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猫的腹下传入神经对非伤害性膀胱活动的易化作用及对躯体传入抑制的抑制作用。

Facilitation of non-nociceptive bladder activity and suppression of somatic afferent inhibition by hypogastric afferents in cats.

作者信息

Shen Bing, Wang Jicheng, Tai Changfeng, Beckel Jonathan M

机构信息

Department of Urology, University of Pittsburgh, Pittsburgh, PA, United States.

Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, PA, United States.

出版信息

Front Neurosci. 2025 Feb 20;19:1555152. doi: 10.3389/fnins.2025.1555152. eCollection 2025.

Abstract

INTRODUCTION

While it is well known that the sensory arm of the micturition reflex is mediated by A-δ afferents in the pelvic nerve, the urinary bladder is also innervated by afferents in the hypogastric nerve (HGN), whose role in micturition is less well understood. We have recently determined that stimulation of HGN afferents can facilitate nociceptive bladder activity in the cat induced by intravesical instillation of acetic acid. The aim of the present study, then, was to determine if activation of HGN afferents could similarly facilitate normal bladder activity in the cat, evoked by saline distension. Additional experiments examined if HGN stimulation could modulate the inhibitory effects of tibial or pudendal neuromodulation on bladder capacity.

METHODS

Continuous infusion cystometry was performed in 9 (4 male, 5 female) α-chloralose anesthetized cats in which the HGNs were transected bilaterally. Bipolar electrodes were used to stimulate the central end of the cut HGNs at varying intensities (1-15 V) and frequencies (1-40 Hz) during bladder filling with saline (1-2 ml/min) until a micturition contraction occurred. Tripolar cuff electrodes were also placed on the left pudendal and left tibial nerve to examine the effect of neuromodulation on bladder capacity during cystometry.

RESULTS

Hypogastric nerve stimulation (HGNS) at 30 Hz and 15 V significantly reduced bladder capacity to 80.01 ± 3.86% of control. Tibial or pudendal nerve stimulation (5 Hz, 2 T) significantly increased bladder capacity to 187.6 ± 20.2% or 193.8 ± 19.0% of control, respectively. Simultaneous HGNS significantly reduced the efficacy of tibial nerve neuromodulation (reduced to 158.7 ± 18.7% of control) and but only partially suppressed the bladder inhibition induced by pudendal neuromodulation (reduced to 161.9 ± 18.0% of control).

CONCLUSION

These results suggest that HGN afferents (possibly C-fiber nociceptors) from the bladder or other pelvic organs may facilitate normal bladder activity to cause bladder overactivity. Additionally, HGN afferents may influence the efficacy of tibial or pudendal neuromodulation therapy in treating OAB.

摘要

引言

虽然众所周知排尿反射的感觉支是由盆神经中的A-δ传入神经介导的,但膀胱也受下腹神经(HGN)传入神经的支配,其在排尿中的作用尚不太清楚。我们最近确定,刺激HGN传入神经可促进猫膀胱内滴注乙酸诱发的伤害性膀胱活动。因此,本研究的目的是确定激活HGN传入神经是否能同样促进猫由盐水扩张诱发的正常膀胱活动。另外的实验研究了HGN刺激是否能调节胫神经或阴部神经调节对膀胱容量的抑制作用。

方法

对9只(4只雄性,5只雌性)用α-氯醛糖麻醉的猫进行连续灌注膀胱测压,这些猫的双侧HGN均被切断。在膀胱用盐水(1-2毫升/分钟)充盈直至出现排尿收缩期间,使用双极电极以不同强度(1-15伏)和频率(1-40赫兹)刺激切断的HGN的中枢端。还将三极袖带电极置于左侧阴部神经和左侧胫神经上,以检查膀胱测压期间神经调节对膀胱容量的影响。

结果

以30赫兹和15伏刺激下腹神经(HGNS)可使膀胱容量显著降低至对照值的80.01±3.86%。刺激胫神经或阴部神经(5赫兹,2特斯拉)可使膀胱容量分别显著增加至对照值的187.6±20.2%或193.8±19.0%。同时进行HGNS可显著降低胫神经调节的效果(降至对照值的158.7±18.7%),但仅部分抑制阴部神经调节诱导的膀胱抑制(降至对照值的161.9±18.0%)。

结论

这些结果表明,来自膀胱或其他盆腔器官的HGN传入神经(可能是C纤维伤害感受器)可能促进正常膀胱活动,导致膀胱过度活动。此外,HGN传入神经可能影响胫神经或阴部神经调节疗法治疗膀胱过度活动症的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec0/11882540/86554e9d2ced/fnins-19-1555152-g001.jpg

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