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一种临床前尿动力学的猪膀胱模型显示在充盈过程中传入神经活动增加。

A porcine bladder model of pre-clinical urodynamics demonstrates increased afferent nerve activity during filling.

机构信息

Division of Urology, Department of Surgery, Virginia Commonwealth University Health System, Richmond, Virginia, USA.

Department of Obstetrics and Gynecology, Virginia Commonwealth University Health System, Richmond, Virginia, USA.

出版信息

Neurourol Urodyn. 2023 Aug;42(6):1181-1187. doi: 10.1002/nau.25200. Epub 2023 May 13.

Abstract

INTRODUCTION AND OBJECTIVES

Urodynamics are the accepted gold standard for the evaluation of multiple forms of voiding dysfunction. However, the tests are expensive, invasive, poorly reproducible, and often prone to artifacts. Therefore, there is a pressing need to develop next-generation urodynamics. The purpose of this study was to develop a novel ex vivo porcine bladder urodynamics model with afferent pelvic nerve signaling that can be used as a preclinical surrogate for bladder sensation.

METHODS

Porcine bladders including the ureters and vascular supply were harvested from local abattoirs using an established protocol in both male and female animals. Ex vivo bladder perfusion was performed using physiologic MOPS (3-(N-morpholino) propanesulfonic acid) buffer solution. The pelvic nerve adjacent to the bladder was grasped with micro-hook electrodes and electroneurogram (ENG) signals recorded at 20 kHz. Bladders were filled with saline at a nonphysiologic rate (100 mL/min) to a volume of 1 L using standard urodynamics equipment to simultaneously record intravesical pressure. ENG amplitude was calculated as the area under the curve for each minute, and ENG firing rate was calculated as number of spikes (above baseline threshold) per minute. At the conclusion of the experiment, representative nerve samples were removed and processed for nerve histology by a pathologist (hematoxylin and eosin and S100 stains).

RESULTS

A total of 10 pig bladders were used, and nerve histology confirmed the presence of nerve in all adequately processed samples. Vesical pressure, ENG firing rate, and ENG amplitude all increased as a function of filling. During filling tertiles (low fill: min 1-3, med fill: min 4-6, and high fill: min 7-10), normalized pressures were 0.22 ± 0.04, 0.38 ± 0.05, and 0.72 ± 0.07 (cmH2O). Similarly, normalized ENG firing rates were 0.08 ± 0.03, 0.31 ± 0.06, and 0.43 ± 0.04 spikes/minute, respectively, and normalized nerve amplitudes were 0.11 ± 0.06, 0.39 ± 0.06, and 0.56 ± 0.14) μV, respectively. Strong relationships between average normalized pressure values and averaged normalized ENG firing rate (r  = 0.66) and average normalized ENG amplitude (r  = 0.8) were identified.

CONCLUSIONS

The ex vivo perfused porcine bladder can be used as a preclinical model for the development of next-generation urodynamics technologies. Importantly, the model includes a reproducible method to measure afferent nerve activity that directly correlates with intravesical pressure during filling and could potentially be used as a surrogate measure of bladder sensation.

摘要

简介与目的

尿动力学是评估多种形式排尿功能障碍的公认金标准。然而,这些测试昂贵、有创、重现性差,且常常容易出现伪迹。因此,迫切需要开发下一代尿动力学技术。本研究的目的是开发一种具有传入性盆神经信号的新型离体猪膀胱尿动力学模型,该模型可用作膀胱感觉的临床前替代物。

方法

使用已建立的协议,从当地屠宰场收获包括输尿管和血管供应的猪膀胱,并在雄性和雌性动物中使用。使用生理 MOPS(3-(N-吗啉基)丙磺酸)缓冲液进行离体膀胱灌注。用微钩电极抓住邻近膀胱的盆神经,并以 20 kHz 的频率记录电神经图(ENG)信号。使用标准尿动力学设备以非生理速率(100 mL/min)将盐水注入膀胱,直至容量达到 1 L,以同时记录膀胱内压。ENG 幅度计算为每分钟曲线下面积,ENG 发射率计算为每分钟(高于基线阈值)的尖峰数。在实验结束时,取出有代表性的神经样本,并由病理学家(苏木精和伊红染色和 S100 染色)进行神经组织学处理。

结果

共使用了 10 个猪膀胱,所有经过适当处理的样本的神经组织学均证实存在神经。膀胱压力、ENG 发射率和 ENG 幅度均随填充而增加。在填充三分位(低填充:min 1-3,中填充:min 4-6,高填充:min 7-10)期间,归一化压力分别为 0.22±0.04、0.38±0.05 和 0.72±0.07(cmH2O)。同样,归一化 ENG 发射率分别为 0.08±0.03、0.31±0.06 和 0.43±0.04 个/分钟,归一化神经幅度分别为 0.11±0.06、0.39±0.06 和 0.56±0.14)μV。平均归一化压力值与平均归一化 ENG 发射率(r=0.66)和平均归一化 ENG 幅度(r=0.8)之间存在强烈的关系。

结论

离体灌注猪膀胱可用作下一代尿动力学技术的临床前模型。重要的是,该模型包括一种可重复的方法来测量传入性神经活动,该活动与充盈期间的膀胱内压直接相关,并且可能可用作膀胱感觉的替代测量。

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