-
Clinical Pharmacology: Advances and Applications
-
About Dovepress
Open access peer-reviewed scientific and medical journals.
-
Open Access
Dove Medical Press is now a member of the Open Access Initiative
-
An Author's Guide
A guide to help authors get their paper published.
-
Advocacy
Support Open Access and Dove Press
-
Reprints
Promotional Article Monitoring - further details
-
Favored Author Program
Real benefits for authors, including fast-track processing of papers.
Chronic fluoxetine treatment increases daytime melatonin synthesis in the rodent
Rapid Communication
(3012) Views (954) Full article downloads
Authors: Gillian W Reierson, Claudio A Mastronardi, Julio Licinio, et al
Published Date September 2009
Volume 2009:1(Default) Pages 1 - 6
DOI: http://dx.doi.org/10.2147/CPAA.S7157
Gillian W Reierson, Claudio A Mastronardi, Julio Licinio, Ma-Li Wong
Center on Pharmacogenomics, Department of Psychiatry and Behavioral Sciences, University of Miami Miller School of Medicine, Miami, FL, USA
Abstract: Circadian rhythm disturbances can occur as part of the clinical symptoms of major depressive disorder and have been found to resolve with antidepressant therapy. The pineal gland is relevant to circadian rhythms as it secretes the hormone melatonin following activation of the cyclic adenosine monophosphate (cAMP) signaling cascade and of arylalkylamine N-acetyltransferase (AA-NAT), the rate-limiting enzyme for its synthesis. Cyclic AMP is synthesized by adenylate cyclases (AC) and degraded by phosphodiesterases (PDEs). Little is known about the contribution of the PDE system to antidepressant-induced alterations in pineal cAMP signaling and melatonin synthesis. In the present study we used enzyme immunoassay to measure plasma melatonin levels and pineal cAMP levels and as well as quantitative real-time polymerase chain reaction to measure pineal expression of PDE, AC, and AA-NAT genes in rats chronically treated with the prototypic antidepressant fluoxetine. We found elevated melatonin synthesis with increased pineal AA-NAT gene expression and daytime plasma melatonin levels and downregulated cAMP signaling with increased PDE and unchanged AC pineal gene expression, and decreased content of pineal cAMP. We conclude that chronic fluoxetine treatment increases daytime plasma melatonin and pineal AA-NAT gene expression despite downregulated pineal cAMP signaling in the rodent.
Keywords: antidepressant, melatonin, pineal, nucleotides, cyclic, phosphodiesterase, rat
- Testimonials
"... I was impressed at the rapidity of publication from submission to final acceptance." Dr Edwin Thrower, PhD, Yale University
- Tenofovir-associated bone density loss
- The benefits and risks of testosterone replacement therapy: a review
- Drug design with Cdc7 kinase: a potential novel cancer therapy target
- Development of mucosal adjuvants for intranasal vaccine for H5N1 influenza viruses




