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Showing 2 results for Dabidi Roshan V

Hosseinzadeh S (msc), Dabidi Roshan V (phd),
Volume 13, Issue 2 (7-2011)
Abstract

Background and Objective: Lead threaten living creature’s life as air pollutant and causes several diseases such as degenerative disease of nervous system. This research was conducted to determine the effect of Curcumin on BDNF changes and oxidative/antioxidative process in rat’s hippocampus which exposed to Lead acetate.

Materials and Methods: In this experimental study, 40 male Wistar rats were randomly assigned to four groups of ten: Base, Sham(control), lead and Curcumin+Lead. lead and Curcumin+Lead groups received 20 mg/kg lead acetate and Curcumin+Lead group also received 30 mg/kg Curcumin, peritoneally for 8 weeks (3 days in weeks). MDA (oxidative stress biomarker) and TAC (total antioxidative capacity) levels were measured by TBARS and FRAP methods, respectively, and hippocampus BDNF level was measured by ELISA method in rat hippocampus region. Data was analyzed by one-way ANOVA test and Tukey at P<0.05 level.

Results: Injection of lead acetate significantly increased MDA, non-significantly decreased hippocampus BDNF and significantly decreased TAC levels in the Lead group compared with control groups. On the other hand, curcumin administration led to non significantly decreased MDA, nonsignificantly increased BDNF and significantly increased TAC levels compared with other groups (P<0.05).

Conclusion: This study showed that Curcumin adminstration in long term lead acetate-treated male Wistar Rats did not increased BDNF of hippocampus, but it prevent the reduction of BNDF due to lead-intoxification.


Habibian M, Dabidi Roshan V, Moosavi Sj, Mahmoody Sa,
Volume 15, Issue 3 (10-2013)
Abstract

Background and Objective: Oxidative damage associated with the presence of Lead in the brain has been proposed as one possible molecular mechanism involved in Lead toxicity. Aerobic exercise is known to protect the brain through a cascade of molecular and cellular processes. The purpose of this study was to investigate the effect of 8 week aerobic training on the brain-derived neurotrophic factor (BDNF) and malondialdehyde (MDA) levels in rat's cerebellum exposed to Lead acetate. Materials and Methods: In this experimental study, 40 Male Wistar rats were randomly allocated into four groups: sedentary base, sham (30 mg/kg of ethyloleate), Lead and exercise+Lead (20 mg/kg Lead acetate, intraperitoneally). The exercise program consisted of progressive running training on the treadmill for 15 to 22 m/min, 25 to 64 min/day, and 5 days/week for 8 weeks. BDNF and MDA levels were measured by ELISA and TBARS methods, respectively. Results: Chronic Lead acetate administration enhanced significantly (P<0.05) cerebellar MDA levels in rats compare to base and sham groups but had no effect on BDNF levels. Cerebellar MDA significantly was reduced and BDNF non significantly was increased in Lead acetate+ training group. Conclusion: Regular aerobic exercise with moderate intense may exert role neuroprotective against Lead-induced cerebellar injury by down-regulating oxidative stress and promotes brain health through increases in BDNF.

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مجله دانشگاه علوم پزشکی گرگان Journal of Gorgan University of Medical Sciences
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