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首页> 外文期刊>The Journal of Urology >Bladder outlet obstruction induced expression of prostaglandin E2 receptor subtype EP4 in the rat bladder: a possible counteractive mechanism against detrusor overactivity.
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Bladder outlet obstruction induced expression of prostaglandin E2 receptor subtype EP4 in the rat bladder: a possible counteractive mechanism against detrusor overactivity.

机译:膀胱出口梗阻诱导大鼠膀胱中前列腺素E2受体亚型EP4的表达:可能是对抗逼尿肌过度活动的一种反作用机制。

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PURPOSE: Prostaglandins have been implicated as endogenous modulators of bladder function under physiological and pathological conditions. We examined how the expression of each EP receptor subtype changed in association with bladder outlet obstruction and focused on the functional role of EP4 receptor subtype in the bladder with outlet obstruction. MATERIALS AND METHODS: We assessed the gene expression of EP receptor subtypes by reverse transcriptase-polymerase chain reaction. EP4 protein localization was determined by immunohistochemistry. The effect of the selective EP4 agonist ONO-AE1-329 on 50 mM KCl induced contraction of rat bladder strips was examined in vitro. Continuous infusion cystometrograms were done to examine the effect of intravesical perfusion of ONO-AE1-329 on the micturition reflex in urethane anesthetized rats. RESULTS: EP4 receptor genes were largely expressed in bladders with outlet obstruction but absent in controls. EP4 receptor proteins were clearly detected in obstructed bladder detrusor smooth muscle and epithelium. ONO-AE1-329 (100 muM) significantly relaxed KCl induced contraction of bladder strips from rats with bladder outlet obstruction. A significant correlation was found between the relaxant effect of ONO-AE1-329 and whole bladder weight. In rats with bladder outlet obstruction intravesical infusion of 10 muM ONO-AE1-329 significantly increased bladder capacity without changing micturition pressure while it had no effect in controls. CONCLUSIONS: Activation of the EP4 receptors expressed in bladders with outlet obstruction may suppress detrusor muscle contraction and afferent activity. This might be a compensatory mechanism to counteract the deterioration of storage function in bladders with outlet obstruction.
机译:目的:前列腺素已被认为是生理和病理条件下膀胱功能的内源性调节剂。我们检查了每种EP受体亚型的表达如何与膀胱出口梗阻相关联地变化,并着重于EP4受体亚型在具有出口梗阻的膀胱中的功能作用。材料与方法:我们通过逆转录聚合酶链反应评估了EP受体亚型的基因表达。通过免疫组织化学确定EP4蛋白的定位。在体外检查了选择性EP4激动剂ONO-AE1-329对50 mM KCl诱导的大鼠膀胱条收缩的影响。连续输注膀胱造影图以检查膀胱灌注ONO-AE1-329对氨基甲酸乙酯麻醉大鼠排尿反射的影响。结果:EP4受体基因在膀胱出口梗阻中大量表达,而在对照组中则不存在。在阻塞的膀胱逼尿肌平滑肌和上皮中清楚地检测到EP4受体蛋白。 ONO-AE1-329(100μM)显着放松了KCl诱导的膀胱出口梗阻大鼠膀胱条的收缩。发现ONO-AE1-329的松弛作用与整个膀胱重量之间存在显着相关性。在膀胱出口梗阻的大鼠中,膀胱内输注10μMONO-AE1-329可显着增加膀胱容量,而不会改变排尿压力,而在对照组中则无作用。结论:在出口阻塞的膀胱中表达的EP4受体的激活可能抑制逼尿肌的收缩和传入活动。这可能是一种补偿机制,可以抵消出口阻塞的膀胱中储存功能的恶化。

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