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1.
Drug Chem Toxicol ; 42(2): 203-209, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30449198

ABSTRACT

The aim of this study was to investigate neurophysiological responses in rainbow trout brain tissue exposed to natural/botanical pesticides. Fish were exposed to botanical and synthetic pesticides over a 21-day period. At the end of the treatment period, oxidative DNA damage (indicated by 8-OHdG (8-hydroxy-2'-deoxyguanosine), AChE activity (acetylcholinesterase) and transcriptional parameters (gpx (glutathione peroxidase), sod (superoxide dismutase), cat (catalase), HSP70 (heat shock protein 70) and CYP1A (cytochromes P450)) was investigated in control and application groups. Our results indicated that brain AChE activities decreased very significantly in fish treated with both insecticide types when compared with control (p < 0.05). 8-OHdG activity increased in a dose/time-dependent situation in the brain tissues of Oncorhynchus mykiss (p < 0.05). In addition, with regards to gene expression, gpx sod and, cat expressions were down-regulated, whereas CYP1A and HSP70 gene expression were up-regulated in fish treated with both insecticides when compared to the control group (p < 0.05). The data for this study suggests that bio-pesticides can cause neurophysiological changes in fish brain tissue.


Subject(s)
Biological Control Agents/toxicity , Brain/drug effects , Oncorhynchus mykiss , 8-Hydroxy-2'-Deoxyguanosine , Acetylcholinesterase/metabolism , Animals , Brain/enzymology , Brain/metabolism , Brain/physiology , Brain Chemistry/drug effects , Catalase/metabolism , DNA Damage/drug effects , Deoxyguanosine/analogs & derivatives , Deoxyguanosine/analysis , Dose-Response Relationship, Drug , Glutathione Peroxidase/metabolism , HSP70 Heat-Shock Proteins/metabolism , Limonins/toxicity , Nitriles/toxicity , Oncorhynchus mykiss/physiology , Pyrethrins/toxicity , Reverse Transcriptase Polymerase Chain Reaction , Superoxide Dismutase/metabolism
2.
Int J Vitam Nutr Res ; 88(3-4): 137-143, 2018 Jun.
Article in English | MEDLINE | ID: mdl-31165688

ABSTRACT

The aim of this study was to investigate the effect of thiamine pyrophosphate (TPP), administered via sugar water, on retinal neovascularisation in rats. Animals were assigned to three groups, namely the TPP sugar-water group (TPSWG, n = 12), the control group (CG, n = 12) and the healthy group (HG, n = 12). The TPSWG was injected intraperitoneally with TPP once a day for 6 months. CG and HG rats were given distilled water in the same way. TPSWG and CG rats were left free to access an additional 0.292 mmol /ml of sugar water for 6 months. The fasting blood glucose (FBG) levels of the animals were measured monthly. After 6 months, biochemical, gene expression and histopathologic analyses were carried out in the retinal tissues removed from the animals after they were killed. The measured FBG levels were 6.96 ± 0.09 mmol/ml (p < 0.0001 vs. HG), 6.95 ± 0.06 mmol/ml (p < 0.0001 vs. HG) and 3.94 ± 0.10 mmol/ml in the CG, TPSWG and HG groups, respectively. The malondialdehyde (MDA) levels were found to be 2.82 ± 0.23 (p < 0.0001 vs. HG), 1.40 ± 0.32 (p < 0.0001 vs. HG) and 1.66 ± 0.17 in the CG, TPSWG and HG, respectively. Interleukin 1 beta (IL-1ß) gene expression was increased (3.78 ± 0.29, p < 0.0001) and total glutathione (tGSH) was decreased (1.32 ± 0.25, p < 0.0001) in the retinal tissue of CG compared with TPSWG (1.92 ± 0.29 and 3.18 ± 0.46, respectively). Increased vascularisation and oedema were observed in the retinal tissue of CG, while the retinal tissues of TPSWG and HG rats had a normal histopathological appearance. A carbohydrate-rich diet may lead to pathological changes in the retina even in nondiabetics, but this may be overcome by TPP administration.


Subject(s)
Retinal Neovascularization , Sugars/metabolism , Thiamine Pyrophosphate/pharmacology , Thiamine , Animals , Rats , Rats, Sprague-Dawley
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