A Common Feature of Pesticides: Oxidative Stress—The Role of Oxidative Stress in Pesticide‐Induced Toxicity
Общая особенность пестицидов: окислительный стресс — роль окислительного стресса в токсичности, индуцированной пестицидами
2022-01-01
SCID: 54.1/ewm6qg3c
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mitochondrial-induced apoptosisoxidative stresspesticide-induced toxicityreactive nitrogen species (RNS)reactive oxygen species (ROS)
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Abstract (AI)
Pesticides are important chemicals or biological agents that deter or kill pests. The use of pesticides has continued to increase as it is still considered the most effective method to reduce pests and increase crop growth. However, pesticides have other consequences, including potential toxicity to humans and wildlife. Pesticides have been associated with increased risk of cardiovascular disease, cancer, and birth defects. Labels on pesticides also suggest limiting exposure to these hazardous chemicals. Based on experimental evidence, various types of pesticides all seem to have a common effect, the induction of oxidative stress in different cell types and animal models. Pesticide‐induced oxidative stress is caused by both reactive oxygen species (ROS) and reactive nitrogen species (RNS), which are associated with several diseases including cancer, inflammation, and cardiovascular and neurodegenerative diseases. ROS and RNS can activate at least five independent signaling pathways including mitochondrial‐induced apoptosis. Limited in vitro studies also suggest that exogenous antioxidants can reduce or prevent the deleterious effects of pesticides.
Key Findings
1
Across diverse pesticide types, experimental evidence identifies induction of oxidative stress as a common effect in multiple cell types and animal models.
2
Limited in vitro evidence indicates that exogenous antioxidants may reduce or prevent pesticide-induced deleterious effects.
3
Pesticide-induced oxidative stress involves both reactive oxygen species (ROS) and reactive nitrogen species (RNS).
4
ROS and RNS can activate at least five independent signaling pathways, including mitochondrial-induced apoptosis.
5
ROS and RNS generated by pesticide exposure are linked to signaling pathways associated with cancer, inflammation, cardiovascular disease, and neurodegenerative disease.
Research Object
pesticides and their toxic effects in different cell types and animal models
Research Subject
pesticide-induced oxidative stress mediated by reactive oxygen species (ROS) and reactive nitrogen species (RNS), including its associated signaling pathways and toxic consequences
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2022-01-01
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