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Lennqvist, Torbjörn
Publications (2 of 2) Show all publications
Augustsson, A., Lennqvist, T., Osbeck, C. M. G., Tibblin, P., Glynn, A., Nguyen, M. A., . . . Vestergren, R. (2021). Consumption of freshwater fish: A variable but significant risk factor for PFOS exposure. Environmental Research, 192, 1-9, Article ID 110284.
Open this publication in new window or tab >>Consumption of freshwater fish: A variable but significant risk factor for PFOS exposure
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2021 (English)In: Environmental Research, ISSN 0013-9351, E-ISSN 1096-0953, Vol. 192, p. 1-9, article id 110284Article in journal (Refereed) Published
Abstract [en]

PFOS, PFOA, PFNA and PFHxS are the PFAS substances that currently contribute most to human exposure, and in 2020 the European Food Safety Authority (EFSA) presented a draft opinion on a tolerable intake of 8 ng/kg/week for the sum of these four substances (equaling 0.42 mu g/kg if expressed as an annual dose). Diet is usually the dominating exposure pathway, and in particular the intake of PFOS has been shown to be strongly related to the consumption of fish and seafood. Those who eat freshwater fish may be especially at risk since freshwater and its biota typically display higher PFOS concentrations than marine systems. In this study, we estimated the range in PFOS intake among average Swedish "normal" and "high" consumers of freshwater fish. By average we mean persons of average weight who eat average-sized portions. The "normal consumers" were assumed to eat freshwater fish 3 times per year, and the "high consumers" once a week. Under these assumptions, the yearly tolerable intake for "normal" and "high" consumers is reached when the PFOS concentrations in fish equals 59 and 3.4 mu g per kg fish meat. For this study, PFOS concentrations in the muscle tissue of edible-sized perch, pike and pikeperch were retrieved from three different Swedish datasets, covering both rural and urban regions and a total of 78 different inland waters. Mean PFOS concentrations in fish from these sites varied from 0.3 to 750 mu g/kg. From the available data, the annual min-max dietary PFOS intake for male "normal consumers" was found to be in the range 0.0021-5.4 mu g/kg/yr for the evaluated scenarios, with median values of 0.02-0.16 mu g/kg/yr. For male "high consumers", the total intake range was estimated to be 0.04-93 mu g/kg/yr, with median values being 0.27-1.6 mu g/kg/yr. For women, the exposure estimates were slightly lower, about 79% of the exposure in men. Despite highly variable PFOS concentrations in fish from different sites, we conclude that the three most commonly consumed freshwater species in Sweden constitute an important source for the total annual intake even for people who eat this kind of fish only a few times per year. The analyses of PFOA, PFNA and PFHxS showed values which were all below detection limit, and their contribution to the total PFAS intake via freshwater fish consumption is negligible in comparison to PFOS.

Place, publisher, year, edition, pages
Elsevier, 2021
Keywords
PFOS, Perfluorinated compounds, Dietary intake, Human exposure, Freshwater fish, Food contamination
National Category
Environmental Sciences
Research subject
Natural Science, Environmental Science
Identifiers
urn:nbn:se:lnu:diva-100598 (URN)10.1016/j.envres.2020.110284 (DOI)000600289300008 ()33022218 (PubMedID)2-s2.0-85094584669 (Scopus ID)
Projects
EcoChange
Available from: 2021-01-27 Created: 2021-01-27 Last updated: 2026-05-06Bibliographically approved
Hefni, M. E., Bergström, M., Lennqvist, T., Fagerström, C. & Witthöft, C. M. (2021). Simultaneous quantification of trimethylamine N-oxide, trimethylamine, choline, betaine, creatinine, and propionyl-, acetyl-, and L-carnitine in clinical and food samples using HILIC-LC-MS. Analytical and Bioanalytical Chemistry, 413, 5349-5360
Open this publication in new window or tab >>Simultaneous quantification of trimethylamine N-oxide, trimethylamine, choline, betaine, creatinine, and propionyl-, acetyl-, and L-carnitine in clinical and food samples using HILIC-LC-MS
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2021 (English)In: Analytical and Bioanalytical Chemistry, ISSN 1618-2642, E-ISSN 1618-2650, Vol. 413, p. 5349-5360Article in journal (Refereed) Published
Abstract [en]

Trimethylamine-N-oxide (TMAO), a microbiome-derived metabolite from the metabolism of choline, betaine, and carnitines, is associated to adverse cardiovascular outcomes. A method suitable for routine quantification of TMAO and its precursors (trimethylamine (TMA), choline, betaine, creatinine, and propionyl-, acetyl-, and l-carnitine) in clinical and food samples has been developed based on LC-MS. TMA was successfully derivatized using iodoacetonitrile, and no cross-reactions with TMAO or the other methylamines were detected. Extraction from clinical samples (plasma and urine) was performed after protein precipitation using acetonitrile:methanol. For food samples (meatballs and eggs), water extraction was shown to be sufficient, but acid hydrolysis was required to release bound choline before extraction. Baseline separation of the methylamines was achieved using a neutral HILIC column and a mobile phase consisting of 25 mmol/L ammonium formate in water:ACN (30:70). Quantification was performed by MS using external calibration and isotopic labelled internal standards. The assay proved suitable for both clinical and food samples and was linear from approximate to 0.1 up to 200 mu mol/L for all methylamines except for TMA and TMAO, which were linear up to 100 mu mol/L. Recoveries were 91-107% in clinical samples and 76-98% in food samples. The interday (n=8, four duplicate analysis) CVs were below 9% for all metabolites in clinical and food samples. The method was applied successfully to determine the methylamine concentrations in plasma and urine from the subjects participating in an intervention trial (n=10) to determine the effect of animal food ingestion on methylamine concentrations.

Place, publisher, year, edition, pages
Springer, 2021
Keywords
Methylamines, TMAO, TMA, Clinical samples, Food samples, LCMS
National Category
Food Science Analytical Chemistry
Research subject
Natural Science, Food Science
Identifiers
urn:nbn:se:lnu:diva-106046 (URN)10.1007/s00216-021-03509-y (DOI)000673067100002 ()34258650 (PubMedID)2-s2.0-85110511280 (Scopus ID)2021 (Local ID)2021 (Archive number)2021 (OAI)
Available from: 2021-07-30 Created: 2021-07-30 Last updated: 2025-05-15Bibliographically approved
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