Korean J Urol.  2005 Jun;46(6):626-631.

Effect of Fluoxetine on Calcium or Potassium Channels in the Neuron of Rat Major Pelvic Ganglia

Affiliations
  • 1Department of Urology, Soonchunhyang University College of Medicine, Seoul, Korea. yssong@hosp.sch.ac.kr
  • 2Department of Physiology, Yonsei University Wonju College of Medicine, Wonju, Korea.
  • 3Department of Obstetrics and Gynecology, Inha University College of Medicine, Inchoen, Korea.

Abstract

PURPOSE: The major pelvic ganglia (MPG) provide the majority of the innervations to the lower urinary tract. The pelvic ganglia are unique autonomic ganglia that contain both sympathetic and parasympathetic neurons. It has been known that the low-threshold voltage-gated (T-type) Ca2 channels are only expressed only in the sympathetic neurons, whereas these channels are absent in parasympathetic neurons. In the present study, we examined the effect of fluoxetine, a world-wide used antidepressant, on the voltage-dependent Ca2 and K currents in the adrenergic neurons of the MPG.
MATERIALS AND METHODS
The effect of fluoxetine on the voltage-dependent Ca2 and K currents in the adrenergic neurons of the MPG were examined using the whole-cell patch-clamp technique.
RESULTS
Fluoxetine inhibited the voltage-activated Ca2 currents in the adrenergic neurons of the MPG. Both high-threshold (HVA) and low- threshold (LVA, T-type) Ca2 currents were inhibited by fluoxetine with an IC50 of 5.3 and 10.8microM, respectively. Fluoxetine also decreased the both the peak amplitude and the plateau of the outward K currents. The inhibition of the peak K currents by fluoxetine was concentration- dependent with an IC50 of 3.2microM. The inhibitions of the Ca2 and K currents were quickly reversible upon washout of the fluoxetine.
CONCLUSIONS
These results provide evidence for the direct inhibition of the voltage dependant Ca2 and K currents by fluoxetine and these inhibitory effects could modify the synaptic transmission in adrenergic neurons of the MPG.

Keyword

Autonomic ganglia; Fluoxetine; Calcium channel; Potassium channel

MeSH Terms

Adrenergic Neurons
Animals
Calcium Channels
Calcium*
Fluoxetine*
Ganglia*
Ganglia, Autonomic
Inhibitory Concentration 50
Neurons*
Patch-Clamp Techniques
Potassium Channels*
Potassium*
Rats*
Synaptic Transmission
Urinary Tract
Calcium
Calcium Channels
Fluoxetine
Potassium
Potassium Channels
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