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Rhythmic Calcium Events in the Lamina Propria Network of the Urinary Bladder of Rat Pups

机译:大鼠小便膀胱膀胱固有层网络中的节律性钙事件

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摘要

The lamina propria contains a dense network of cells, including interstitial cells (ICs), that may play a role in bladder function by modulating communication between urothelium, nerve fibers and smooth muscle or acting as pacemakers. Transient receptor potential vanilloid 4 (TRPV4) channels allow cation influx and may be involved in sensing stretch or chemical irritation in urinary bladder. Urothelium was removed from rats (P0-Adult), cut into strips, and loaded with a Ca2+ fluorescent dye (Fluo-2 AM leak resistant or Cal 520) for 90 min (35–37°C) to measure Ca2+ events. Ca2+ events were recorded for a period of 60 seconds (s) in control and after drug treatment. A heterogeneous network of cells was identified at the interface of the urothelium and lamina propria of postnatal rat pups, aged ≤ postnatal (P) day 21, with diverse morphology (round, fusiform, stellate with numerous projections) and expressing platelet-derived growth factor receptor alpha (PDGFRα)- and TRPV4-immunoreactivity (IR). Ca2+ transients occurred at a slow frequency with an average interval of 30 ± 8.6 s. Waveform analyses of Ca2+ transients in cells in the lamina propria network revealed long duration Ca2+ events with slow upstrokes. We observed slow propagating waves of activity in the lamina propria network that displayed varying degrees of coupling. Application of the TRPV4 agonist, GSK1016790 (100 nM), increased the duration of Ca2+ events, the number of cells with Ca2+ events and the integrated Ca2+ activity corresponding to propagation of activity among cells in the lamina propria network. However, GSK2193874 (1 μM), a potent antagonist of TRPV4 channels, was without effect. ATP (1 μM) perfusion increased the number of cells in the lamina propria exhibiting Ca2+ events and produced tightly coupled network activity. These findings indicate that ATP and TRPV4 can activate cells in the laminar propria network, leading to the appearance of organized propagating wavefronts.
机译:固有层包含密集的细胞网络,包括间质细胞(IC),可通过调节尿道上皮,神经纤维和平滑肌之间的通讯或起搏器来在膀胱功能中发挥作用。瞬态受体电位类香草酸4(TRPV4)通道允许阳离子流入,并可能参与感知膀胱的舒张或化学刺激。从大鼠(成年成人P0)中取出尿道上皮,切成条状,并装入Ca 2 + 荧光染料(耐Fluo-2 AM泄漏或Cal 520),持续90分钟(35–37° C)测量Ca 2 + 事件。在对照组和药物治疗后的60秒内记录了Ca 2 + 事件。在年龄≤出生后(P)第21天的产后大鼠幼崽的尿路上皮和固有层的界面上鉴定到细胞的异质网络,具有多种形态(圆形,梭形,星状且有许多突起)并表达血小板衍生的生长因子受体α(PDGFRα)和TRPV4免疫反应性(IR)。 Ca 2 + 瞬态发生的频率很慢,平均间隔为30±8.6 s。固有层网络中细胞中Ca 2 + 瞬变的波形分析表明,持续时间较长的Ca 2 + 事件具有较慢的上冲程。我们观察到固有层中慢速传播的活动波显示出不同程度的耦合。 TRPV4激动剂GSK1016790(100 nM)的应用增加了Ca 2 + 事件的持续时间,发生Ca 2 + 事件的细胞数量以及整合的Ca 2 + 活性对应于固有层网络中细胞之间的活性传播。但是,TRPV4通道的有效拮抗剂GSK2193874(1μM)没有作用。 ATP(1μM)灌注增加固有层中表现出Ca 2 + 事件的细胞数量,并产生紧密耦合的网络活动。这些发现表明,ATP和TRPV4可以激活层状固有层网络中的细胞,从而导致有组织的传播波前的出现。

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