首页> 外文期刊>International journal of biological sciences >Distinct Effects of Ca2+ Sparks on Cerebral Artery and Airway Smooth Muscle Cell Tone in Mice and Humans
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Distinct Effects of Ca2+ Sparks on Cerebral Artery and Airway Smooth Muscle Cell Tone in Mice and Humans

机译:Ca 2+ 火花对小鼠和人脑动脉和气道平滑肌细胞色调的不同作用

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The effects of Ca2+ sparks on cerebral artery smooth muscle cells (CASMCs) and airway smooth muscle cells (ASMCs) tone, as well as the underlying mechanisms, are not clear. In this investigation, we elucidated the underlying mechanisms of the distinct effects of Ca2+ sparks on cerebral artery smooth muscle cells (CASMCs) and airway smooth muscle cells (ASMCs) tone. In CASMCs, owing to the functional loss of Ca2+-activated Cl- (Clca) channels, Ca2+ sparks activated large-conductance Ca2+-activated K+ channels (BKs), resulting in a decreases in tone against a spontaneous depolarization-caused high tone in the resting state. In ASMCs, Ca2+ sparks induced relaxation through BKs and contraction via Clca channels. However, the integrated result was contraction because Ca2+ sparks activated BKs prior to Clca channels and Clca channels-induced depolarization was larger than BKs-caused hyperpolarization. However, the effects of Ca2+ sparks on both cell types were determined by L-type voltage-dependent Ca2+ channels (LVDCCs). In addition, compared with ASMCs, CASMCs had great and higher amplitude Ca2+ sparks, a higher density of BKs, and higher Ca2+ and voltage sensitivity of BKs. These differences enhanced the ability of Ca2+ sparks to decrease CASMC and to increase ASMC tone. The higher Ca2+ and voltage sensitivity of BKs in CASMCs than ASMCs were determined by the β1 subunits. Moreover, Ca2+ sparks showed the similar effects on human CASMC and ASMC tone. In conclusions, Ca2+ sparks decrease CASMC tone and increase ASMC tone, mediated by BKs and Clca channels, respectively, and finally determined by LVDCCs.
机译:目前尚不清楚Ca 2 + 火花对脑动脉平滑肌细胞(CASMC)和气道平滑肌细胞(ASMC)音调的影响及其潜在机制。在这项研究中,我们阐明了Ca 2 + 火花对脑动脉平滑肌细胞(CASMC)和气道平滑肌细胞(ASMC)音调的独特影响的潜在机制。在CASMC中,由于Ca 2 + 激活的Cl -(Clca)通道的功能损失,Ca 2 + 触发了激活的大电导Ca 2 + 激活的K + 通道(BKs),导致在静止状态下,由于自发去极化导致的高音降低了音调。在ASMC中,Ca 2 + 火花通过BKs引起弛豫并通过Clca通道收缩。然而,综合结果是收缩,因为Ca 2 + 在Clca通道之前触发了激活的BK,并且Clca通道引起的去极化大于BKs引起的超极化。然而,Ca 2 + 火花对两种细胞类型的影响都由L型电压依赖性Ca 2 + 通道(LVDCCs)确定。另外,与ASMC相比,CASMC具有更高的振幅Ca 2 + 火花,更高的BK密度,更高的Ca 2 + 和BKs电压敏感性。这些差异增强了Ca 2 + 火花降低CASMC和增加ASMC声调的能力。 β1亚基确定了CASMC中BK的Ca 2 + 和电压敏感性高于ASMC。此外,Ca 2 + 火花对人的CASMC和ASMC音调也表现出相似的作用。结论是,Ca 2 + 火花分别由BKs和Clca通道介导并最终由LVDCCs降低CASMC音调并增加ASMC音调。

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