Peng Chih-Wei, Chen Jia-Jin Jason, Chang Hui-Yi, de Groat William C, Cheng Chen-Li
Institute of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan, Republic of China.
Neurourol Urodyn. 2006;25(4):388-96. doi: 10.1002/nau.20229.
Pudendal nerve injury in the rat has been a useful animal model for studying stress urinary incontinence (SUI). However, the effect of pudendal nerve injury on activity of the external urethral sphincter (EUS) is relatively unexplored. The aims of this study were to examine voiding and the EUS electromyogram (EMG) in a durable SUI model in rats with bilateral or unilateral pudendal nerve transections. In addition, the effects of denervation on urethral anatomy were investigated.
A leak point pressure (LPP) test was first used to demonstrate that pudendal nerve transection induced SUI. Cystometry exhibited changes in voiding function and EUS-EMG measurements provided a quantitative evaluation of EUS activity during voiding. The morphological changes in sections through the mid-urethra were assessed with hematoxylin and eosin (H&E) staining.
A significant decrease in average LPP was detected in rats 6 weeks after bilateral pudendal nerve transection (BPNT). Abnormal urodynamic measurements including a decrease in contraction amplitude and voided volume as well as an increase in contraction duration, and residual volume all indicated inefficient voiding. In addition EUS-EMG silent periods were reduced and the frequency of EUS-EMG bursting during voiding was increased. Atrophy of striated muscle in the EUS was also detected in rats with pudendal nerve transection(s).
Our results indicate that pudendal nerve transection in rats decreases urethral outlet resistance and causes striated muscle atrophy in the EUS, EUS-EMG abnormalities and inefficient voiding. The results demonstrate that BPNT is a durable model for SUI.
大鼠阴部神经损伤一直是研究压力性尿失禁(SUI)的有用动物模型。然而,阴部神经损伤对外尿道括约肌(EUS)活动的影响相对未被充分探索。本研究的目的是检查双侧或单侧阴部神经横断的大鼠持续性SUI模型中的排尿情况和EUS肌电图(EMG)。此外,还研究了去神经支配对尿道解剖结构的影响。
首先使用漏点压力(LPP)测试来证明阴部神经横断会诱发SUI。膀胱测压显示排尿功能的变化,EUS-EMG测量提供了排尿期间EUS活动的定量评估。用苏木精和伊红(H&E)染色评估尿道中段切片的形态学变化。
双侧阴部神经横断(BPNT)后6周的大鼠平均LPP显著降低。包括收缩幅度和排尿量减少以及收缩持续时间和残余尿量增加在内的异常尿动力学测量均表明排尿效率低下。此外,EUS-EMG静息期缩短,排尿期间EUS-EMG爆发频率增加。在阴部神经横断的大鼠中也检测到EUS中横纹肌萎缩。
我们的结果表明,大鼠阴部神经横断会降低尿道出口阻力,并导致EUS中的横纹肌萎缩、EUS-EMG异常和排尿效率低下。结果表明BPNT是一种用于SUI的持续性模型。