Atmospheric microplastic and nanoplastic: The toxicological paradigm on the cellular system
Атмосферные микропластики и нанопластики: токсикологическая парадигма на клеточном уровне
2023-05-20
SCID: 54.1/7n44kx5k
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atmospheric microplasticsatmospheric nanoplasticsinhalation toxicitynanoplastic characterizationpulmonary diseases
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Abstract (AI)
The increasing demand for plastic in our daily lives has led to global plastic pollution. The improper disposal of plastic has resulted in a massive amount of atmospheric microplastics (MPs), which has further resulted in the production of atmospheric nanoplastics (NPs). Because of its intimate relationship with the environment and human health, microplastic and nanoplastic contamination is becoming a problem. Because microplastics and nanoplastics are microscopic and light, they may penetrate deep into the human lungs. Despite several studies demonstrating the abundance of microplastics and nanoplastics in the air, the potential risks of atmospheric microplastics and nanoplastics remain unknown. Because of its small size, atmospheric nanoplastic characterization has presented significant challenges. This paper describes sampling and characterization procedures for atmospheric microplastics and nanoplastics. This study also examines the numerous harmful effects of plastic particles on human health and other species. There is a significant void in research on the toxicity of airborne microplastics and nanoplastics upon inhalation, which has significant toxicological potential in the future. Further study is needed to determine the influence of microplastic and nanoplastic on pulmonary diseases.
Key Findings
1
Atmospheric microplastics can generate nanoplastics, creating an emerging environmental and human-health concern.
2
Because of their small size and low mass, airborne microplastics and nanoplastics may penetrate deeply into human lungs.
3
Plastic particles are associated with harmful effects on human health and other species, but the specific toxicity of airborne particles remains insufficiently characterized.
4
Research is particularly limited on inhalation toxicity and the potential contribution of airborne microplastics and nanoplastics to pulmonary diseases.
5
The paper describes sampling and characterization procedures for atmospheric microplastics and nanoplastics, addressing substantial analytical challenges for nanoplastics.
Research Object
Atmospheric microplastics and nanoplastics and their effects on human and other-species cellular systems following inhalation
Research Subject
Toxicological effects and pulmonary health risks of airborne microplastics and nanoplastics, including their cellular toxicity and contribution to pulmonary diseases
Publication Details
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2023-05-20
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