Microplastics and Oxidative Stress-Current Problems and Prospects.
Kornelia Kadac-CzapskaJustyna OśkoEliza StarzMałgorzata GrembeckaPublished in: Antioxidants (Basel, Switzerland) (2024)
Microplastics (MPs) are plastic particles between 0.1 and 5000 µm in size that have attracted considerable attention from the scientific community and the general public, as they threaten the environment. Microplastics contribute to various harmful effects, including lipid peroxidation, DNA damage, activation of mitogen-activated protein kinase pathways, cell membrane breakages, mitochondrial dysfunction, lysosomal defects, inflammation, and apoptosis. They affect cells, tissues, organs, and overall health, potentially contributing to conditions like cancer and cardiovascular disease. They pose a significant danger due to their widespread occurrence in food. In recent years, information has emerged indicating that MPs can cause oxidative stress (OS), a known factor in accelerating the aging of organisms. This comprehensive evaluation exposed notable variability in the reported connection between MPs and OS. This work aims to provide a critical review of whether the harmfulness of plastic particles that constitute environmental contaminants may result from OS through a comprehensive analysis of recent research and existing scientific literature, as well as an assessment of the characteristics of MPs causing OS. Additionally, the article covers the analytical methodology used in this field. The conclusions of this review point to the necessity for further research into the effects of MPs on OS.
Keyphrases
- oxidative stress
- dna damage
- induced apoptosis
- human health
- mental health
- cardiovascular disease
- healthcare
- risk assessment
- diabetic rats
- ischemia reperfusion injury
- public health
- systematic review
- gene expression
- health information
- papillary thyroid
- working memory
- dna repair
- climate change
- mass spectrometry
- fatty acid
- tyrosine kinase
- social media
- coronary artery disease
- cell proliferation
- electronic health record
- cardiovascular risk factors
- health promotion
- lymph node metastasis
- life cycle