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首页> 外文期刊>The Journal of Physiology >Contribution of reverse Na+-Ca2+ exchange to spontaneous activity in interstitial cells of Cajal in the rabbit urethra.
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Contribution of reverse Na+-Ca2+ exchange to spontaneous activity in interstitial cells of Cajal in the rabbit urethra.

机译:Na + -Ca2 +反向交换对兔尿道Cajal间质细胞自发活动的贡献。

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Interstitial cells of Cajal (ICC) isolated from the rabbit urethra exhibit regular Ca2+ oscillations that are associated with spontaneous transient inward currents (STICs) recorded under voltage clamp. Their frequency is known to be very sensitive to external Ca2+ concentration but the mechanism of this has yet to be elucidated. In the present study experiments were performed to assess the role of Na+-Ca2+ exchange (NCX) in this process. Membrane currents were recorded using the patch clamp technique and measurements of intracellular Ca2+ were made using fast confocal microscopy. When reverse mode NCX was enhanced by decreasing the external Na+ concentration [Na+]o from 130 to 13 mM, the frequency of global Ca2+ oscillations and STICs increased. Conversely, inhibition of reverse mode NCX by KB-R7943 and SEA0400 decreased the frequency of Ca2+ oscillations and STICs. Application of caffeine (10 mM) and noradrenaline (10 microM) induced transient Ca2+-activated chloride currents (I(ClCa)) at -60 mV due to release of Ca2+ from ryanodine- and inositol trisphosphate (IP3)-sensitive Ca2+ stores, respectively, but these responses were not blocked by KB-R7943 or SEA0400 suggesting that neither drug blocked Ca2+-activated chloride channels or Ca2+ release from stores. Intact strips of rabbit urethra smooth muscle develop spontaneous myogenic tone. This tone was relaxed by application of SEA0400 in a concentration-dependent fashion. Finally, single cell RT-PCR experiments revealed that isolated ICC from the rabbit urethra only express the type 3 isoform of the Na+-Ca2+ exchanger (NCX3). These results suggest that frequency of spontaneous activity in urethral ICC can be modulated by Ca2+ entry via reverse NCX.
机译:从兔尿道中分离出的Cajal间质细胞(ICC)表现出规则的Ca2 +振荡,该振荡与在电压钳制下记录的自发瞬时内向电流(STIC)相关。已知它们的频率对外部Ca2 +浓度非常敏感,但是其机理尚未阐明。在本研究中,进行了实验以评估Na + -Ca2 +交换(NCX)在此过程中的作用。使用膜片钳技术记录膜电流,并使用快速共聚焦显微镜进行细胞内Ca2 +的测量。通过将外部Na +浓度[Na +] o从130 mM降低到13 mM来增强反向模式NCX时,整体Ca2 +振荡和STIC的频率增加。相反,KB-R7943和SEA0400抑制反向模式NCX降低了Ca2 +振荡和STIC的频率。应用咖啡因(10 mM)和去甲肾上腺素(10 microM)会在-60 mV时引起瞬时的Ca2 +激活的氯离子电流(I(ClCa)),这是由于分别从敏感于三磷酸磷酸(Ranodine)和肌醇三磷酸(IP3)的Ca2 +存储中释放了Ca2 +。 ,但KB-R7943或SEA0400并未阻止这些反应,表明这两种药物均未阻止Ca2 +激活的氯离子通道或Ca2 +从存储中释放。完整的兔子尿道平滑肌条会形成自发的肌源性音调。通过以浓度依赖的方式使用SEA0400可以放松这种音调。最后,单细胞RT-PCR实验表明,从兔尿道分离出的ICC仅表达Na + -Ca2 +交换子(NCX3)的3型同种型。这些结果表明,尿道ICC中自发活动的频率可以通过反向NCX的Ca 2+进入来调节。

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