<p>The study aims to investigate the synergistic antioxidant effects of the phenolics present in <i>Mentha piperita (MP)</i>&#xa0;against arsenic trioxide-induced oxidative stress, biochemical alteration, and cyto-genotoxicity in the fish, <i>Channa punctatus</i>. The phenolic composition of MP estimated by HPLC–PDA analysis reveals the presence of phenolics, viz<i>.,</i> ascorbic acid (Rt = 2.763&#xa0;min.), rutin (Rt = 12.597&#xa0;min.), caffeic acid (Rt = 18.304&#xa0;min.), quercetin (Rt = 26.731&#xa0;min.), luteolin (Rt = 42.709&#xa0;min.), and hesperetin (Rt = 49.525&#xa0;min.). The experimental setup consists of four groups (G1-G4) with a density of 12 fish in each. The fishes in G1 served as the control group, whereas the fishes in G2 were exposed to 81.73&#xa0;mg/L of As<sub>2</sub>O<sub>3</sub>. Fish in group G3 were subjected to 8&#xa0;mg/L MP, whereas those in group G4 were treated to 8&#xa0;mg/L MP plus 81.73&#xa0;mg/L As<sub>2</sub>O<sub>3</sub>. The result showed a significantly (<i>p</i> &lt; 0.05) increased GOT and GPT level, increased oxidative stress markers, SOD and CAT, and induction in cyto-genotoxic markers, viz<i>.,</i> disintegrated nucleus (DN), microcyte (MC), echinocyte (EC), and nucleoplasmic bridges (NpBs). A significant (p &lt; 0.05) decreased GSH level in the arsenic-exposed group for all exposure periods was observed. However, in G4, all parameters reduced significantly (<i>p</i> &lt; 0.05) more than in G2. The results suggest that the phenolics present in MP are synergistically able to reduce arsenic-induced oxidative damages by improving antioxidant defence, thus improving fish health status.</p>

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Antioxidant activity of Mentha piperita phenolics on arsenic induced oxidative stress, biochemical alterations, and cyto-genotoxicity in fish, Channa punctatus

  • Shraddha Dwivedi,
  • Sunil P. Trivedi,
  • Kamlesh K. Yadav,
  • Manoj Kumar

摘要

The study aims to investigate the synergistic antioxidant effects of the phenolics present in Mentha piperita (MP) against arsenic trioxide-induced oxidative stress, biochemical alteration, and cyto-genotoxicity in the fish, Channa punctatus. The phenolic composition of MP estimated by HPLC–PDA analysis reveals the presence of phenolics, viz., ascorbic acid (Rt = 2.763 min.), rutin (Rt = 12.597 min.), caffeic acid (Rt = 18.304 min.), quercetin (Rt = 26.731 min.), luteolin (Rt = 42.709 min.), and hesperetin (Rt = 49.525 min.). The experimental setup consists of four groups (G1-G4) with a density of 12 fish in each. The fishes in G1 served as the control group, whereas the fishes in G2 were exposed to 81.73 mg/L of As2O3. Fish in group G3 were subjected to 8 mg/L MP, whereas those in group G4 were treated to 8 mg/L MP plus 81.73 mg/L As2O3. The result showed a significantly (p < 0.05) increased GOT and GPT level, increased oxidative stress markers, SOD and CAT, and induction in cyto-genotoxic markers, viz., disintegrated nucleus (DN), microcyte (MC), echinocyte (EC), and nucleoplasmic bridges (NpBs). A significant (p < 0.05) decreased GSH level in the arsenic-exposed group for all exposure periods was observed. However, in G4, all parameters reduced significantly (p < 0.05) more than in G2. The results suggest that the phenolics present in MP are synergistically able to reduce arsenic-induced oxidative damages by improving antioxidant defence, thus improving fish health status.