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Avermectin exposure induces apoptosis in King pigeon brain neurons
Authors:Shu Li  Ming Li  Yali Cui  Xiansong Wang
Institution:1. College of Veterinary Medicine, Northeast Agricultural University, No. 59 Mucai Street, Xiangfang District, Harbin 150030, China;2. School of Life Science, Daqing Normal College, Xibin Road, Ranghulu District, Daqing 163712, China
Abstract:The effect of avermectin was studied on King pigeon brain nerve cells by cytotoxicity 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide, MTT] and apoptosis acridine orange/ethidium bromide (AO/EB) assay, transmission electron microscope (TEM) evaluation, measurement of mitochondrial membrane potential (Δψm), phosphatidylserine (PS) exposure, caspases activities, DNA fragmentation, reactive oxygen species (ROS) and caspase-3 mRNA expression] within the 2.5–10 μg L−1 concentration-range. The results revealed that within the concentrations of 2.5–10 μg L−1, avermectin showed obvious cytotoxicity and induced apoptosis in a dose-dependent manner to neurons of King pigeon in vitro. Cell viability were 99.93 ± 8.52%, 82.02 ± 4.99% and 78.23 ± 5.67% after 24 h of treatment with avermectin at the concentrations of 0, 2.5 and 5 μg L−1, which decreased to 56.36 ± 2.17% of 10 μg L−1. Treated cells showed typical apoptosis morphological changes including cytoplasmic vacuolation, chromatin condensation, unclear nuclear membrane and decreased/swollen mitochondria. Typical biochemical hallmarks of apoptosis including Δψm loss, PS exposure, activations of caspase-3, caspase-8 and caspase-9, DNA fragmentation were observed too. Moreover, the levels of ROS in the avermectin treatment groups increased significantly compared to control group. Furthermore, the caspase-3 mRNA levels increased significantly following AVM treatment. In conclusion, our experimental results show that avermectin has cytotoxicity to brain neurons of King pigeon in vitro and the mechanism of neurotoxicity induced by avermectin is closely related to apoptosis.
Keywords:AVM  avermectin  ABM  abamectin  IVM  ivermectin  DOR  doramectin  CO2  carbon dioxide  DMEM  Dulbecco&rsquo  s modified Eagle&rsquo  s medium  DMSO  dimethyl sulfoxide  PI  propidium iodide  ROS  reactive oxygen species  PNA  paranitroaniline  AO/EB  acridine orange/ethidium bromide  PBS  phosphate buffered saline  MTT  3-(4  5-dimethylthiazol-2-yl)-2  5-diphenyl-tetrazolium bromide  DCFH-DA  2  7-dichlorodihydro fluorescein diacetate  ANOVA  analysis of variance  MPT  mitochondrial permeability transition  FGF 2  fibroblast growth factor 2  GSH  glutathione  TCDD  2  3  7  8-tetrachlorodibenzo-p-dioxin  SOD  superoxide dismutase  CAT  catalase  GPX  glutathione peroxidase  GR  glutathione reductase  GABA  gamma-aminobutyric acid  TEM  transmission electron microscope  Δψm  mitochondrial membrane potential  PS  phosphatidylserine  FBS  fetal bovine serum  Rh 123  rhodamine 123  FITC  fluorescein isothiocyanate  PD  Parkinson&rsquo  s  AD  Alzheimer&rsquo  s disease  HD  Huntington disease
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