4.3 Article

R-citalopram prevents the neuronal adaptive changes induced by escitalopram

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NEUROREPORT
卷 18, 期 15, 页码 1553-1556

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LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/WNR.0b013e3282f04047

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dorsal hippocampus; dorsal raphe; escitalopram; firing activity; neurogenesis; R-citalopram

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This study examined the long-term effects of the antidepressant escitaloprann on rat serotonin (5-HT) neuronal activity and hippocampal neuroplasticity. In the dorsal raphe nucleus, a 2-week treatment with escitalopram (10 mg/kg/day, subcutaneous) did not modify the firing activity of 5-HT neurons, whereas a cotreatment with R-citalopram (20mg/kg/day, subcutaneous) decreased it. In the dentate gyrus of dorsal hippocampus, escitalopram increased significantly (57%) the number of de novo cells and this was prevented by a cotreatment with R-citalopram. The present results support the role of the allosteric modulation of the 5-HT transporter in the regulation of the recovery of 5-HT neuronal activity and long-lasting hippocampal cellular plasticity induced by escitalopram, two adaptive changes presumably associated with the antidepressant response.

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