SERS optrode for human thyroglobulin detection in liquid biopsy

S. Spaziani, G. Quero, S. Managò, G. Zito, D. Terracciano, P. Macchia, F. Galeotti, M. Pisco, A. D. De Luca, A. Cusano
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Abstract

In this work, we propose a novel immunoassay platform for the detection of human Thyroglobulin (Tg) to be integrated with fine-needle aspiration biopsy for early identification of lymph node metastases in thyroid cancer patients. The sensing platform detects Tg (a well-known biomarker for the classification of metastatic lymph nodes related to thyroid cancer) by a sandwich immunoassay involving a self-assembled surface-enhanced Raman scattering (SERS) substrate assisted and empowered by functionalized gold nanoparticles enabling additional Raman signal amplification and improved molecular specificity. The sandwich assay platform was preliminary validated in a planar configuration and a detection limit as low as 7 pg/mL was successfully achieved. The sandwich assay was successfully demonstrated on washout fluids of fine needle aspiration biopsies from cancer patients and confirmed the high specificity of the proposed methodology when complex biological matrices are considered. Finally, optical fiber SERS optrodes were fabricated and successfully used to detect Tg concentration by applying the same bio-recognition strategy. This opens the possibility of transferring the Tg detection approach to the optical fiber tip to develop point-of-care platforms that can be directly integrated into fine needle aspiration biopsies.
液体活检中人甲状腺球蛋白的SERS光极检测
在这项工作中,我们提出了一种新的免疫检测平台,用于检测人甲状腺球蛋白(Tg),并将其与细针穿刺活检相结合,以早期识别甲状腺癌患者的淋巴结转移。该传感平台通过三明治免疫分析法检测Tg(一种众所周知的用于甲状腺癌相关转移性淋巴结分类的生物标志物),该方法涉及自组装的表面增强拉曼散射(SERS)底物,并由功能化金纳米颗粒辅助和增强,从而实现额外的拉曼信号放大和提高分子特异性。在平面结构中对夹心分析平台进行了初步验证,成功地实现了低至7 pg/mL的检测限。在癌症患者细针穿刺活检的冲洗液中成功地证明了夹心法,并证实了在考虑复杂生物基质时所提出的方法的高特异性。最后,利用相同的生物识别策略,制备了光纤SERS电极,并成功地用于检测Tg浓度。这开启了将Tg检测方法转移到光纤尖端的可能性,以开发可直接集成到细针穿刺活检中的即时护理平台。
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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