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A ratiometric SERS sensor with one signal probe for ultrasensitive and quantitative monitoring of serum xanthine.
Wu, Yan; Yi, Rongnan; Zang, Honghui; Li, Jing; Xu, Rong; Zhao, Fang; Wang, Junli; Fu, Cuicui; Chen, Jinyang.
Afiliación
  • Wu Y; Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Fuling, Chongqing 408100, China. wyan2018@163.com.
  • Yi R; Postdoctoral Mobile Station of Basic Medical Sciences, Hengyang Medical School, University of South China, Hengyang 421001, China.
  • Zang H; Key Laboratory of Food & Environment & Drug Monitoring and Testing of Universities in Hunan Province, Hunan Police Academy, Changsha 410138, China.
  • Li J; Key Laboratory of Food & Environment & Drug Monitoring and Testing of Universities in Hunan Province, Hunan Police Academy, Changsha 410138, China.
  • Xu R; Chongqing Wankai New Materials Technology Co., Ltd, Fuling, Chongqing 408121, China.
  • Zhao F; Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Fuling, Chongqing 408100, China. wyan2018@163.com.
  • Wang J; Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Fuling, Chongqing 408100, China. wyan2018@163.com.
  • Fu C; Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Fuling, Chongqing 408100, China. wyan2018@163.com.
  • Chen J; Chongqing Key Laboratory of Inorganic Special Functional Materials, College of Chemistry and Chemical Engineering, Yangtze Normal University, Fuling, Chongqing 408100, China. wyan2018@163.com.
Analyst ; 148(22): 5707-5713, 2023 Nov 06.
Article en En | MEDLINE | ID: mdl-37830373
ABSTRACT
Xanthine can be converted into uric acid, and a high concentration of xanthine in the human body can cause many diseases. Therefore, it is important to develop a sensitive, simple, and reliable approach for measuring xanthine in biological liquids. Hence, a ratiometric surface-enhanced Raman spectroscopy (SERS) sensing strategy with one signal probe was exploited for reliable, sensitive, and quantitative monitoring of serum xanthine. 3-Mercaptophenylboronic acid (3-MPBA) was used as a typical reference with a Raman peak at 996 cm-1. First, 3-MPBA was bound to gold nanoflowers@silica (GNFs@Si) through Au-S bonds. Xanthine oxidase (XOD) catalyzed the oxidation of xanthine into H2O2 on GNFs@Si. Afterward, the obtained H2O2 further reduced 3-MPBA to 3-hydroxythiophenol (3-HTP) accompanied by the emergence of a new Raman peak at 883 cm-1. Meanwhile, the Raman intensity at 996 cm-1 remained constant. Therefore, the ratio of I883/I996 increased with the increasing of xanthine concentration, thus realizing quantitative detection of xanthine. As a result, a ratiometric SERS sensor for the detection of xanthine was proposed with a detection limit of 5.7 nM for xanthine. The novel ratiometric SERS sensor provides a new direction for analyzing other biomolecules with high sensitivity and reliability.
Asunto(s)

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Nanopartículas del Metal / Peróxido de Hidrógeno Idioma: En Revista: Analyst Año: 2023 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Nanopartículas del Metal / Peróxido de Hidrógeno Idioma: En Revista: Analyst Año: 2023 Tipo del documento: Article