Micro- and nanoplastic exposure, immune cell activation, and lung function in young adults

Publication date

2026-05-07

Authors

Durkin, Amanda M.
Skrabanja, Tim L.P.
Gehring, UlrikeORCID 0000-0003-3612-5780ISNI 0000000097926870
Zou, RunyuORCID 0000-0001-7385-9498ISNI 000000051267136X
Lenters, VirissaISNI 0000000419442060
Koppelman, Gerard H.
Vonk, Judith M.
Vrisekoop, Nienke
Vermeulen, RoelORCID 0000-0003-4082-8163ISNI 0000000396780074

Editors

Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Rationale: Micro- and nanoplastics, an emerging public health concern, enter the human body through inhalation and ingestion. The potential for this exposure to induce a pro-inflammatory immune response or impair lung function remains unknown. Objectives: This study aimed to estimate exposure to micro- and nanoplastics in young adults and investigate associations with immune activation and lung function. Methods: We performed a cross-sectional study among 100 participants of the Dutch PIAMA (Prevention and Incidence of Asthma and Mite Allergy) cohort during the 25-year follow-up. Micro- and nanoplastic concentrations in blood were quantified with pyrolysis gas chromatography mass spectrometry. Innate immune cell activation was assessed with flow cytometry by measuring CD11b, CD62L, and CD10 expresssion on neutrophils as well as CD11b expression on monocytes and eosinophils. Lung function was measured by spirometry. Linear regression analysis was used to assess associations of micro- and nanoplastic exposure with selected immune markers and lung function parameters. Measurements and main results: Micro- and nanoplastics were detected in all samples with a median total concentration of 427.5 ng/mL. Higher total micro- and nanoplastic concentrations were associated with higher expression of neutrophil, eosinophil, and monocyte CD11b, and neutrophil CD10. Higher polyvinyl chloride concentrations were associated with higher expression of eosinophil CD11b. No associations were found between micro- and nanoplastic exposure and lung function. Conclusions: These findings suggest that micro- and nanoplastics may be associated with health perturbations in young adults. Further research is warranted to confirm these observations in larger, more diverse populations.

Keywords

Epidemiology, Innate immunity, Lung function, Microplastics, Environmental Chemistry, Materials Science (miscellaneous), Polymers and Plastics, Materials Chemistry, SDG 3 - Good Health and Well-being

Citation

Durkin, A M, Skrabanja, T L P, Gehring, U, Zou, R, Lenters, V, Koppelman, G H, Vonk, J M, Vrisekoop, N & Vermeulen, R 2026, 'Micro- and nanoplastic exposure, immune cell activation, and lung function in young adults', Microplastics and Nanoplastics, vol. 6, no. 1, 39, pp. 1-12. https://doi.org/10.1186/s43591-026-00189-2