Recent insights into uptake, toxicity, and molecular targets of microplastics and nanoplastics relevant to human health impacts
Современные представления о поглощении, токсичности и молекулярных мишенях микро- и нанопластика, имеющих значение для воздействия на здоровье человека
2023-01-27
SCID: 54.1/x4czkdv2
Discuss with AI
NRF2 signalingWnt/β-catenin signalingendocytosismicroplastics and nanoplasticsreactive oxygen species
Figures from the paper
Abstract (AI)
Microplastics and nanoplastics (M-NPLs) are ubiquitous environmentally, chemically, or mechanically degraded plastic particles. Humans are exposed to M-NPLs of various sizes and types through inhalation of contaminated air, ingestion of contaminated water and food, and other routes. It is estimated that Americans ingest tens of thousands to millions of M-NPLs particles yearly, depending on socioeconomic status, age, and gender. M-NPLs have spurred interest in toxicology because of their abundance, ubiquitous nature, and ability to penetrate bodily and cellular barriers, producing toxicological effects in cells, tissues, organs, and organ systems. The present review paper highlights: (1) The current knowledge in understanding the detrimental effects of M-NPLs in mouse models and human cell lines, (2) cellular organelle localization of M-NPLs, and the underlying uptake mechanisms focusing on endocytosis, (3) the possible pathways involved in M-NPLs toxicity, particularly reactive oxygen species, nuclear factor-erythroid factor 2-related factor 2 (NRF2), Wnt/β-Catenin, Nuclear Factor Kappa B (NF-kB)-regulated inflammation, apoptosis, and autophagy signaling. We also highlight the potential role of M-NPLs in increasing the incubation time, spread, and transport of the COVID-19 virus. Finally, we discuss the future prospects in this field.
Key Findings
1
Estimated annual ingestion in Americans ranges from tens of thousands to millions of particles, varying by socioeconomic status, age, and gender.
2
M-NPLs can penetrate bodily and cellular barriers and produce toxicological effects in cells, tissues, organs, and organ systems.
3
M-NPLs may increase COVID-19 virus incubation time, spread, and transport, although the review identifies this as a potential role.
4
Microplastics and nanoplastics are ubiquitous, and humans are exposed through inhalation, ingestion, and other routes.
5
Potential toxicity pathways include reactive oxygen species, NRF2, Wnt/β-catenin, NF-κB-mediated inflammation, apoptosis, and autophagy.
6
Their cellular uptake involves endocytosis, with particles localizing to cellular organelles through mechanisms reviewed in mouse models and human cell lines.
Research Object
Microplastics and nanoplastics (M-NPLs) in human exposure and biological systems
Research Subject
Uptake, cellular and organelle localization, toxicity, molecular signaling targets, and potential effects on COVID-19 virus incubation, spread, and transport
Publication Details
Publication Date
2023-01-27
Journal
Publisher
ISSN
Cited by
250
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest