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Regulation of Spontaneous Contractions in Intact Rat Bladder Strips and the Effects of Hydrogen Peroxide

机译:完整大鼠膀胱条自发性收缩的调节和过氧化氢的影响

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摘要

Enhanced spontaneous contractions are associated with overactive bladder. Elevated levels of reactive oxygen species might contribute to enhanced spontaneous contractions. We investigated the regulation of spontaneous contractions and the effects of hydrogen peroxide (H2O2) in intact rat bladder strips. The spontaneous contractions were measured using a tissue bath system. The vehicle or the specific activators/blockers were applied and followed by the application of 0.003 g% H2O2. The basal tension, amplitude, and frequency of spontaneous contractions were quantified. Nisoldipine and bisindolylmaleimide 1 had no effects on spontaneous contractions. and Y27632 decreased basal tension and amplitude. Ryanodine slightly increased frequency. Both iberiotoxin and NS-1619 increased amplitude. Apamin reduced frequency but increased amplitude. NS-309 inhibited both the amplitude and frequency. The basal tension and amplitude increased when H2O2 was applied. Pretreatment with NS-309 inhibited H2O2-elicited augmented amplitude and frequency, while pretreatment with Y-27632 inhibited the augmented basal tension. The combined application of NS-309 and Y27632 almost eliminated spontaneous contractions and its augmentation induced by H2O2. In conclusion, Ca2+ influx, Rho kinase activation, and SK channel inactivation play important roles in spontaneous contractions in intact bladder strips, whereas only latter two mechanisms may be involved in H2O2-elicited increased spontaneous contractions.
机译:自发性收缩增强与膀胱活动过度有关。活性氧水平升高可能有助于自发性收缩。我们研究了自发性收缩的调节和过氧化氢(H2O2)在完整大鼠膀胱带中的作用。使用组织浴系统测量自发性收缩。施加媒介物或特定的活化剂/阻滞剂,然后施加0.003 g%的H2O2。定量自发性收缩的基础张力,幅度和频率。 Nisoldipine和bisindolylmaleimide 1对自发性收缩没有影响。和Y27632降低了基础张力和振幅。 Ryanodine的频率略有增加。 iberiotoxin和NS-1619均增加幅度。 Appamin降低频率,但幅度增加。 NS-309抑制振幅和频率。施加H2O2后,基础张力和振幅增加。用NS-309预处理可抑制H2O2引起的幅度和频率增加,而用Y-27632预处理可抑制基础张力的增加。 NS-309和Y27632的联合应用几乎消除了H2O2引起的自发性收缩及其增强。总之,Ca 2 + 内流,Rho激酶激活和SK通道失活在完整膀胱条的自发性收缩中起重要作用,而仅后两种机制可能与H2O2引起的自发性收缩增加有关。

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