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A smartphone-combined ratiometric fluorescence molecularly imprinted probe based on biomass-derived carbon dots for determination of tyramine in fermented meat products.
Zhang, Dianwei; Zhang, Yuhua; Li, Kexin; Wang, Shengnan; Ma, Yuanchen; Liao, Yonghong; Wang, Fenghuan; Liu, Huilin.
Affiliation
  • Zhang D; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Zhang Y; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Li K; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Wang S; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Ma Y; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Liao Y; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.
  • Wang F; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.. Electronic address: wangfenghuan@th.btbu.edu.cn.
  • Liu H; Beijing Technology and Business University, 11 Fucheng Road, Beijing 100048, China.. Electronic address: liuhuilin@btbu.edu.cn.
Food Chem ; 454: 139759, 2024 Oct 01.
Article in En | MEDLINE | ID: mdl-38805926
ABSTRACT
A ratiometric fluorescence molecularly imprinted probe employing two distinct emission wavelengths of biomass carbon dots was developed for highly selective and visual quantitative detection of tyramine in fermented meat products. The red emission biomass carbon dots were employed as responsive elements, and the blue ones were utilized as the reference elements. The molecularly imprinted polymers were incorporated in the ratiometric sensing to distinguish and adsorb tyramine. With the linear range of 1-60 µg/L, the ratiometric fluorescence molecularly imprinted probe was successfully applied to detect tyramine in real samples with the satisfactory recoveries of 79.74-112.12% and the detect limitation of 1.3 µg/kg, indicating that this probe has great potential applications for the detection of tyramine in real samples. Moreover, smartphone-based fluorescence signal recognition analysis on hand has been developed for the quantitative analysis of tyramine, providing a portable visual optical analysis terminal for rapid on-site determination of tyramine.
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Full text: 1 Database: MEDLINE Main subject: Carbon / Tyramine / Molecular Imprinting / Smartphone / Meat Products Limits: Animals Language: En Year: 2024 Type: Article

Full text: 1 Database: MEDLINE Main subject: Carbon / Tyramine / Molecular Imprinting / Smartphone / Meat Products Limits: Animals Language: En Year: 2024 Type: Article