Maternal Serum, Cord and Human Milk Levels of Per- and Polyfluoroalkyl Substances (PFAS), Association with Predictors and Effect on Newborn Anthropometry

Author:

Mahfouz Maya1ORCID,Harmouche-Karaki Mireille1ORCID,Matta Joseph2,Mahfouz Yara1ORCID,Salameh Pascale3,Younes Hassan4ORCID,Helou Khalil1,Finan Ramzi5,Abi-Tayeh Georges5,Meslimani Mohamad6,Moussa Ghada7,Chahrour Nada8,Osseiran Camille9,Skaiki Farouk10,Narbonne Jean-François11

Affiliation:

1. Department of Nutrition, Faculty of Pharmacy, Saint Joseph University of Beirut, Medical Sciences Campus, Damascus Road, P.O. Box 115076, Riad Solh Beirut 1107 2180, Lebanon

2. Industrial Research Institute, Lebanese University Campus, Hadath Baabda P.O. Box 112806, Lebanon

3. School of Medicine, Lebanese American University, Byblos 1102 2801, Lebanon

4. Institut Polytechnique UniLaSalle, Collège Santé, Equipe PANASH, Membre de l’ULR 7519, Université d’Artois, 19 Rue Pierre Waguet, 60026 Beauvais, France

5. Hotel-Dieu de France, Saint Joseph University of Beirut Hospital, Blvd Alfred Naccache, Beirut P.O. Box 166830, Lebanon

6. General Management, Chtoura Hospital, Beqaa, Lebanon

7. Department of Obstetrics and Gynecology, Chtoura Hospital, Beqaa, Lebanon

8. Department of Obstetrics and Gynecology, SRH University Hospital, Nabatieh, Lebanon

9. Department of Obstetrics and Gynecology, Kassab Hospital, Saida, Lebanon

10. Department of Molecular Biology, General Management, Al Karim Medical Laboratories, Saida, Lebanon

11. Laboratoire de Physico-Toxico Chimie des Systèmes Naturels, University of Bordeaux, CEDEX, 33405 Talence France

Abstract

Background: The understanding of per- and polyfluoroalkyl substances (PFAS) health effects is rapidly advancing among critical populations. Therefore, the objective of this study was to assess PFAS serum levels among Lebanese pregnant women, cord serum and human milk levels, their determinants, and effects on newborn anthropometry. Methods: We measured concentrations of six PFAS (PFHpA, PFOA, PFHxS, PFOS, PFNA and PFDA) using liquid chromatography MS/MS for 419 participants, of which 269 had sociodemographic, anthropometric, environmental and dietary information. Results: The percentage of detection for PFHpA, PFOA, PFHxS and PFOS was 36.3–37.7%. PFOA and PFOS levels (95th percentile) were higher than HBM-I and HBM-II values. While PFAS were not detected in cord serum, five compounds were detected in human milk. Multivariate regression showed that fish/shellfish consumption, vicinity to illegal incineration and higher educational level were associated with an almost twice higher risk of elevated PFHpA, PFOA, PFHxS and PFOS serum levels. Higher PFAS levels in human milk were observed with higher eggs and dairy products consumption, in addition to tap water (preliminary findings). Higher PFHpA was significantly associated with lower newborn weight-for-length Z-score at birth. Conclusions: Findings establish the need for further studies, and urgent action to reduce exposure among subgroups with higher PFAS levels.

Funder

research council of Saint Joseph University of Beirut, Lebanon

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

Reference80 articles.

1. Langenbach, B., and Wilson, M. (2021). Per- and Polyfluoroalkyl Substances (PFAS): Significance and Considerations within the Regulatory Framework of the USA. Int. J. Environ. Res. Public Health, 18.

2. (2021, June 14). ATSDR PFAS Chemicals Overview—What Are PFAS, Available online: https://www.atsdr.cdc.gov/pfas/health-effects/overview.html.

3. (2021, June 14). ATSDR PFAS Chemical Exposure—How Can I Be Exposed, Available online: https://www.atsdr.cdc.gov/pfas/health-effects/exposure.html.

4. (2021, June 14). ATSDR Toxicological Guide for Perfluoroalkyls 2020, Available online: https://www.atsdr.cdc.gov/toxguides/toxguide-200.pdf.

5. PFAS Exposure Pathways for Humans and Wildlife: A Synthesis of Current Knowledge and Key Gaps in Understanding;Armitage;Environ. Toxicol. Chem.,2021

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