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青蒿素对C型结状神经节神经元动作电位的影响。

Effects of artemisinin on action potentials from C-type nodose ganglion neurons.

作者信息

Qiao Guo-Fen, Yang Bao-Feng, Li Wen-Han, Li Bai-Yan

机构信息

Department of Pharmacology, Harbin Medical University, Harbin 150086, China.

出版信息

Acta Pharmacol Sin. 2003 Sep;24(9):937-42.

Abstract

AIM

To investigate the effects of artemisinin (Art) on the action potentials (AP) recorded from identified C-type nodose neurons and study its anti-arrhythmic and anesthetic mechanisms.

METHODS

Neonatal and adult rats were selected for the preparation of isolated nodose ganglia neurons (NGN) and nodose ganglion-vagus slice preparation. Somatic AP were recorded from both isolated and slice NGN using whole-cell patch technique. Conduction velocity (CV) was measured using slice preparation. The effects of Art on AP were evaluated with the reference to ketamine.

RESULTS

Effects of Art on AP were that: (1) AP depolarizing profiles were inhibited without changing resting membrane potential (RMP). The peak of AP (AP(peak)) and upstroke velocity (UV(APD50) and UV(max)) decreased markedly (P<0.01). (2) The duration of AP at the point of half repolarization (APD(50)) was obviously prolonged (P<0.01). (3) Art also slowed down AP repolarization profiles (downstroke velocity, DV(APD50), and DV(max)) and the peak of after-hyperpolarization (AHP(peak)) was less negative. (4) Total inward and outward currents over the course of AP were significantly reduced in the presence of Art. (5) CV did not changed by Art. (6) The effects of Art on AP were concentration-dependent and resembled with those of ketamine except for CV.

CONCLUSION

Art inhibited both depolarization and repolarization of AP, suggesting that the effects of Art were probably, due to the blockade of Na+ and K+ ion channels.

摘要

目的

研究青蒿素(Art)对已鉴定的C型结状神经元动作电位(AP)的影响,并探讨其抗心律失常及麻醉机制。

方法

选用新生和成年大鼠制备离体结状神经节神经元(NGN)及结状神经节-迷走神经切片标本。采用全细胞膜片钳技术记录离体及切片标本中NGN的体细胞AP。使用切片标本测量传导速度(CV)。参照氯胺酮评估Art对AP的影响。

结果

Art对AP的影响如下:(1)AP去极化波形受到抑制,静息膜电位(RMP)无改变。AP峰值(AP(peak))及上升速度(UV(APD50)和UV(max))显著降低(P<0.01)。(2)AP复极化至一半时的持续时间(APD(50))明显延长(P<0.01)。(3)Art还减慢了AP复极化波形(下降速度,DV(APD50)和DV(max)),超极化后电位峰值(AHP(peak))负值减小。(4)在Art存在时,AP过程中的内向和外向总电流显著降低。(5)Art对CV无影响。(6)Art对AP的影响呈浓度依赖性,除CV外与氯胺酮相似。

结论

Art抑制AP的去极化和复极化,提示其作用可能是由于阻断了Na+和K+离子通道。

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