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双向“双赢”:不对称纳米碗耦合聚集诱导发光纳米硅增强免疫层析条用于超灵敏检测.

Bidirectional "Win-Win": Asymmetrical Nanobowl-Coupled Aggregation-Induced Emissive Nanosilicon-Enhanced Immunochromatographic Strips for the Ultrasensitive Detection of .

作者信息

Li Yuechun, Zhang Wenrui, Wang Ziqi, Cui Zhaowen, Shi Longhua, Bu Tong, Sun Jing, Cheng Jie, Yang Qingyu, Wang Jianlong

机构信息

College of Food Science and Engineering, Northwest A&F University, 22 Xinong Road, Yangling 712100, Shaanxi, China.

College of Food Science and Technology, Henan Agricultural University, Zhengzhou 450002, Henan, China.

出版信息

Anal Chem. 2024 Nov 12;96(45):18204-18213. doi: 10.1021/acs.analchem.4c04403. Epub 2024 Nov 1.

Abstract

The lack of nanoprobes with an efficient signal response and overlook of cooperation between nanoprobes can be responsible for the unsatisfactory analytical performance of immunochromatographic strips (ITSs). Herein, asymmetrical nanobowl-confined innumerable gold nanoparticles (AuNPs) (AuNPs@AFRNBs) to enhance the light absorption are developed for quenching the fluorescence of aggregation-induced emissive (AIE) nanosilicons, which is used for the construction of a bidirectional complementary-enhanced ITS (BC-ITS) to ultrasensitively detect (). Briefly, density functional theory-screened AIEgens with highly fluorescent brightness are confined in nanosilicons, and the nanoconfinement has improved the fluorescent brightness by 6.78-fold compared to the free AIEgens. Moreover, the substituent group effect has also enhanced the fluorescence of the prepared fluorescent nanosilicon by 10,000-fold in ITSs. By virtue of the superior light absorption of AuNPs@AFRNBs, the BC-ITS exhibits a bidirectional "win-win" performance for the sensitive monitoring of : a "turn-on" mode with a high-brightness colorimetric response and an inverse "turn-off" fluorescence response, whose limits of detection are 364 and 302 CFU mL, respectively, which is approximately 100-fold more sensitive than the traditional AuNPs-ITS. Furthermore, the BC-ITS can be successfully used to identify in milk, illustrating the superiority of the developed BC-ITS in point-of-care diagnosis.

摘要

纳米探针信号响应效率低以及忽视纳米探针之间的协同作用,可能是导致免疫层析条(ITS)分析性能不理想的原因。在此,开发了具有不对称纳米碗限域的无数金纳米颗粒(AuNPs)(AuNPs@AFRNBs)来增强光吸收,以猝灭聚集诱导发光(AIE)纳米硅的荧光,用于构建双向互补增强的 ITS(BC-ITS),以超灵敏地检测()。简而言之,经过密度泛函理论筛选的具有高荧光亮度的 AIEgen 被限域在纳米硅中,与游离的 AIEgen 相比,纳米限域将荧光亮度提高了 6.78 倍。此外,取代基效应还使制备的荧光纳米硅在 ITS 中的荧光增强了 10,000 倍。由于 AuNPs@AFRNBs 的优越光吸收能力,BC-ITS 对的敏感监测表现出双向“双赢”性能:高亮度比色响应的“开启”模式和反向“关闭”荧光响应,其检测限分别为 364 和 302 CFU mL,比传统的 AuNPs-ITS 敏感约 100 倍。此外,BC-ITS 可成功用于识别牛奶中的,说明了所开发的 BC-ITS 在即时诊断中的优越性。

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