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在大鼠原位膀胱模型中,刺激感觉盆神经和阴部神经可引起肾上腺素能松弛。

Adrenergic relaxations in an in situ urinary bladder model evoked by stimulation of sensory pelvic and pudendal nerves in the rat.

机构信息

Department of Pharmacology, Institute of Neuroscience and Physiology, Sahlgrenska Academy at the University of Gothenburg, Box 431, 405 30 Gothenburg, Sweden.

Department of Pharmacology, Institute of Neuroscience and Physiology, Sahlgrenska Academy at the University of Gothenburg, Box 431, 405 30 Gothenburg, Sweden.

出版信息

Auton Neurosci. 2024 Aug;254:103194. doi: 10.1016/j.autneu.2024.103194. Epub 2024 Jun 11.

Abstract

Urinary bladder dysfunction might be related to disturbances at different levels of the micturition reflex arc. The current study aimed to further develop and evaluate a split bladder model for detecting and analysing relaxatory signalling in the rat urinary bladder. The model allows for discrimination between effects at the efferent and the afferent side of the innervation. In in vivo experiments, the stimulation at a low frequency (1 Hz) of the ipsilateral pelvic nerve tended to evoke relaxation of the split bladder half (contralateral side; -1.0 ± 0.4 mN; n = 5), in contrast to high frequency-evoked contractions. In preparations in which the contralateral pelvic nerve was cut the relaxation occurred at a wider range of frequencies (0.5-2 Hz). In separate experiments, responses to 1 and 2 Hz were studied before and after intravenous injections of propranolol (1 mg/kg IV). The presence of propranolol significantly shifted the relaxations into contractions. Also, electrical stimulation of the ipsilateral pudendal nerve evoked relaxations of similar magnitude as for the pelvic stimulations, which were also affected by propranolol. In control in vitro experiments, substances with β-adrenoceptor agonism, in contrast to a selective α-agonist, evoked relaxations. The current study shows that the split bladder model can be used for in vivo studies of relaxations. In the model, reflex-evoked sympathetic responses caused relaxations at low intensity stimulation. The involvement of β-adrenoceptors is supported by the sensitivity to propranolol and by the in vitro observations.

摘要

膀胱功能障碍可能与排尿反射弧不同水平的紊乱有关。本研究旨在进一步开发和评估一种用于检测和分析大鼠膀胱松弛信号的分体膀胱模型。该模型允许区分传出和传入神经支配的作用。在体内实验中,同侧盆神经的低频(1 Hz)刺激往往会引起分体膀胱一半(对侧)的松弛(-1.0 ± 0.4 mN;n = 5),与高频诱发的收缩相反。在对侧盆神经切断的制剂中,松弛发生在更宽的频率范围(0.5-2 Hz)。在单独的实验中,在静脉注射普萘洛尔(1 mg/kg IV)前后研究了 1 和 2 Hz 的反应。普萘洛尔的存在显著地将松弛转变为收缩。此外,同侧阴部神经的电刺激也会引起与盆部刺激相似幅度的松弛,而这种松弛也会受到普萘洛尔的影响。在对照的体外实验中,具有β-肾上腺素能激动作用的物质与选择性α-激动剂相反,会引起松弛。本研究表明,分体膀胱模型可用于体内松弛研究。在该模型中,反射诱发的交感反应在低强度刺激下引起松弛。普萘洛尔的敏感性和体外观察支持β-肾上腺素能受体的参与。

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