Article ID Journal Published Year Pages File Type
2494777 Neuropharmacology 2007 12 Pages PDF
Abstract

Estradiol protects against striatal dopamine terminal loss caused by the neurotoxin MPTP in mice. This effect of estradiol is thought to be mediated by an interaction with estrogen receptors (ER), of which there are two: ERα and ERβ. In the present study, the role of these two ERs in MPTP toxicity and its neuroprotection by estradiol was investigated using ER knock out mice (ERKO). MPTP (7, 9, or 11 mg/kg administered four times at 2 h intervals) caused a dose-dependent decrease in striatal dopamine and dopamine metabolite DOPAC concentrations in wild type (WT) mice. The degree of dopamine and DOPAC depletion after MPTP was greater in the ERKOα mice than WT mice, whereas the ERKOβ mice exhibited no change in MPTP sensitivity. ERKOβ mice showed a lower DA turnover than WT and ERKOα mice. WT, ERKOα and ERKOβ mice were also treated for 10 days with exogenous estradiol and on day 5 of treatment were challenged with MPTP (9 mg/kg administered four times at 2 h intervals). In the WT mice, estradiol partially prevented the MPTP-induced decrease in striatal dopamine and DOPAC concentrations. However, estradiol treatment was without significant neuroprotective effects in the ERKOα and ERKOβ mice. These results show a greater susceptibility to MPTP toxicity of ERKOα mice compared to WT and ERKOβ mice and a role for both ER receptors in striatal DA neuroprotection.

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