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揭示聚乙烯亚胺包覆的金纳米颗粒尺寸对夹心式电化学免疫传感器效率的影响。

Unraveling the Impact of Polyethylenimine-Coated Gold Nanoparticle Size on the Efficiency of Sandwich-Style Electrochemical Immunosensors.

作者信息

Putnin Thitirat, Chanarsa Supakeit, Yaiwong Patrawadee, Ngamaroonchote Aroonsri, Aroonyadet Noppadol, Jakmunee Jaroon, Bamrungsap Suwussa, Laocharoensuk Rawiwan, Ounnunkad Kontad

机构信息

Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), Pathum Thani 12120, Thailand.

出版信息

ACS Meas Sci Au. 2025 Jan 23;5(1):96-108. doi: 10.1021/acsmeasuresciau.4c00075. eCollection 2025 Feb 19.

Abstract

Sometimes, smaller size is not always better, and looking for nanomaterials that offer better device performance requires consideration of their properties at the first stage. In this study, the effects of the size of polyethylenimine-capped AuNPs (PEI-AuNPs) and proteins on the immunosensor performances, namely, sensitivity and limit of detection, are examined. The size-effect investigation of PEI-AuNPs involves their modification on the surface of disposable screen-printed carbon electrodes to support primary antibodies and their ability to load secondary antibodies and redox probes to perform amplification in the immunosensor. The correlation of the average size, electrochemical activities, protein size, and device property of PEI-AuNPs is investigated. The synthesized PEI-AuNPs with different average diameters ranging from 4.7 to 44.9 nm are employed for the investigation. When the sensor surface forms a sandwich architecture, the detection employs the current response of Ag ions on the PEI-AuNPs bioconjugate, which greatly increases by increasing the protein concentration. In addition, the best electrochemical signal of PEI-AuNPs or their antibody complexes with a unique AuNPs' average size allows superior signal amplification. The effect of using different sizes of target proteins on their devices is not significantly observed. Although in general small-sized nanomaterials offer high active surface areas, which can improve the electrode surface, reactivity, and device performance, we observe that the medium size of PEI-AuNPs (16.3 nm) gives the best sensitivity and detection limit of this sensor type. Therefore, the finding is useful for considering and optimizing their sizes for tunable voltammetric properties and acquiring a superior sensor.

摘要

有时,尺寸较小并不总是更好,寻找具有更好器件性能的纳米材料需要在第一阶段考虑其特性。在本研究中,考察了聚乙烯亚胺包覆的金纳米粒子(PEI-AuNPs)的尺寸和蛋白质对免疫传感器性能(即灵敏度和检测限)的影响。对PEI-AuNPs的尺寸效应研究涉及将其修饰在一次性丝网印刷碳电极表面以负载一抗,以及其负载二抗和氧化还原探针以在免疫传感器中进行信号放大的能力。研究了PEI-AuNPs的平均尺寸、电化学活性、蛋白质尺寸与器件性能之间的相关性。使用合成的平均直径范围为4.7至44.9 nm的不同PEI-AuNPs进行研究。当传感器表面形成夹心结构时,检测利用PEI-AuNPs生物共轭物上银离子的电流响应,该响应会随着蛋白质浓度的增加而大幅增加。此外,具有独特金纳米粒子平均尺寸的PEI-AuNPs或其抗体复合物的最佳电化学信号可实现卓越的信号放大。未明显观察到使用不同尺寸的目标蛋白质对其器件的影响。尽管一般来说小尺寸纳米材料具有高活性表面积,可改善电极表面、反应性和器件性能,但我们观察到中等尺寸的PEI-AuNPs(16.3 nm)给出了这种传感器类型的最佳灵敏度和检测限。因此,这一发现对于考虑和优化其尺寸以实现可调伏安特性并获得优异传感器很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ae8/11843508/d301b7669c61/tg4c00075_0006.jpg

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