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氟西汀对犬和人离体空肠环行平滑肌细胞离子电流的调节作用

Modulation of ionic currents in isolated canine and human jejunal circular smooth muscle cells by fluoxetine.

作者信息

Farrugia G

机构信息

Division of Gastroenterology and Internal Medicine, Mayo Clinic, Rochester, Minnesota, USA.

出版信息

Gastroenterology. 1996 May;110(5):1438-45. doi: 10.1053/gast.1996.v110.pm8613049.

Abstract

BACKGROUND & AIMS: Fluoxetine is a commonly prescribed antidepressant with frequent gastrointestinal side effects. The aim of this study was to examine the effects of fluoxetine on isolated canine and human jejunal circular smooth muscle cells.

METHODS

Patch clamp and dual wavelength ratio techniques were used.

RESULTS

In amphotericin-perforated patch whole-cell recordings, fluoxetine at 100 nmol/L, 1 mumol/L, and 10 mumol/L concentrations decreased the outwardly delayed rectifier potassium current in canine cells by 12% +/- 3%, 27% +/- 12%, and 37% +/- 3%, respectively, and depolarized the membrane potential by 9.7 +/- 1.8 mV at 10 mumol/L. At 100 mumol/L and 1 mmol/L concentrations, fluoxetine increased the outward current by 88% +/- 40% and 475% +/- 270%, respectively. The increase in the outward current was blocked by charybdotoxin, suggesting an effect on the calcium-activated potassium current. In human cells, fluoxetine at 1 mumol/L decreased the outward potassium current by 26% +/- 4% and at 100 mumol/L increased the outward potassium current by 134% +/- 22%.

CONCLUSIONS

Fluoxetine had direct effects on canine and human jejunal circular smooth muscle cells. Low concentrations decreased the outwardly delayed rectifier potassium current, and higher concentrations activated calcium-activated potassium channels. The results may in part explain the frequent gastrointestinal side effects of the drug.

摘要

背景与目的

氟西汀是一种常用的抗抑郁药,常伴有胃肠道副作用。本研究旨在探讨氟西汀对分离的犬和人空肠环形平滑肌细胞的影响。

方法

采用膜片钳和双波长比率技术。

结果

在两性霉素穿孔膜片全细胞记录中,100 nmol/L、1 μmol/L和10 μmol/L浓度的氟西汀分别使犬细胞外向延迟整流钾电流降低12%±3%、27%±12%和37%±3%,在10 μmol/L时使膜电位去极化9.7±1.8 mV。在100 μmol/L和1 mmol/L浓度时,氟西汀分别使外向电流增加88%±40%和475%±270%。外向电流的增加被蝎毒阻断,提示对钙激活钾电流有影响。在人细胞中,1 μmol/L的氟西汀使外向钾电流降低26%±4%,100 μmol/L时使外向钾电流增加134%±22%。

结论

氟西汀对犬和人空肠环形平滑肌细胞有直接作用。低浓度降低外向延迟整流钾电流,高浓度激活钙激活钾通道。这些结果可能部分解释了该药物常见的胃肠道副作用。

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