Literature DB >> 30114623

Impacts of farmed fish consumption and food trade on methylmercury exposure in China.

Maodian Liu1, Long Chen2, Yipeng He1, Zofia Baumann3, Robert P Mason3, Huizhong Shen4, Chenghao Yu5, Wei Zhang6, Qianggong Zhang7, Xuejun Wang8.   

Abstract

The global pollutant mercury (Hg), especially as methylmercury (MeHg), threatens human and ecosystem health. But major contributors of MeHg exposure to people in China remain highly debated. We developed the China Mercury Exposure Assessment (CMEA) model, which incorporates human exposure pathways for MeHg and total Hg (THg), the interregional, including international and interprovincial, food trading as well as human physiology to provide a comprehensive system that can evaluate the pathway of Hg forms to human consumers in China. Based on the CMEA model that employed the most comprehensive and recent data, we have found that the Probable Daily Intake (PDI) of MeHg for the Chinese population was 0.057 (range: 0.036-0.091 as 60% confidence interval) μg·kg-1·day-1, while that of THg was 0.35 (range: 0.22-0.55) μg·kg-1·day-1. MeHg exposure was dominated by fish intake, especially by farm-raised freshwater fish due to higher consumption of these fish. In 2011, fish intake contributed to 56% to the total MeHg exposure, followed by rice (26%). Consumption of farm-raised fish reduced human exposure to MeHg by 33%. On the other hand, interregional food trading increased MeHg exposure of the Chinese population, as a whole, by 7.6%. The international and interprovincial food trades contributed to 5.1% and 22% of MeHg intake, respectively. For the whole China, fish intake related exposure to MeHg was highest for the Eastern and Northeastern populations, while Tibetans were chronically exposed to the highest MeHg from other sources. Our findings highlight the importance of farmed fish and food trade for MeHg exposure.
Copyright © 2018 Elsevier Ltd. All rights reserved.

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Keywords:  Farmed fish; Freshwater fish; Interregional food trade; Marine fish; Methylmercury exposure; Physiologically Based Pharmacokinetic (PBPK) model

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Year:  2018        PMID: 30114623      PMCID: PMC6174094          DOI: 10.1016/j.envint.2018.08.017

Source DB:  PubMed          Journal:  Environ Int        ISSN: 0160-4120            Impact factor:   9.621


  76 in total

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Authors:  Langbo Ou; Huanhuan Wang; Cen Chen; Long Chen; Wei Zhang; Xuejun Wang
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Authors:  G Carrier; M Bouchard; R C Brunet; M Caza
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Authors:  H J Clewell; J M Gearhart; P R Gentry; T R Covington; C B VanLandingham; K S Crump; A M Shipp
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2.  Traditional Tibetan Medicine Induced High Methylmercury Exposure Level and Environmental Mercury Burden in Tibet, China.

Authors:  Maodian Liu; Yipeng He; Zofia Baumann; Chenghao Yu; Shidong Ge; Xuejun Sun; Menghan Cheng; Huizhong Shen; Robert P Mason; Long Chen; Qianggong Zhang; Xuejun Wang
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4.  Trans-provincial health impacts of atmospheric mercury emissions in China.

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5.  Rice life cycle-based global mercury biotransport and human methylmercury exposure.

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7.  Sub-Chronic Effects of Slight PAH- and PCB-Contaminated Mesocosms in Paracentrotus lividus Lmk: A Multi-Endpoint Approach and De Novo Transcriptomic.

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