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乌拉坦麻醉小鼠的持续尿流动力学测定。

Continuous uroflow cystometry in the urethane-anesthetized mouse.

机构信息

Department of Surgery, University of Connecticut Health Center, Farmington, CT 06030, USA.

出版信息

Neurourol Urodyn. 2010 Sep;29(7):1344-9. doi: 10.1002/nau.20850.

Abstract

PURPOSE

In vivo animal cystometry represents an accepted methodology for the study of lower urinary tract physiology. A particular advantage of the mouse model is the availability of genetically modified strains, offering the possibility of linking individual genes to relevant physiological events. However, small voided volumes complicate the ability to obtain reliable pressure-flow data by gravimetric methods, due to non-continuous drop formation and release during voiding. We investigated the feasibility of a simple non-gravimetric continuous urine collection system during cystometry under urethane anesthesia, and compared urethane-anesthetized with awake cystometry.

METHODS

Cystometry was performed in awake and urethane-anesthetized female mice using a suprapubic tube. A simple, novel non-gravimetric method of urine collection was used in urethane-anesthetized animals to assess voided volume and permit flow rate calculations. Pressure and time-related variables were compared between groups.

RESULTS

Voided urine collection appears to be complete and continuous in this model. Mean voided volume was 0.09 ± 0.020 ml, with an average flow rate of 0.029 ± 0.007 ml/sec. Urethane anesthesia delayed cystometric pressure/volume responses. However, micturition reflexes were intact and otherwise comparable between groups. Female mice void with pulsatile pressurization previously described in rats.

CONCLUSION

Suprapubic voiding cystometry using a simple and reliable urine collection method under urethane anesthesia is feasible in mice, permitting the integration of voided volumes with pressure and time data. The inclusion of volume and flow data enhances the usefulness of the mouse model for in vivo assessment of detrusor and potentially sphincteric performance.

摘要

目的

活体动物膀胱测压法是研究下尿路生理学的一种公认方法。小鼠模型的一个特殊优势是存在基因修饰品系,这使我们有可能将个别基因与相关生理事件联系起来。然而,由于在排尿过程中尿液连续不断地滴出和释放,导致排出的尿量较小,因此通过称重法很难获得可靠的压力-流量数据。我们研究了在乌拉坦麻醉下进行膀胱测压时使用简单的非称重连续尿液收集系统的可行性,并比较了乌拉坦麻醉和清醒状态下的膀胱测压。

方法

使用耻骨上导尿管对清醒和乌拉坦麻醉的雌性小鼠进行膀胱测压。在乌拉坦麻醉的动物中使用一种简单的新型非称重尿液收集方法来评估排尿量并计算流量率。比较两组之间与压力和时间相关的变量。

结果

在该模型中,尿液收集似乎是完整和连续的。平均排尿量为 0.09±0.020ml,平均流量为 0.029±0.007ml/sec。乌拉坦麻醉延迟了膀胱测压的压力/容量反应。然而,排尿反射在两组之间是完整且相似的。雌性小鼠的排尿方式与之前在大鼠中描述的脉冲加压方式相同。

结论

在乌拉坦麻醉下使用简单可靠的尿液收集方法进行耻骨上排尿膀胱测压在小鼠中是可行的,这允许将排出的尿量与压力和时间数据结合起来。包含体积和流量数据增强了小鼠模型在体内评估逼尿肌和潜在的括约肌功能方面的有用性。

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