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In Situ Plasmonic Gold Staining-Boosted Paper Test Kits of Human Albumin for Urinary Healthcare Monitoring

化学 原位 等离子体子 染色 泌尿系统 白蛋白 纳米技术 色谱法 生物化学 内科学 光电子学 病理 有机化学 医学 物理 材料科学
作者
Zi Bo Qu,Jun Jiang Luo,Lin Gu,Hong Qun Luo,Nian Bing Li,Hao Zou,Bang Lin Li
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:97 (34): 18826-18836 被引量:3
标识
DOI:10.1021/acs.analchem.5c03769
摘要

Inspired by the distinct circular coffee-ring stains left by coffee droplets, we explore another type of circular stain formed by colorimetric nanomaterials on hydrophilic and porous nitrocellulose (NC) papers, which are termed diffusion coffee rings (DCRs). Layered MoS2 nanosheets, utilized as colorimetric nanomaterials, exhibit an intriguing MoS2-marked DCR (MoS2/DCR) boundary on NC substrates. When MoS2-loaded NC was immersed into HAuCl4 solutions, a spontaneous reaction between MoS2 nanosheets and Au ions results in notable color changes at the MoS2/DCR due to the formation of in situ-synthesized gold nanoparticles (issAu), and this phenomenon is termed issAu staining in our protocol. Herein, issAu staining is highly stable and repeatable due to the stabilization effect of NC fibers on the attached Au nanomaterials, whereas the presence of proteins effectively inhibits the growth of issAu on MoS2, responsively weakening the staining effect. Under the inspiration of paper-based kits, we developed a simple and rapid protein analysis method based on the issAu-stained MoS2/DCR assay (issAu-MoS2/DCR). The MoS2/DCR enables the desired recognition effect of proteins in the presence of coexisting compounds, ensuring high anti-interference performance. Our issAu-MoS2/DCR analysis protocol works via the synchronous formation of Au nanoparticles, which overcomes challenges related to the drawbacks of sensing materials during their storage. The concept of issAu staining enhances point-of-care and ultrafast on-site monitoring techniques for proteins, practically addressing the emergency needs of early urinary disease diagnosis.
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