铁蛋白抗体在电极表面的结合。功能化 SPE 采用简单的磁性夹紧机制嵌入微流控流动池,以允许对铁蛋白进行连续电化学检测。铁蛋白检测通过循环伏安法完成,动态线性范围为 7.81 至 500ng·mL,检测限为 0.413ng·mL。通过添加人血清样本对传感器性能进行了验证。此外,通过比较与传统 ELISA 方法的响应,验证了传感器的性能。基于微流控流动池的电化学铁蛋白检测的当前方法显示出有希望的灵敏度和选择性。这证实了在比传统技术快得多的速度下,在即时检测应用中使用所报道的技术的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/112a/7460419/f129e825e034/biosensors-10-00091-g001.jpg

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