Transcriptomic Profiling the Effects of Airway Exposure of Zinc Oxide and Silver Nanoparticles in Mouse Lungs

Author:

Zhao Lan1,Wang Shuyuan12ORCID,Ilves Marit1ORCID,Lehtonen Sanna34ORCID,Saikko Leena3,El-Nezami Hani2ORCID,Alenius Harri15ORCID,Karisola Piia1ORCID

Affiliation:

1. Human Microbiome Research (HUMI), Medical Faculty, University of Helsinki, 00014 Helsinki, Finland

2. School of Biological Sciences, University of Hong Kong, Hong Kong, China

3. Department of Pathology, Medical Faculty, University of Helsinki, 00014 Helsinki, Finland

4. Research Program for Clinical and Molecular Metabolism, Medical Faculty, University of Helsinki, 00014 Helsinki, Finland

5. Institute of Environmental Medicine (IMM), Karolinska Institutet, 171 77 Stockholm, Sweden

Abstract

Consumers and manufacturers are exposed to nanosized zinc oxide (nZnO) and silver particles (nAg) via airways, but their biological effects are still not fully elucidated. To understand the immune effects, we exposed mice to 2, 10, or 50 μg of nZnO or nAg by oropharyngeal aspiration and analyzed the global gene expression profiles and immunopathological changes in the lungs after 1, 7, or 28 days. Our results show that the kinetics of responses varied in the lungs. Exposure to nZnO resulted in the highest accumulation of F4/80- and CD3-positive cells, and the largest number of differentially expressed genes (DEGs) were identified after day 1, while exposure to nAg caused peak responses at day 7. Additionally, nZnO mainly activated the innate immune responses leading to acute inflammation, whereas the nAg activated both innate and adaptive immune pathways, with long-lasting effects. This kinetic-profiling study provides an important data source to understand the cellular and molecular processes underlying nZnO- and nAg-induced transcriptomic changes, which lead to the characterization of the corresponding biological and toxicological effects of nZnO and nAg in the lungs. These findings could improve science-based hazard and risk assessment and the development of safe applications of engineered nanomaterials (ENMs), e.g., in biomedical applications.

Funder

Academy of Finland

China Scholarship Council

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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