用pH敏感荧光团测定中华林蛙体外脑干制剂中细胞内pH值

M. Gdovin, D. Zamora, C. R. Ravindran, M. Costanzo, J. Leiter
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引用次数: 1

摘要

为了研究蝌蚪中枢呼吸化学感受和节律发生的发展,我们在体外制备了蝌蚪脑干。利用pH敏感荧光染料光学记录哺乳动物中央呼吸化学感受区细胞内pH值(pHi)。在这项研究中,我们的目标是发展光学记录pHi的能力,同时记录过度使用的蝌蚪脑干制备中的呼吸运动输出。我们开发了一种染料加载方案,证明我们有能力充分加载大多数脑干神经元。染料的存在不会破坏正在进行的呼吸节律发生或对中枢呼吸化学受体刺激的呼吸反应。蝌蚪脑干是研究呼吸神经控制发展的一个很好的模型,因为它是良好的氧合,并保持呼吸中枢模式发生器、中枢呼吸化学感受器和呼吸运动神经元之间的突触连接。验证使用pH敏感染料在中枢呼吸化学感受器中光学记录pHi,将允许进一步表征中枢呼吸化学感受器的pH调节反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Employing a pH Sensitive Fluorophore to Measure Intracellular pH in the In Vitro Brainstem Preparation of Rana catesbeiana~!2009-05-06~!2009-10-29~!2009-12-24~!
We developed an in vitro tadpole brainstem preparation in order to investigate the development of central respiratory chemoreception and rhythmogenesis. pH sensitive fluorescent dyes have been utilized to record intracellular pH (pHi) optically in central respiratory chemoreceptive regions in mammals. Our goal in this study was to develop the ability to record pHi optically while simultaneously recording respiratory motor output in the superfused tadpole brainstem preparation. We developed a dye-loading protocol that demonstrated our ability to adequately load the majority of brainstem neurons. The presence of the dye was not disruptive to ongoing respiratory rhythmogenesis or the respiratory response to central respiratory chemoreceptor stimulation. The tadpole brainstem is an excellent model to study the development of the neural control of respiration, as it is well oxygenated and retains synaptic connectivity among respiratory central pattern generators, central respiratory chemoreceptors, and respiratory motor neurons. Validating of the use of the pH sensitive dyes to record pHi optically in central respiratory chemoreceptors in this preparation will permit further characterization of the pH regulatory responses of central respiratory chemoreceptors.
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