Khan_2015_J.Trace.Elem.Med.Biol_31_53

Reference

Title : Hesperidin ameliorates heavy metal induced toxicity mediated by oxidative stress in brain of Wistar rats - Khan_2015_J.Trace.Elem.Med.Biol_31_53
Author(s) : Khan MH , Parvez S
Ref : J Trace Elem Med Biol , 31 :53 , 2015
Abstract :

Cadmium (Cd) induces neurotoxicity owing to its highly deleterious capacity to cross the blood brain barrier (BBB). Recent studies have provided insights on antioxidant properties of bioflavonoids which have emerged as potential therapeutic and nutraceutical agents. The aim of our study was to examine the hypothesis that hesperidin (HP) ameliorates oxidative stress and may have mitigatory effects in the extent of heavy metal-induced neurotoxicity. Cd (3mg/kg body weight) was administered subcutaneously for 21 days while HP (40mg/kg body weight) was administered orally once every day. The results of the current investigation demonstrate significant elevated levels of oxidative stress markers such as lipid peroxidation (LPO) and protein carbonyl (PC) along with significant depletion in the activity of non-enzymatic antioxidants like glutathione (GSH) and non-protein thiol (NP-SH) and enzymatic antioxidants in the Cd treated rats' brain. Activity of neurotoxicity biomarkers such as acetylcholinesterase (AchE), monoamine oxidase (MAO) and total ATPase were also altered significantly and HP treatment significantly attenuated the altered levels of oxidative stress and neurotoxicity biomarkers while salvaging the antioxidant sentinels of cells to near normal levels thus exhibiting potent antioxidant and neuroprotective effects on the brain tissue against oxidative damage in Cd treated rodent model.

PubMedSearch : Khan_2015_J.Trace.Elem.Med.Biol_31_53
PubMedID: 26004892

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Citations formats

Khan MH, Parvez S (2015)
Hesperidin ameliorates heavy metal induced toxicity mediated by oxidative stress in brain of Wistar rats
J Trace Elem Med Biol 31 :53

Khan MH, Parvez S (2015)
J Trace Elem Med Biol 31 :53