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首页> 外文期刊>American Journal of Physiology >Multifocal animated imaging of changes in cellular oxygen and calcium concentrations and membrane potential within the intact adult mouse carotid body ex vivo.
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Multifocal animated imaging of changes in cellular oxygen and calcium concentrations and membrane potential within the intact adult mouse carotid body ex vivo.

机译:完整成年小鼠颈动脉体内离体细胞氧和钙浓度以及膜电位变化的多焦点动画成像。

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Carotid body (CB) type I cell hypoxia-sensing function is assumed to be based on potassium channel inhibition. Subsequent membrane depolarization initiates an intracellular calcium increase followed by transmitter release for excitation of synapses with linked nerve endings. Several reports, however, contradict this generally accepted concept by showing that type I cell oxygen-sensing properties vary significantly depending on the method of their isolation. We report therefore for the first time noninvasive mapping of the oxygen-sensing properties of type I cells within the intact adult mouse CB ex vivo by using multifocal Nipkow disk-based imaging of oxygen-, calcium- and potential-sensitive cellular dyes. Characteristic type I cell clusters were identified in the compact tissue by immunohistochemistry because of their large cell nuclei combined with positive tyrosine hydroxylase staining. The cellular calcium concentrations in these cell clusters either increased or decreased in response to reduced tissue oxygen concentrations. Under control conditions, cellular potential oscillations were uniform at approximately 0.02 Hz. Under hypoxia-induced membrane depolarization, these oscillations ceased. Simultaneous increases and decreases in potential of these cell clusters resulted from spontaneous burstlike activities lasting approximately 1.5 s. type I cells, identified during the experiments by cluster formation in combination with large cell nuclei, seem to respond to hypoxia with heterogeneous kinetics.
机译:假定I型颈动脉体(CB)细胞缺氧感应功能是基于钾通道抑制作用。随后的膜去极化引发细胞内钙的增加,然后释放递质以激发具有链接的神经末梢的突触。但是,有几篇报道通过显示I型细胞的氧敏特性根据其分离方法而有很大不同,从而与这一普遍接受的概念相矛盾。因此,我们首次报告了通过使用基于多焦点Nipkow磁盘的氧,钙和电位敏感细胞染料成像,完整无损成年小鼠CB内I型细胞的氧敏感特性的非侵入性作图。通过免疫组织化学在紧密的组织中鉴定出特征性的I型细胞簇,因为它们的大细胞核结合了酪氨酸羟化酶阳性染色。这些细胞簇中的细胞钙浓度响应于组织氧浓度降低而增加或降低。在控制条件下,细胞电势振荡在大约0.02 Hz时是均匀的。在缺氧引起的膜去极化作用下,这些振荡停止了。这些细胞簇的电势同时增加和减少,是由于持续约1.5 s的自发爆发性活动引起的。在实验过程中通过簇形成与大细胞核结合而鉴定出的I型细胞似乎对异氧反应具有异质动力学。

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