Ozkaya_2017_Arch.Physiol.Biochem__1

Reference

Title : Role of geraniol against lead acetate-mediated hepatic damage and their interaction with liver carboxylesterase activity in rats - Ozkaya_2017_Arch.Physiol.Biochem__1
Author(s) : Ozkaya A , Sahin Z , Kuzu M , Saglam YS , Ozkaraca M , Uckun M , Yologlu E , Comakli V , Demirdag R , Yologlu S
Ref : Arch Physiol Biochem , :1 , 2017
Abstract :

In this study, the effect of geraniol (50 mg/kg for 30 d), a natural antioxidant and repellent/antifeedant monoterpene, in a rat model of lead acetate-induced (500 ppm for 30 d) liver damage was evaluated. Hepatic malondialdehyde increased in the lead acetate group. Reduced glutathione unchanged, but glutathione S-transferase, glutathione reductase, as well as carboxylesterase activities decreased in geraniol, lead acetate and geraniol + lead acetate groups. 8-OhDG immunoreactivity, mononuclear cell infiltrations and hepatic lead concentration were lower in the geraniol + lead acetate group than the lead acetate group. Serum aspartate aminotransferase and alanine aminotransferase activities increased in the Pb acetate group. In conclusion, lead acetate causes oxidative and toxic damage in the liver and this effect can reduce with geraniol treatment. However, we first observed that lead acetate, as well as geraniol, can affect liver carboxylesterase activity.

PubMedSearch : Ozkaya_2017_Arch.Physiol.Biochem__1
PubMedID: 28817314

Related information

Citations formats

Ozkaya A, Sahin Z, Kuzu M, Saglam YS, Ozkaraca M, Uckun M, Yologlu E, Comakli V, Demirdag R, Yologlu S (2017)
Role of geraniol against lead acetate-mediated hepatic damage and their interaction with liver carboxylesterase activity in rats
Arch Physiol Biochem :1

Ozkaya A, Sahin Z, Kuzu M, Saglam YS, Ozkaraca M, Uckun M, Yologlu E, Comakli V, Demirdag R, Yologlu S (2017)
Arch Physiol Biochem :1