Toxicity of microplastics and nanoplastics: invisible killers of female fertility and offspring health
Токсичность микропластика и нанопластика: невидимые убийцы женской фертильности и здоровья потомства
2023-08-28
SCID: 54.1/5q3um26s
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co-exposure with pollutantsfemale reproductive toxicitymicroplasticsnanoplasticstransgenerational developmental disorders
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Abstract (AI)
Microplastics (MPs) and nanoplastics (NPs) are emergent pollutants, which have sparked widespread concern. They can infiltrate the body via ingestion, inhalation, and cutaneous contact. As such, there is a general worry that MPs/NPs may have an impact on human health in addition to the environmental issues they engender. The threat of MPs/NPs to the liver, gastrointestinal system, and inflammatory levels have been thoroughly documented in the previous research. With the detection of MPs/NPs in fetal compartment and the prevalence of infertility, an increasing number of studies have put an emphasis on their reproductive toxicity in female. Moreover, MPs/NPs have the potential to interact with other contaminants, thus enhancing or diminishing the combined toxicity. This review summarizes the deleterious effects of MPs/NPs and co-exposure with other pollutants on female throughout the reproduction period of various species, spanning from reproductive failure to cross-generational developmental disorders in progenies. Although these impacts may not be directly extrapolated to humans, they do provide a framework for evaluating the potential mechanisms underlying the reproductive toxicity of MPs/NPs.
Key Findings
1
Across species, exposure during reproduction is associated with female reproductive failure and developmental disorders in offspring across generations.
2
Animal and cross-species evidence provides a framework for investigating mechanisms of reproductive toxicity, although findings cannot be directly extrapolated to humans.
3
Detection of microplastics and nanoplastics in fetal compartments has intensified research into their reproductive toxicity in females.
4
Microplastics and nanoplastics can enter organisms through ingestion, inhalation, and dermal contact, raising concerns about human health effects.
5
Microplastics and nanoplastics can interact with other contaminants, potentially enhancing or reducing combined toxicity.
Research Object
Female organisms and their offspring exposed to microplastics and nanoplastics, including co-exposure with other pollutants, throughout the reproduction period
Research Subject
Reproductive toxicity and associated cross-generational developmental disorders, including reproductive failure and potential underlying mechanisms
Publication Details
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2023-08-28
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