首页> 美国卫生研究院文献>Experimental Molecular Medicine >Increased Piezo1 channel activity in interstitial Cajal-like cells induces bladder hyperactivity by functionally interacting with NCX1 in rats with cyclophosphamide-induced cystitis
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Increased Piezo1 channel activity in interstitial Cajal-like cells induces bladder hyperactivity by functionally interacting with NCX1 in rats with cyclophosphamide-induced cystitis

机译:间质性Cajal样细胞中Piezo1通道活性的增加通过与NCX1功能性相互作用在环磷酰胺诱发的膀胱炎大鼠中诱导膀胱机能亢进

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摘要

The Piezo1 channel is a mechanotransduction mediator, and Piezo1 abnormalities have been linked to several clinical disorders. However, the role of the Piezo1 channel in cystitis-associated bladder dysfunction has not been documented. The current study aimed to discover the functional role of this channel in regulating bladder activity during cyclophosphamide (CYP)-induced cystitis. One hundred four female rats were randomly assigned to the control, CYP-4h, CYP-48h and CYP-8d groups. CYP successfully induced acute or chronic cystitis in these rats. CYP treatment for 48h or 8d significantly increased Piezo1 channel expression in bladder interstitial Cajal-like cells (ICC-LCs), and the increase in CYP-8d rats was more prominent. In addition, 2.5 μM Grammostola spatulata mechanotoxin 4 (GsMTx4) significantly attenuated bladder hyperactivity in CYP-8d rats by inhibiting the Piezo1 channel in bladder ICC-LCs. Furthermore, by using GsMTx4 and siRNA targeting the Piezo1 channel, we demonstrated that hypotonic stress-induced Piezo1 channel activation significantly triggered Ca2+ and Na+ influx into bladder ICC-LCs during CYP-induced chronic cystitis. In addition, the Piezo1 channel functionally interacted with the relatively activated reverse mode of Na+/Ca2+ exchanger 1 (NCX1) in bladder ICC-LCs from CYP-8d rats. In conclusion, we suggest that the functional role of the Piezo1 channel in CYP-induced chronic cystitis is based on its synergistic effects with NCX1, which can significantly enhance [Ca2+]i and result in Ca2+ overload in bladder ICC-LCs, indicating that the Piezo1 channel and NCX1 are potential novel therapeutic targets for chronic cystitis-associated bladder hyperactivity.
机译:Piezo1通道是机械转导介质,Piezo1异常与几种临床疾病有关。但是,Piezo1通道在与膀胱炎相关的膀胱功能障碍中的作用尚未得到证实。当前的研究旨在发现该通道在环磷酰胺(CYP)诱导的膀胱炎期间调节膀胱活动的功能性作用。将104只雌性大鼠随机分为对照组,CYP-4h,CYP-48h和CYP-8d组。 CYP成功诱导了这些大鼠的急性或慢性膀胱炎。 CYP处理48h或8d显着增加膀胱间质Cajal样细胞(ICC-LCs)中Piezo1通道的表达,而CYP-8d大鼠的表达更显着。此外,2.5μm的Grammostola spatulata机械毒素4(GsMTx4)通过抑制膀胱ICC-LCs中的Piezo1通道,显着减弱CYP-8d大鼠的膀胱活动过度。此外,通过使用针对Piezo1通道的GsMTx4和siRNA,我们证明了低渗应激诱导的Piezo1通道激活显着触发了Ca 2 + 和Na + 涌入膀胱ICC-LC。 CYP诱发的慢性膀胱炎期间。此外,Piezo1通道与CYP-8d大鼠膀胱ICC-LC中Na + / Ca 2 + 交换子1(NCX1)的相对激活的反向模式功能性相互作用。 。总之,我们认为Piezo1通道在CYP诱导的慢性膀胱炎中的功能作用是基于其与NCX1的协同作用,可以显着增强[Ca 2 + ] i并导致Ca <膀胱ICC-LC中sup> 2 + 超负荷,表明Piezo1通道和NCX1是与慢性膀胱炎相关的膀胱过度活动症的潜在新治疗靶标。

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