Challenges and trends in the determination of selected chemical contaminants and allergens in food

被引:58
|
作者
Krska, Rudolf
Becalski, Adam [1 ]
Braekevelt, Eric [1 ]
Koerner, Terry [1 ]
Cao, Xu-Liang [1 ]
Dabeka, Robert [1 ]
Godefroy, Samuel [2 ]
Lau, Ben [1 ]
Moisey, John [1 ]
Rawn, Dorothea F. K. [1 ]
Scott, Peter M. [1 ]
Wang, Zhongwen [1 ]
Forsyth, Don [1 ]
机构
[1] Hlth Canada, Food Res Div, Bur Chem Safety, Food Directorate, Ottawa, ON K1A 0K9, Canada
[2] Hlth Canada, Hlth Prod & Food Branch, Food Directorate, Ottawa, ON K1A 0K9, Canada
关键词
Food safety; Chemical contaminants; Acrylamide; Bisphenol A; Melamine; Perchlorate; Sulfites; Persistent organic pollutants; Mycotoxins; Phycotoxins; Allergens; TANDEM MASS-SPECTROMETRY; METHYLAMINO-L-ALANINE; PERFORMANCE LIQUID-CHROMATOGRAPHY; POLYBROMINATED DIPHENYL ETHERS; BROMINATED FLAME RETARDANTS; LINKED-IMMUNOSORBENT-ASSAY; TIME-OF-FLIGHT; PRESSURIZED FLUID EXTRACTION; SOLID-PHASE MICROEXTRACTION; FLOW-INJECTION ANALYSIS;
D O I
10.1007/s00216-011-5237-3
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
This article covers challenges and trends in the determination of some major food chemical contaminants and allergens, which-among others-are being monitored by Health Canada's Food Directorate and for which background levels in food and human exposure are being analyzed and calculated. Eleven different contaminants/contaminant groups and allergens have been selected for detailed discussion in this paper. They occur in foods as a result of: use as a food additive or ingredient; processing-induced reactions; food packaging migration; deliberate adulteration; and/or presence as a chemical contaminant or natural toxin in the environment. Examples include acrylamide as a food-processing-induced contaminant, bisphenol A as a food packaging-derived chemical, melamine and related compounds as food adulterants and persistent organic pollutants, and perchlorate as an environmental contaminant. Ochratoxin A, fumonisins, and paralytic shellfish poisoning toxins are examples of naturally occurring toxins whereas sulfites, peanuts, and milk exemplify common allergenic food additives/ingredients. To deal with the increasing number of sample matrices and analytes of interest, two analytical approaches have become increasingly prevalent. The first has been the development of rapid screening methods for a variety of analytes based on immunochemical techniques, utilizing ELISA or surface plasmon resonance technology. The second is the development of highly sophisticated multi-analyte methods based on liquid chromatography coupled with multiple-stage mass spectrometry for identification and simultaneous quantification of a wide range of contaminants, often with much less requirement for tedious cleanup procedures. Whereas rapid screening methods enable testing of large numbers of samples, the multi analyte mass spectrometric methods enable full quantification with confirmation of the analytes of interest. Both approaches are useful when gathering surveillance data to determine occurrence and background levels of both recognized and newly identified contaminants in foods in order to estimate human daily intake for health risk assessment.
引用
收藏
页码:139 / 162
页数:24
相关论文
共 50 条
  • [1] Challenges and trends in the determination of selected chemical contaminants and allergens in food
    Rudolf Krska
    Adam Becalski
    Eric Braekevelt
    Terry Koerner
    Xu-Liang Cao
    Robert Dabeka
    Samuel Godefroy
    Ben Lau
    John Moisey
    Dorothea F. K. Rawn
    Peter M. Scott
    Zhongwen Wang
    Don Forsyth
    [J]. Analytical and Bioanalytical Chemistry, 2012, 402 : 139 - 162
  • [2] Contaminants in food - successes, challenges and trends
    Fiack, Suzan
    Wittkowski, Reiner
    [J]. BUNDESGESUNDHEITSBLATT-GESUNDHEITSFORSCHUNG-GESUNDHEITSSCHUTZ, 2017, 60 (07) : 685 - 688
  • [3] Critical assessment of recent trends related to screening and confirmatory analytical methods for selected food contaminants and allergens
    Tsagkaris, A. S.
    Nelis, J. L. D.
    Ross, G. M. S.
    Jafari, S.
    Guercetti, J.
    Kopper, K.
    Zhao, Y.
    Rafferty, K.
    Salvador, J. P.
    Migliorelli, D.
    Salentijn, G. I. J.
    Campbell, K.
    Marco, M. P.
    Elliot, C. T.
    Nielen, M. W. F.
    Pulkrabova, J.
    Hajslova, J.
    [J]. TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2019, 121
  • [4] Food Contaminants: Mycotoxins and Food Allergens.
    Shephard, Gordon S.
    [J]. AMERICAN JOURNAL OF HUMAN BIOLOGY, 2009, 21 (05) : 711 - 712
  • [5] Recent trends in common chemical feed and food contaminants in Israel
    Shimshoni, J. A.
    Barel, S.
    [J]. JOURNAL OF ENVIRONMENTAL SCIENCE AND HEALTH PART C-ENVIRONMENTAL CARCINOGENESIS & ECOTOXICOLOGY REVIEWS, 2017, 35 (04): : 189 - 212
  • [6] Preventing chemical contaminants in food: Challenges and prospects for safe and sustainable food production
    Onyeaka, Helen
    Ghosh, Soumya
    Obileke, KeChrist
    Miri, Taghi
    Odeyemi, Olumide A.
    Nwaiwu, Ogueri
    Tamasiga, Phemelo
    [J]. FOOD CONTROL, 2024, 155
  • [7] CHEMICAL CONTAMINANTS IN FOOD
    CODURO, E
    [J]. ZENTRALBLATT FUR BAKTERIOLOGIE MIKROBIOLOGIE UND HYGIENE SERIE B-UMWELTHYGIENE KRANKENHAUSHYGIENE ARBEITSHYGIENE PRAVENTIVE MEDIZIN, 1986, 183 (2-3): : 221 - 233
  • [8] Contaminants: challenges for the food industry
    不详
    [J]. NUTRITION & FOOD SCIENCE, 2006, 36 (01): : 1 - 6
  • [9] Liquid chromatography-mass spectrometry for the determination of chemical contaminants in food
    Hird, Simon J.
    Lau, Benjamin P. -Y.
    Schuhmacher, Rainer
    Krska, Rudolf
    [J]. TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2014, 59 : 59 - 72
  • [10] MONITORING OF CHEMICAL CONTAMINANTS IN FOOD
    WESTON, RE
    [J]. TOXICOLOGY, 1975, 4 (03) : 391 - 392