Fluorescence determination of acrylamide in heat-processed foods. 2014

Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
Key Laboratory of Analysis and Detection Technology for Food Safety, Ministry of Education, Department of Chemistry, Fuzhou University, Fuzhou 350002, China.

A simple and rapid fluorescence method has been developed for the determination of acrylamide in heat-processed food samples. In the determination, acrylamide is degraded through Hofmann reaction to generate vinyl amine, and pyrrolinone is produced when the vinyl amine reacts with fluorescamine, resulting in a strong fluorescence emission at 480 nm. Hofmann reaction is a key step for the fluorescence determination of acrylaminde, and the reaction conditions are investigated and optimized. Under the optimal conditions, the fluorescence intensity increases with the increase of acrylamide concentrations. The linear range between the fluorescence intensity and the square-root of acrylamide concentrations is from 0.05 μg mL(-1) to 20 μg mL(-1) with the correlation coefficient R(2)=0.9935. The detection limit is 0.015 μg mL(-1) and the recovery for food samples is from 66.0% to 110.6%. In comparison with Specification of Entry&Exit Inspection and Quarantine Bureau of The People׳s Republic of China (SN/T 2281-2009), the method showed comparable results and demonstrated the accuracy of the method.

UI MeSH Term Description Entries
D008956 Models, Chemical Theoretical representations that simulate the behavior or activity of chemical processes or phenomena; includes the use of mathematical equations, computers, and other electronic equipment. Chemical Models,Chemical Model,Model, Chemical
D002623 Chemistry Techniques, Analytical Methodologies used for the isolation, identification, detection, and quantitation of chemical substances. Analytical Chemistry Techniques,Analytical Chemistry Methods,Analytical Chemistry Method,Analytical Chemistry Technique,Chemistry Method, Analytical,Chemistry Methods, Analytical,Chemistry Technique, Analytical,Method, Analytical Chemistry,Methods, Analytical Chemistry,Technique, Analytical Chemistry,Techniques, Analytical Chemistry
D005453 Fluorescence The property of emitting radiation while being irradiated. The radiation emitted is usually of longer wavelength than that incident or absorbed, e.g., a substance can be irradiated with invisible radiation and emit visible light. X-ray fluorescence is used in diagnosis.
D005511 Food Handling Any aspect of the operations in the preparation, processing, transport, storage, packaging, wrapping, exposure for sale, service, or delivery of food. Food Processing,Handling, Food,Processing, Food
D006358 Hot Temperature Presence of warmth or heat or a temperature notably higher than an accustomed norm. Heat,Hot Temperatures,Temperature, Hot,Temperatures, Hot
D006863 Hydrogen-Ion Concentration The normality of a solution with respect to HYDROGEN ions; H+. It is related to acidity measurements in most cases by pH pH,Concentration, Hydrogen-Ion,Concentrations, Hydrogen-Ion,Hydrogen Ion Concentration,Hydrogen-Ion Concentrations
D013050 Spectrometry, Fluorescence Measurement of the intensity and quality of fluorescence. Fluorescence Spectrophotometry,Fluorescence Spectroscopy,Spectrofluorometry,Fluorescence Spectrometry,Spectrophotometry, Fluorescence,Spectroscopy, Fluorescence
D015203 Reproducibility of Results The statistical reproducibility of measurements (often in a clinical context), including the testing of instrumentation or techniques to obtain reproducible results. The concept includes reproducibility of physiological measurements, which may be used to develop rules to assess probability or prognosis, or response to a stimulus; reproducibility of occurrence of a condition; and reproducibility of experimental results. Reliability and Validity,Reliability of Result,Reproducibility Of Result,Reproducibility of Finding,Validity of Result,Validity of Results,Face Validity,Reliability (Epidemiology),Reliability of Results,Reproducibility of Findings,Test-Retest Reliability,Validity (Epidemiology),Finding Reproducibilities,Finding Reproducibility,Of Result, Reproducibility,Of Results, Reproducibility,Reliabilities, Test-Retest,Reliability, Test-Retest,Result Reliabilities,Result Reliability,Result Validities,Result Validity,Result, Reproducibility Of,Results, Reproducibility Of,Test Retest Reliability,Validity and Reliability,Validity, Face
D015394 Molecular Structure The location of the atoms, groups or ions relative to one another in a molecule, as well as the number, type and location of covalent bonds. Structure, Molecular,Molecular Structures,Structures, Molecular
D020106 Acrylamide A colorless, odorless, highly water soluble vinyl monomer formed from the hydration of acrylonitrile. It is primarily used in research laboratories for electrophoresis, chromatography, and electron microscopy and in the sewage and wastewater treatment industries.

Related Publications

Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
January 2005, Advances in experimental medicine and biology,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
January 2003, European journal of epidemiology,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
July 2002, Kinderkrankenschwester : Organ der Sektion Kinderkrankenpflege,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
April 2003, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
July 2006, Journal of chromatography. A,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
December 2003, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
April 2004, Shokuhin eiseigaku zasshi. Journal of the Food Hygienic Society of Japan,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
July 2005, Mutation research,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
April 2022, Journal of agricultural and food chemistry,
Congcong Liu, and Feng Luo, and Dongmei Chen, and Bin Qiu, and Xinhua Tang, and Huixian Ke, and Xi Chen
August 2008, Food chemistry,
Copied contents to your clipboard!