首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >Effects of resiniferatoxin desensitization of capsaicin-sensitive afferents on detrusor over-activity induced by intravesical capsaicin, acetic acid or ATP in conscious rats.
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Effects of resiniferatoxin desensitization of capsaicin-sensitive afferents on detrusor over-activity induced by intravesical capsaicin, acetic acid or ATP in conscious rats.

机译:辣椒素敏感性传入酶的树脂毒素脱敏对自觉大鼠膀胱内辣椒素,乙酸或ATP诱导的逼尿肌过度活跃的影响。

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摘要

Recent studies have provided evidence for a major role of urothelially released ATP acting on a subpopulation of pelvic afferent nerves in mechano-afferent transduction in the bladder. We investigated whether desensitization of capsaicin-sensitive nerve fibres by systemic resiniferatoxin (RTX)-pretreatment can counteract the detrusor over-activity induced by intravesical capsaicin, acetic acid or ATP. Cystometric investigations were performed on awake female Sprague-Dawley rats before and 24 h after injection of RTX (0.3 mg/kg s.c.) or vehicle. The effects of intravesically instilled ATP (0.1 or 1.0 mM), capsaicin (30 microM) or acetic acid (pH 4.0) were compared with those of intravesical saline. RTX, but not its vehicle, significantly increased threshold pressure, voiding interval, micturition volume and bladder capacity. In the vehicle-pretreated rats, intravesical instillation of capsaicin or acetic acid significantly decreased voiding interval, micturition volume, and bladder capacity. However, inthe RTX-pretreated rats, neither capsaicin nor acetic acid affected any parameter. On the other hand, intravesical ATP (0.1 mM) significantly decreased voiding interval and micturition volume in both groups of animals. At 1.0 mM, ATP also increased basal pressure and decreased the pressure threshold for micturition in both groups. The present results support the view that increased extracellular ATP has a role in mechano-afferent transduction in the rat bladder and that ATP-induced facilitation of the micturition reflex is mediated, at least partly, by nerves other than capsaicin-sensitive afferent nerves.
机译:最近的研究提供了尿路上皮释放的ATP在膀胱机械力传导中作用于盆腔传入神经亚群的主要作用的证据。我们研究了通过全身性树脂树脂毒素(RTX)预处理对辣椒素敏感神经纤维的脱敏是否可以抵消膀胱内辣椒素,乙酸或ATP诱导的逼尿肌过度活跃。在注射RTX(0.3 mg / kg s.c.)或赋形剂之前和之后24小时,对清醒的Sprague-Dawley雌性大鼠进行膀胱测量。比较了膀胱内滴注ATP(0.1或1.0 mM),辣椒素(30 microM)或乙酸(pH 4.0)的效果与膀胱内盐水的效果。 RTX(但不是其运载工具)显着增加了阈值压力,排尿间隔,排尿量和膀胱容量。在用媒介物预处理的大鼠中,辣椒素或乙酸的膀胱内滴注显着减少了排尿间隔,排尿量和膀胱容量。但是,在经RTX处理的​​大鼠中,辣椒素和乙酸均不影响任何参数。另一方面,两组动物的膀胱内ATP(0.1 mM)显着降低了排尿间隔和排尿量。 ATP在1.0 mM时也增加了基础压力,并降低了排尿的压力阈值。本结果支持以下观点:增加的细胞外ATP在大鼠膀胱的机械力传导中起作用,并且ATP诱导的排尿反射的促进至少部分地由除辣椒素敏感的传入神经以外的神经介导。

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