首页> 外文期刊>The Journal of Urology >The decompensated detrusor IV: experimental bladder outlet obstruction and its functional correlation to the expression of the ryanodine and voltage operated calcium channels.
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The decompensated detrusor IV: experimental bladder outlet obstruction and its functional correlation to the expression of the ryanodine and voltage operated calcium channels.

机译:失代偿的逼尿肌IV:实验性膀胱出口梗阻及其与ryanodine和电压操纵的钙通道表达的功能相关性。

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PURPOSE: Calcium ion homeostasis has a significant role in smooth muscle function. Its regulation requires complex storage and release mechanisms via ion pumps and channels located within intracellular storage sites (sarcoplasmic reticulum) and at the plasma membrane. A prominent component of the sarcoplasmic reticulum is the ryanodine sensitive ion channel which releases calcium from the sarcoplasmic reticulum into the cytosol. At the level of the plasma membrane the voltage operated calcium channel (dihydropyridine sensitive) serves to allow an influx of extracellular calcium. Our prior studies have shown a loss of sarcoplasmic endoplasmic reticulum Ca++Mg++ATPase expression following outlet obstruction. In this study we correlate ryanodine and voltage operated calcium channel protein expression with bladder function following partial outlet obstruction. MATERIALS AND METHODS: Standardized partial bladder outlet obstructions were created in adult New Zealand white rabbits, which were divided into control, sham operated and obstructed groups. Muscle strip studies further subcategorized the obstructed group into compensated (force greater than 50% of control) and decompensated (force less than 50% of control) and were correlated with in vivo determinations of voiding frequency and voided volumes. Microsomal membrane protein fractions were prepared from the same bladder tissue and were used for Western blot analysis using specific monoclonal antibodies. RESULTS: Increased voiding frequency and decreased voided volumes correlated with the definitions of compensated and decompensated. The Western blots revealed a near disappearance of ryanodine expression in the decompensated group with minimal changes in the expression of the voltage operated calcium channel. CONCLUSIONS: Bladder performance as measured in vivo and in vitro after outlet obstruction is influenced in part by smooth muscle cell ability to maintain calcium homeostasis via the sarcoplasmic reticulum. Bladder decompensation is highly associated with a loss of sarcoplasmic reticulum function with lesser changes taking place in those calcium regulatory proteins at the plasma membrane.
机译:目的:钙离子稳态在平滑肌功能中具有重要作用。它的调节需要通过离子泵和位于细胞内存储位点(肌质网)内和质膜上的通道进行复杂的存储和释放机制。肌浆网的一个突出组成部分是对精氨酸敏感的离子通道,该通道将钙从肌浆网释放到细胞质中。在质膜水平,电压控制的钙通道(对二氢吡啶敏感)用于允许细胞外钙的流入。我们先前的研究表明,出口阻塞后肌浆内质网Ca ++ Mg ++ ATPase表达丢失。在这项研究中,我们将ryanodine和电压操作的钙通道蛋白表达与部分出口梗阻后的膀胱功能相关。材料与方法:在成年新西兰白兔体内建立标准的部分膀胱出口梗阻,将其分为对照组,假手术组和梗阻组。肌肉剥离研究进一步将阻塞组分为补偿型(力大于对照的50%)和失代偿型(力小于对照的50%),并与体内排尿频率和排尿量的测定相关。从同一膀胱组织制备微粒体膜蛋白级分,并使用特异性单克隆抗体进行蛋白质印迹分析。结果:增加的排尿频率和减少的排尿量与补偿和失代偿的定义相关。蛋白质印迹显示失代偿组中ryanodine表达几乎消失,电压操作钙通道的表达变化最小。结论:出口阻塞后在体内和体外测得的膀胱性能部分受平滑肌细胞通过肌质网维持钙稳态的影响。膀胱失代偿与肌浆网功能的丧失高度相关,质膜上那些钙调节蛋白的变化较小。

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