De Proost Ian, Pintelon Isabel, Brouns Inge, Kroese Alfons B A, Riccardi Daniela, Kemp Paul J, Timmermans Jean-Pierre, Adriaensen Dirk
Laboratory of Cell Biology and Histology, Department of Veterinary Sciences, University of Antwerp, Antwerp, Belgium.
Am J Respir Cell Mol Biol. 2008 Aug;39(2):180-9. doi: 10.1165/rcmb.2008-0011OC. Epub 2008 Mar 26.
Pulmonary neuroepithelial bodies (NEBs) are densely innervated groups of neuroendocrine cells invariably accompanied by Clara-like cells. Together with NEBs, Clara-like cells form the so-called "NEB microenvironment," which recently has been assigned a potential pulmonary stem cell niche. Conclusive data on the nature of physiological stimuli for NEBs are lacking. This study aimed at developing an ex vivo mouse lung vibratome slice model for confocal live cell imaging of physiological reactions in identified NEBs and surrounding epithelial cells. Immunohistochemistry of fixed slices demonstrated that NEBs are almost completely shielded from the airway lumen by tight junction-linked Clara-like cells. Besides the unambiguous identification of NEBs, the fluorescent dye 4-Di-2-ASP allowed microscopic identification of ciliated cells, Clara cells, and Clara-like cells in live lung slices. Using the mitochondrial uncoupler FCCP and a mitochondrial membrane potential indicator, JC-1, increases in 4-Di-2-ASP fluorescence in NEB cells and ciliated cells were shown to represent alterations in mitochondrial membrane potential. Changes in the intracellular free calcium concentration (Ca2+) in NEBs and surrounding airway epithelial cells were simultaneously monitored using the calcium indicator Fluo-4. Application (5 s) of 50 mM extracellular potassium (K+) evoked a fast and reproducible Ca2+ increase in NEB cells, while Clara-like cells displayed a delayed (+/- 4 s) Ca2+ increase, suggestive of an indirect, NEB-mediated activation. The presented approach opens interesting new perspectives for unraveling the functional significance of pulmonary NEBs in control lungs and disease models, and for the first time allows direct visualization of local interactions within the NEB microenvironment.
肺神经上皮小体(NEBs)是神经内分泌细胞密集分布的群体,总是伴有类克拉拉细胞。类克拉拉细胞与NEBs一起形成了所谓的“NEB微环境”,最近该微环境被认为是一个潜在的肺干细胞龛。目前尚缺乏关于NEBs生理刺激本质的确切数据。本研究旨在开发一种离体小鼠肺振动切片模型,用于对已识别的NEBs和周围上皮细胞的生理反应进行共聚焦活细胞成像。固定切片的免疫组织化学显示,紧密连接的类克拉拉细胞几乎完全将NEBs与气道腔隔离开来。除了能明确识别NEBs外,荧光染料4-Di-2-ASP还能在活肺切片中通过显微镜识别纤毛细胞、克拉拉细胞和类克拉拉细胞。使用线粒体解偶联剂FCCP和线粒体膜电位指示剂JC-1,结果显示NEB细胞和纤毛细胞中4-Di-2-ASP荧光的增加代表线粒体膜电位的改变。使用钙指示剂Fluo-4同时监测NEBs和周围气道上皮细胞内游离钙浓度([Ca2+]i)的变化。施加50 mM细胞外钾([K+]o)5 s可引起NEB细胞中[Ca2+]i快速且可重复的增加,而类克拉拉细胞则显示出延迟(±4 s)的[Ca2+]i增加,提示为间接的、由NEB介导的激活。所提出的方法为阐明肺NEBs在对照肺和疾病模型中的功能意义开辟了有趣的新视角,并且首次实现了对NEB微环境内局部相互作用的直接可视化。