Assessing cobalt and manganese in foods: A study on determination and health risk using inductively coupled plasma spectrometry

被引:3
作者
Soh, Bokyung [1 ]
Han, Yerim [1 ]
Cho, Su Yeob [1 ]
Choi, Shinai [2 ]
Chung, Hyun [2 ]
Lee, Kwang-Won [1 ]
机构
[1] Korea Univ, Dept Biotechnol, Collage Life Sci & Biotechnol, Seoul 02841, South Korea
[2] KnA Co Ltd, Yongin 16864, South Korea
关键词
Food contamination; Method validation; Monitoring; Risk assessment; Trace element; Dietary intake; Cobalt; Manganese; ICP-MS; ICP-OES; MASS-SPECTROMETRY; HEAVY-METALS; ACCUMULATION; AVAILABILITY; TOXICITY; PLANTS; SOILS; RICE;
D O I
10.1016/j.jfca.2024.106394
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This study aimed to evaluate the concentration and health risk of cobalt (Co) and manganese (Mn) in food using inductively coupled plasma mass spectroscopy (ICP-MS) and ICP optical emission spectroscopy (ICP-OES), respectively. Methods were validated for six food classes based on composition and calorie content. The method limit of quantification (MLOQ) ranged from 0.0766 to 0.2525 mu g/kg for Co and 0.0202-0.0832 mg/kg for Mn. Out of 351 food items, Co and Mn were detected above the method limit of detection (MLOD) in 266 and 222 samples, respectively, with highest levels in nuts, seeds, grains, beans, sauces, and seasonings. Pearson correlation analysis showed a significant positive correlation (p < 0.01) between Co and Mn in agricultural (r = 0.390) and processed food (r = 0.543) categories. Exposure to Co and Mn through dietary intake remained within acceptable limits (target hazard quotient (THQ) < 1), suggesting that lifetime consumption is unlikely to elevate potential health risks. In conclusion, this comprehensive study validated methods for Co and Mn analysis and assessed their concentrations and potential health risks across various food categories.
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页数:11
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共 80 条
[1]   Heavy metals (lead, cadmium, methylmercury, arsenic) in commonly imported rice grains (Oryza sativa) sold in Saudi Arabia and their potential health risk [J].
Al-Saleh, Iman ;
Abduljabbar, Mai .
INTERNATIONAL JOURNAL OF HYGIENE AND ENVIRONMENTAL HEALTH, 2017, 220 (07) :1168-1178
[2]   Trophic transfer, bioaccumulation, and biomagnification of non-essential hazardous heavy metals and metalloids in food chains/webs-Concepts and implications for wildlife and human health [J].
Ali, Hazrat ;
Khan, Ezzat .
HUMAN AND ECOLOGICAL RISK ASSESSMENT, 2019, 25 (06) :1353-1376
[3]  
Alloway B.J., 2013, Heavy Metals in Soils, V22, DOI DOI 10.1007/978-94-007-4470-7
[4]   Heavy Metals Removal from Domestic Sewage in Batch Mesocosm Constructed Wetlands using Tropical Wetland Plants [J].
Ang, Shin Ying ;
Goh, Hui Weng ;
Mohd Fazli, Bashirah ;
Haris, Hazzeman ;
Azizan, Nor Ariza ;
Zakaria, Nor Azazi ;
Johar, Zubaidi .
WATER, 2023, 15 (04)
[5]  
[Anonymous], 1996, ZINC, P72
[6]  
[Anonymous], 2019, Agents Classified by the IARC Monographs, V1 - 125
[7]   Dietary intake of minerals and trace elements in rice on the Jamaican market [J].
Antoine, Johann M. R. ;
Fung, Leslie A. Hoo ;
Grant, Charles N. ;
Dennis, Haile T. ;
Lalor, Gerald C. .
JOURNAL OF FOOD COMPOSITION AND ANALYSIS, 2012, 26 (1-2) :111-121
[8]  
Armah Frederick Ato, 2014, Int Sch Res Notices, V2014, P252148, DOI 10.1155/2014/252148
[9]  
Aschner Judy L., 2005, Molecular Aspects of Medicine, V26, P353, DOI 10.1016/j.mam.2005.07.003
[10]   Nitrogen fixation by red clover as related to the supply of cobalt and molybdenum from some Norwegian soils [J].
Bakken, AK ;
Synnes, OM ;
Hansen, S .
ACTA AGRICULTURAE SCANDINAVICA SECTION B-SOIL AND PLANT SCIENCE, 2004, 54 (02) :97-101