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格列卫对膀胱收缩反应的影响。

The effects of the c-kit blocker glivec on the contractile response of urinary bladder.

机构信息

Centre of Urology, Southwest Hospital, Third Military Medical University, Chongqing, China.

出版信息

J Surg Res. 2011 Dec;171(2):e193-9. doi: 10.1016/j.jss.2011.07.048. Epub 2011 Aug 25.

Abstract

OBJECTIVES

To investigate the effects of imatinib (Glivec) on the urinary bladder contraction and excitation induced by neurostimulation, therefore to clarify the relationships between the bladder interstitial cell of Cajal (ICC) and the neural signals.

METHODS

In in vivo experiments, pelvic nerves of rats were stimulated by square-wave pulses. The contractile response was recorded before and 40 min after the administration of medications (atropine, Glivec, and ketotifen). In in vitro experiments, the bladder contractile response induced by acetylcholine with or without Glivec was evaluated. The space relationship between ICC and neural fibers were observed with double-labeled fluorescence using primary antibodies (anti-c-kit and anti-vesicular acetylcholine transferase) and secondary fluorescent antibodies (Alexa 488 and Alexa 594; Molecular Probes, Eugene, OR).

RESULTS

Atropine and Glivec could significantly inhibit the bladder contractile response induced by the electrical stimulation in a dose-dependent manner, while ketotifen did not obviously affect bladder contractile response. In in vitro experiments, Glivec did not affect acetylcholine-induced bladder contractile response. The location of ICC in close proximity to cholinergic nerve fibers was confirmed by double-labeled fluorescence.

CONCLUSIONS

Bladder ICC play an important role as intermediaries in the transmission of cholinergic signals from nerve to smooth muscle cells.

摘要

目的

研究伊马替尼(格列卫)对神经刺激引起的膀胱收缩和兴奋的影响,从而阐明膀胱间质细胞 Cajal(ICC)与神经信号之间的关系。

方法

在体内实验中,用方波脉冲刺激大鼠盆神经。在给药(阿托品、格列卫和酮替芬)前和 40 分钟后记录收缩反应。在体外实验中,评估乙酰胆碱诱导的膀胱收缩反应,有无格列卫。使用抗-c-kit 和抗囊泡乙酰胆碱转运蛋白的一抗和二级荧光抗体(Alexa 488 和 Alexa 594;Molecular Probes,尤金,OR)进行双重标记荧光,观察 ICC 与神经纤维之间的空间关系。

结果

阿托品和格列卫可显著抑制电刺激诱导的膀胱收缩反应,呈剂量依赖性,而酮替芬对膀胱收缩反应无明显影响。在体外实验中,格列卫不影响乙酰胆碱诱导的膀胱收缩反应。通过双重标记荧光证实了 ICC 与胆碱能神经纤维的位置非常接近。

结论

膀胱 ICC 作为神经到平滑肌细胞的胆碱能信号传递的中间介质发挥着重要作用。

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