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一种创新的电神经刺激方法,可模拟脊髓损伤模型中的反射性排尿控制。

An innovative electrical neurostimulation approach to mimic reflexive urination control in spinal cord injury models.

机构信息

School of Physical Science and Technology, Guangxi University, Nanning, 530004, China.

Department of Urology, PLA Naval Medical Center, Naval Medical University, Shanghai, 200052, China.

出版信息

Sci Rep. 2024 Oct 25;14(1):25305. doi: 10.1038/s41598-024-76499-3.

Abstract

Neurogenic lower urinary tract dysfunction (NLUTD) is a frequent consequence of spinal cord injury (SCI), leading to symptoms that significantly impact quality of life. Although many life-saving techniques are available, current treatment strategies for managing NLUTD still exhibit limitations and drawbacks. Here, we introduce a new electrical neuromodulation strategy involving electrical stimulation of the major pelvic ganglion (MPG) to initiate bladder contraction, in conjunction with innovative programmable (IPG) electrical stimulation on the pudendal nerve (PN) to induce external urethral sphincter (EUS) relaxation in freely moving or anesthetized SCI mice. Furthermore, we conducted the void spot assay, and cystometry coupled with EUS electromyography (EMG) recordings to evaluate voiding function, and monitor bladder pressure and EUS activity. Our findings demonstrate that our novel electrical neuromodulation approach effectively triggers coordinated bladder muscle contraction and EUS relaxation, effectively counteracting SCI-induced NLUTD. Additionally, this electrical neuromodulation method enhances voiding efficiency, closely resembling natural reflexive urination in SCI mice. Thus, our study offers a promising electrical neurostimulation approach aimed at restoring physiological coordination and potentially offering personalized treatment for improving voiding efficiency in individuals with SCI-associated NLUTD.

摘要

神经原性下尿路功能障碍(NLUTD)是脊髓损伤(SCI)的常见后果,导致严重影响生活质量的症状。尽管有许多救生技术可用,但目前管理 NLUTD 的治疗策略仍然存在局限性和缺点。在这里,我们介绍了一种新的电神经调节策略,涉及刺激主要骨盆神经节(MPG)以引发膀胱收缩,并结合创新的可编程(IPG)电刺激阴部神经(PN)以诱导自由移动或麻醉 SCI 小鼠的尿道外括约肌(EUS)松弛。此外,我们进行了排空点测定和膀胱测压术,并结合 EUS 肌电图(EMG)记录来评估排尿功能,并监测膀胱压力和 EUS 活动。我们的研究结果表明,我们的新型电神经调节方法有效地触发了协调的膀胱肌肉收缩和 EUS 松弛,有效地对抗了 SCI 引起的 NLUTD。此外,这种电神经调节方法提高了排空效率,非常类似于 SCI 小鼠的自然反射性排尿。因此,我们的研究提供了一种有前途的电神经刺激方法,旨在恢复生理协调,并为改善与 SCI 相关的 NLUTD 患者的排空效率提供个性化治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99c3/11511940/9857e131fb99/41598_2024_76499_Fig1_HTML.jpg

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