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首页> 外文期刊>The Journal of Physiology >Comparative capacitative calcium entry mechanisms in canine pulmonary and renal arterial smooth muscle cells.
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Comparative capacitative calcium entry mechanisms in canine pulmonary and renal arterial smooth muscle cells.

机译:犬肺和肾动脉平滑肌细胞中比较性的钙离子进入机制。

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摘要

Experiments were performed to determine whether capacitative Ca(2+) entry (CCE) can be activated in canine pulmonary and renal arterial smooth muscle cells (ASMCs) and whether activation of CCE parallels the different functional structure of the sarcoplasmic reticulum (SR) in these two cell types. The cytosolic [Ca(2+)] was measured by imaging fura-2-loaded individual cells. Increases in the cytosolic [Ca(2+)] due to store depletion in pulmonary ASMCs required simultaneous depletion of both the inositol 1,4,5-trisphosphate (InsP(3))- and ryanodine (RY)-sensitive SR Ca(2+) stores. In contrast, the cytosolic [Ca(2+)] rises in renal ASMCs occurred when the SR stores were depleted through either the InsP(3) or RY pathways. The increase in the cytosolic [Ca(2+)] due to store depletion in both pulmonary and renal ASMCs was present in cells that were voltage clamped and was abolished when cells were perfused with a Ca(2+)-free bathing solution. Rapid quenching of the fura-2 signal by 100 microM Mn(2+) following SR store depletion indicated that extracellular Ca(2+) entry increased in both cell types and also verified that activation of CCE in pulmonary ASMCs required the simultaneous depletion of the InsP(3)- and RY-sensitive SR Ca(2+) stores, while CCE could be activated in renal ASMCs by the depletion of either of the InsP(3)- or RY-sensitive SR stores. Store depletion Ca(2+) entry in both pulmonary and renal ASMCs was strongly inhibited by Ni(2+) (0.1-10 mM), slightly inhibited by Cd(2+) (200-500 microM), but was not significantly affected by the voltage-gated Ca(2+) channel (VGCC) blocker nisoldipine (10 microM). The non-selective cation channel blocker Gd(3+) (100 microM) inhibited a portion of the Ca(2+) entry in 6 of 18 renal but not pulmonary ASMCs. These results provide evidence that SR Ca(2+) store depletion activates CCE in parallel with the organization of intracellular Ca(2+) stores in canine pulmonary and renal ASMCs.
机译:进行实验以确定是否能在犬肺和肾动脉平滑肌细胞(ASMC)中激活Ca(2+)进入(CCE),以及在这些细胞中CCE的激活是否与肌浆网(SR)的不同功能结构平行两种细胞类型。胞质[Ca(2+)]是通过对呋喃2加载的单个细胞进行成像来测量的。由于在肺ASMC中的存储耗竭而导致的胞质[Ca(2+)]增加,需要同时耗竭肌醇1,4,5-三三磷酸(InsP(3))-和ryanodine(RY)敏感的SR Ca(2) +)商店。相反,当SR存储库通过InsP(3)或RY途径耗尽时,肾ASMC中的胞质[Ca(2+)]升高。由于储存在肺和肾ASMC中的消耗而导致的胞质[Ca(2+)]的增加存在于电压钳制的细胞中,当用无Ca(2+)的沐浴液灌注细胞时废除了。 SR存储库耗尽后,通过100 microM Mn(2+)快速消除fura-2信号表明两种细胞类型中细胞外Ca(2+)的进入均增加,并且还验证了肺ASMC中CCE的激活需要同时消耗InsP(3)和RY敏感SR Ca(2+)存储,而CCE可以通过InsP(3)或RY敏感SR存储的耗尽来激活肾ASMC中的CCE。 Ni(2+)(0.1-10 mM)强烈抑制肺和肾ASMCs中的存储耗竭Ca(2+)进入,Cd(2+)(200-500 microM)略微抑制,但未受到明显影响通过电压门控Ca(2+)通道(VGCC)阻滞剂尼索地平(10 microM)。非选择性阳离子通道阻滞剂Gd(3+)(100 microM)抑制了18个肾脏中有6个的Ca(2+)进入,但没有抑制肺ASMC。这些结果提供了证据表明,SR Ca(2+)存储耗尽激活了CCE,并与犬肺和肾ASMC中的细胞内Ca(2+)存储组织并行。

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