In Vitro Neurotoxicity of Flumethrin Pyrethroid on SH-SY5Y Neuroblastoma Cells: Apoptosis Associated with Oxidative Stress.
Luis Barrios-ArpiYurie AriasBernardo Lopez-TorresMariella Ramos-GonzalezGiulio TicliEnnio ProsperiJosé-Luis RodríguezPublished in: Toxics (2022)
Pyrethroids are neurotoxicants for animals, showing a pattern of toxic action on the nervous system. Flumethrin, a synthetic pyrethroid, is used against ectoparasites in domestic animals, plants, and for public health. This compound has been shown to be highly toxic to bees, while its effects on other animals have been less investigated. However, in vitro studies to evaluate cytotoxicity are scarce, and the mechanisms associated with this effect at the molecular level are still unknown. This study aimed to investigate the oxidative stress and cell death induction in SH-SY5Y neuroblastoma cells in response to flumethrin exposure (1-1000 µM). Flumethrin induced a significant cytotoxic effect, as evaluated by MTT and LDH leakage assays, and produced an increase in the biomarkers of oxidative stress as reactive oxygen species and nitric oxide (ROS and NO) generation, malondialdehyde (MDA) concentration, and caspase-3 activity. In addition, flumethrin significantly increased apoptosis-related gene expressions (Bax, Casp-3, BNIP3, APAF1, and AKT1) and oxidative stress and antioxidative (NFκB and SOD2) mediators. The results demonstrated, by biochemical and gene expression assays, that flumethrin induces oxidative stress and apoptosis, which could cause DNA damage. Detailed knowledge obtained about these molecular changes could provide the basis for elucidating the molecular mechanisms of flumethrin-induced neurotoxicity.
Keyphrases
- oxidative stress
- induced apoptosis
- diabetic rats
- cell cycle arrest
- cell death
- dna damage
- endoplasmic reticulum stress
- public health
- gene expression
- ischemia reperfusion injury
- signaling pathway
- nitric oxide
- reactive oxygen species
- pi k akt
- dna repair
- healthcare
- heat shock
- drug induced
- genome wide
- high throughput
- dna methylation
- zika virus
- hydrogen peroxide
- inflammatory response
- copy number
- high resolution
- amyotrophic lateral sclerosis
- anti inflammatory