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Suppression of bladder overactivity by adenosine A2A receptor antagonist in a rat model of Parkinson disease

机译:腺苷A2A受体拮抗剂在帕金森病大鼠模型中抑制膀胱过度活动

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Purpose: Overactive bladder is highly prevalent among patients with Parkinson disease. Adenosine is an important neurotransmitter in the central nervous system but it is not fully clarified how adenosine receptors regulate the micturition reflex. Thus, we examined the effect of an adenosine A2A receptor antagonist on the micturition reflex in a rat model of Parkinson disease. Materials and Methods: In a rat model of Parkinson disease induced by 6-hydroxydopamine (Tocris Bioscience, Ellisville, Missouri) injection we examined the effects of the adenosine A2A receptor antagonist ZM241385, the dopamine D1 receptor agonist SKF38393 and the dopamine D2 receptor agonist quinpirole on bladder activity. Results: Intravenous administration of ZM241385 increased the intercontraction interval in a dose dependent manner in rats with Parkinson disease and sham operated rats but the inhibitory effect was greater in the Parkinson disease group. Intrathecal and intracerebroventricular administration of ZM241385 increased the intercontraction interval in each group. However, in rats with Parkinson disease the inhibitory effects induced by intracerebroventricular administration of ZM241385 were greater than in sham operated rats. Intravenous administration of SKF38393 increased the intercontraction interval in rats with Parkinson disease and subsequent administration of ZM further increased the intercontraction interval. However, SKF38393 did not increase the intercontraction interval after ZM241385 application. Also, ZM241385 increased the intercontraction interval without being affected by pre-administration or post-administration of quinpirole, which decreased the intercontraction interval. Conclusions: Results indicate that the adenosine A2A receptor mediated excitatory mechanism is enhanced at a supraspinal site to induce bladder overactivity and A2A receptor inhibition effectively suppresses bladder overactivity in rats with Parkinson disease. Thus, adenosine A2A receptor antagonists could be useful for bladder dysfunction in Parkinson disease cases.
机译:目的:帕金森病患者中膀胱过度活动症非常普遍。腺苷是中枢神经系统中重要的神经递质,但尚未完全阐明腺苷受体如何调节排尿反射。因此,我们在帕金森氏病大鼠模型中检查了腺苷A2A受体拮抗剂对排尿反射的影响。材料和方法:在6-羟基多巴胺(Tocris Bioscience,Ellisville,密苏里州)注射引起的帕金森病大鼠模型中,我们研究了腺苷A2A受体拮抗剂ZM241385,多巴胺D1受体激动剂SKF38393和多巴胺D2受体激动剂喹吡罗的作用。对膀胱活动。结果:静脉内施用ZM241385在帕金森氏病和假手术大鼠中以剂量依赖性方式增加了收缩间隔,但在帕金森氏病组中抑制作用更大。鞘内和脑室内施用ZM241385可增加每组的收缩间隔。然而,在患有帕金森氏病的大鼠中,由脑室内给药ZM241385诱导的抑制作用要比假手术大鼠更大。静脉注射SKF38393可增加帕金森氏病大鼠的收缩间隔,而随后服用ZM则可进一步延长收缩间隔。但是,在应用ZM241385之后,SKF38393并没有增加其间收缩间隔。另外,ZM241385在不受到喹吡罗的给药前或给药后的影响的情况下增加了间抽动间隔,从而缩短了间抽动间隔。结论:结果表明,腺苷A2A受体介导的兴奋机制在脊髓上上位被增强,引起膀胱过度活动,而A2A受体抑制有效抑制帕金森病大鼠的膀胱过度活动。因此,腺苷A2A受体拮抗剂可用于帕金森氏病患者的膀胱功能障碍。

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