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The role of chloride channels in rat corpus cavernosum: in vivo study.

机译:氯通道在大鼠海绵体中的作用:体内研究。

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INTRODUCTION: Recent studies have identified the existence of outward, depolarizing chloride currents in isolated rat, rabbit, and human corpus cavernosum muscle cells. However, few articles have demonstrated the functional role of chloride channels in vivo in corpus cavernosum smooth muscle. Aim. To investigate the role of calcium-dependent chloride channels in erectile function of rat corpus cavernosum smooth muscle. METHODS: Adult male Wistar rats were used to perform an in vivo study in a rat model of erection. Both crura of the rats were isolated to in order to record intracavernosal pressure (ICP) during basal conditions and electrical stimulation of erection, with and without intracorporeal injection of norepinephrine, chloride transport inhibitors, and chloride channel blockers. MAIN OUTCOME MEASURE: ICP. RESULTS: ICP increased as the amplitude of electrical stimulation increased, and decreased in a dose-dependent manner (during electrical stimulation) as norepinephrine injection strength increased. Injection into the corpus cavernosum of the Cl(-) channel blockers, niflumic acid, anthracene-9-carboxylic acid, and 4,4'-diisothiocyano-2,2'-stilbene-disulfonic acid increased ICP. Injection into the corpus cavernosum of the Cl(-) channel transport inhibitors bumetanide, ethacrynic acid, and HCO(3)-free 4-(2-hydroxyethyl )-1-1- piperazine ethanesulphonic acid buffer, and also increase the ICP. The effects of both Cl(-) channel blockers and Cl(-) channel transport inhibitors on ICP were concentration-dependent. CONCLUSIONS: Our findings suggest that chloride channels play an important role in the regulation of corpus cavernous smooth muscle tone in vivo.
机译:引言:最近的研究已经确定在分离的大鼠,兔和人海绵体肌肉细胞中存在向外的去极化的氯离子电流。但是,很少有文章证明了氯离子通道在海绵体平滑肌中的体内功能。目标。探讨钙依赖性氯通道在大鼠海绵体平滑肌勃起功能中的作用。方法:使用成年雄性Wistar大鼠在勃起大鼠模型中进行体内研究。分离大鼠的两个小腿,以记录基础条件和勃起的电刺激期间的海绵体内压力(ICP),有或没有体内注射去甲肾上腺素,氯离子转运抑制剂和氯离子通道阻滞剂。主要观察指标:ICP。结果:随着电刺激幅度的增加,ICP升高;随着去甲肾上腺素注射强度的增加,ICP呈剂量依赖性降低(在电刺激过程中)。注入到Cl(-)通道阻滞剂,尼氟酸,蒽9-羧酸和4,4'-二异硫氰基-2,2'-2-二磺酸的海绵体中增加了ICP。 Cl(-)通道转运抑制剂布美他尼,乙炔酸和不含HCO(3)的4-(2-羟乙基)-1-1-哌嗪乙磺酸缓冲液注入海绵体中,并增加ICP。 Cl(-)通道阻滞剂和Cl(-)通道转运抑制剂对ICP的影响是浓度依赖性的。结论:我们的发现表明,氯离子通道在体内调节海绵体平滑肌音调中起着重要作用。

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