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胚胎青蛙表皮:黏液纤毛疾病发育中细胞-细胞相互作用研究的模型。

Embryonic frog epidermis: a model for the study of cell-cell interactions in the development of mucociliary disease.

机构信息

Faculty of Life Sciences, University of Manchester, Manchester, UK.

出版信息

Dis Model Mech. 2011 Mar;4(2):179-92. doi: 10.1242/dmm.006494. Epub 2010 Dec 23.

Abstract

Specialised epithelia such as mucociliary, secretory and transporting epithelia line all major organs, including the lung, gut and kidney. Malfunction of these epithelia is associated with many human diseases. The frog embryonic epidermis possesses mucus-secreting and multiciliated cells, and has served as an excellent model system for the biogenesis of cilia. However, ionic regulation is important for the function of all specialised epithelia and it is not clear how this is achieved in the embryonic frog epidermis. Here, we show that a third cell type develops alongside ciliated and mucus-secreting cells in the tadpole skin. These cells express high levels of ion channels and transporters; therefore, we suggest that they are analogous to ionocytes found in transporting epithelia such as the mammalian kidney. We show that frog ionocytes express the transcription factor foxi1e, which is required for the development of these cells. Depletion of ionocytes by foxi1e knockdown has detrimental effects on the development of multiciliated cells, which show fewer and aberrantly beating cilia. These results reveal a newly identified role for ionocytes and suggest that the frog embryonic skin is a model system that is particularly suited to studying the interactions of different cell types in mucociliary, as well as in secretory and transporting, epithelia.

摘要

特化上皮,如黏液纤毛、分泌和转运上皮,遍布所有主要器官,包括肺、肠道和肾脏。这些上皮的功能障碍与许多人类疾病有关。青蛙胚胎表皮具有分泌黏液和多纤毛细胞,是研究纤毛发生的理想模型系统。然而,离子调节对于所有特化上皮的功能都很重要,目前尚不清楚在胚胎青蛙表皮中是如何实现的。在这里,我们发现在蝌蚪皮肤中,除了纤毛细胞和分泌黏液细胞外,还会发育出第三种细胞类型。这些细胞表达高水平的离子通道和转运蛋白;因此,我们推测它们类似于在哺乳动物肾脏等转运上皮中发现的离子细胞。我们发现,青蛙离子细胞表达转录因子 foxi1e,该基因对于这些细胞的发育是必需的。通过 foxi1e 敲低耗尽离子细胞会对多纤毛细胞的发育产生不利影响,导致纤毛数量减少和异常摆动。这些结果揭示了离子细胞的新作用,并表明青蛙胚胎皮肤是一种特别适合研究黏液纤毛、分泌和转运上皮中不同细胞类型相互作用的模型系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57af/3046089/ded3f2dd7d79/DMM006494F1.jpg

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