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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >Roles of Na+/Ca2+ exchanger isoforms NCX1 and NCX2 in motility in mouse ileum
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Roles of Na+/Ca2+ exchanger isoforms NCX1 and NCX2 in motility in mouse ileum

机译:Na + / Ca2 +交换剂同种型NCX1和NCX2在小鼠回肠中的运动

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The Na+/Ca2+ exchanger (NCX) is a plasma membrane transporter that is involved in regulating intracellular Ca2+ concentrations in various tissues. The physiological roles by which NCX influences gastrointestinal motility are incompletely understood, although its role in the heart, brain, and kidney has been widely investigated. In this study, we focused on the functions of the NCX isoforms, NCX1 and NCX2, in the motility of the ileum in the gastrointestinal tract. We investigated the response to electric field stimulation (EFS) in the longitudinal smooth muscle of the ileum obtained from wild-type mice (WT), NCX1-heterozygote knockout mice (NCX1 HET), NCX2 HET and smooth muscle-specific NCX1.3 transgenic mice (NCX1.3 Tg). EFS induced a phasic contraction that persisted during EFS and a tonic contraction that occurred after the end of EFS. We found that the amplitudes of the phasic and tonic contractions were significantly smaller in NCX2 HET, but not in NCX1 HET, compared to WT. Moreover, the magnitudes of acetylcholine (ACh)- and substance P (SP)-induced contractions of NCX2 HET, but not of NCX1 HET, were smaller compared to WT. In contrast, the amplitudes of the phasic and tonic contractions were greater in NCX1.3 Tg compared to WT. Similar to EFS, the magnitude of ACh-induced contraction was greater in NCX1.3 Tg than in WT. Taken together, our findings indicated that NCX1 and NCX2 play important roles in ileal motility and suggest that NCX1 and NCX2 regulate the motility in the ileum by controlling the sensitivity of smooth muscles to ACh and SP.
机译:Na + / Ca2 +交换剂(NCX)是血浆膜转运蛋白,其参与调节各种组织中的细胞内Ca 2 +浓度。不完全明确地理解NCX影响胃肠运动的生理作用,尽管其在心脏,大脑和肾中的作用得到了广泛研究。在这项研究中,我们专注于NCX同种型,NCX1和NCX2的功能,在胃肠道中的回肠的动力中。我们调查了对来自野生型小鼠(WT),NCX1-杂合子敲除小鼠(NCX1 HET),NCX2 HET和平滑肌特异性NCX1.3转基因小鼠(NCX1.3 TG)。 EFS诱导在EFS期间持续存在的序列收缩和EFS结束后发生的滋补收缩。我们发现,与WT相比,NCX2 HET在NCX2 HET中具有显着较小的序号和滋补收缩的幅度,但不在NCX1 HET中。此外,与WT相比,乙酰胆碱(ACH) - 和物质P(SP)诱导的NCX2 HET的收缩,但不具有NCX1 HET的收缩。相比之下,与WT相比,NCX1.3 Tg的较长和滋补收缩的幅度更大。与EFS类似,NCX1.3 Tg的Ach引起的收缩的幅度比wt在Wt中更大。我们的研究结果表明,NCX1和NCX2在难率的运动中起着重要作用,并表明NCX1和NCX2通过控制平滑肌的敏感性来调节回肠内的动力。

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