Amelioration of Fenitrothion (cas 122-14-5) induced oxidative DNA damage and inactivation of caspase-3 in the brain and spleen tissues of male rats by N-acetylcysteine
-
Add time:09/04/2019 Source:sciencedirect.com
N-acetylcysteine (NAC) has largely been used as an effective chemo- protective agent owing to their beneficial effect in restoring several physiological parameters and relieving oxidative stress. Interestingly, it has been suggested that NAC mechanisms of action extend beyond being a precursor to the antioxidant glutathione and that they may involve several neurotropic and inflammatory pathways. Exposure to Fenitrothion (cas 122-14-5), an organophosphorus insecticide, promotes oxidative stress and induces several deleterious changes in the immune response and various tissues including cerebrum and spleen. The main objective of our study was to investigate ameliorative efficacy of N-acetylcysteine for immunological and neurological alterations and oxidative DNA damage induced by fenitrothion toxicity in cerebrum and spleen tissues of male rats. Our results revealed that oral exposure to fenitrothion for 30 days caused a reduction in the erythrocyte count in addition to leukocytosis, lymphocytosis, and neutrophilia. Also, this route of administration increased the serum levels of LDH, TNF-α, and IL-2 with reduction in serum immunoglobulins (IgG & IgM) concentrations. Furthermore, a significant downregulation in the antioxidant markers (GSH & SOD) with an elevation of free radical (MDA) levels were noticed. Regarding the brain, fenitrothion administration inhibited AchE activity and increased brain GABA, serotonin and dopamine levels. Moreover, it induced an elevation in oxidative DNA damage indicated by 8-hydroxy 2-deoxyguanosine (8OH2dG) and mRNA expression of pro-apoptotic genes, including Bax, and p53, but Bcl-2 expression was reduced. N-acetylcysteine co-treatment restored the normal physiological tone in most of these parameters. Immunostaining for GFAP and Caspase-3 markers in the brain and spleen tissues were increased respectively. In conclusion, N-acetylcysteine supplementation has an ameliorative effect against immunotoxic, neurotoxic and oxidative DNA damage induced by fenitrothion exposure.
We also recommend Trading Suppliers and Manufacturers of Fenitrothion (cas 122-14-5). Pls Click Website Link as below: cas 122-14-5 suppliers
Prev:Sulfadimethoxine (cas 122-11-2) and sulfaguanidine: Their sorption potential on natural soils
Next:Preparation and application of grafted β‑cyclodextrin/thermo-sensitive polymer onto modified Fe3O4@SiO2 nano-particles for Fenitrothion (cas 122-14-5) elimination from aqueous solution) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Novel electrochemical synthesis of cellulose microfiber entrapped reduced graphene oxide: A sensitive electrochemical assay for detection of Fenitrothion (cas 122-14-5) organophosphorus pesticide09/10/2019
- Electrochemical enzymatic Fenitrothion (cas 122-14-5) sensor based on a tyrosinase/poly(2-hydroxybenzamide)-modified graphite electrode09/09/2019
- Sensitive determination of Fenitrothion (cas 122-14-5) in water samples based on an electrochemical sensor layered reduced graphene oxide, molybdenum sulfide (MoS2)-Au and zirconia films09/08/2019
- Protective effect of N-acetylcysteine on Fenitrothion (cas 122-14-5)-induced toxicity: The antioxidant status and metabolizing enzymes expression in rats09/07/2019
- Simultaneous detection of 2, 4-dichlorophenoxyacetic acid and Fenitrothion (cas 122-14-5) through lanthanide doped β-NaYF4 upconversion nanoparticles with different emitting light colors09/06/2019
- Preparation and application of grafted β‑cyclodextrin/thermo-sensitive polymer onto modified Fe3O4@SiO2 nano-particles for Fenitrothion (cas 122-14-5) elimination from aqueous solution09/05/2019


