Kang Hae Jin, Kim Hye Young
Center for Vascular Research, Institute for Basic Science.
Center for Vascular Research, Institute for Basic Science;
J Vis Exp. 2020 Jul 28(161). doi: 10.3791/61604.
Mucociliary epithelium provides the first line of defense by removing foreign particles through the action of mucus production and cilia-mediated clearance. Many clinically relevant defects in the mucociliary epithelium are inferred as they occur deep within the body. Here, we introduce a tractable 3D model for mucociliary epithelium generated from multipotent progenitors that were microsurgically isolated from Xenopus laevis embryos. The mucociliary epithelial organoids are covered with newly generated epithelium from deep ectoderm cells and later decorated with distinct patterned multiciliated cells, secretory cells, and mucus-producing goblet cells that are indistinguishable from the native epidermis within 24 h. The full sequences of dynamic cell transitions from mesenchymal to epithelial that emerge on the apical surface of organoids can be tracked by high-resolution live imaging. These in vitro cultured, self-organizing mucociliary epithelial organoids offer distinct advantages in studying the biology of mucociliary epithelium with high-efficiency in generation, defined culture conditions, control over number and size, and direct access for live imaging during the regeneration of the differentiated epithelium.
黏液纤毛上皮通过黏液分泌和纤毛介导的清除作用清除外来颗粒,从而提供第一道防线。由于许多临床上相关的黏液纤毛上皮缺陷发生在身体深处,因此只能进行推断。在这里,我们介绍一种由多能祖细胞生成的易于处理的黏液纤毛上皮三维模型,这些祖细胞是从非洲爪蟾胚胎中显微分离出来的。黏液纤毛上皮类器官覆盖着来自深层外胚层细胞新生成的上皮,随后装饰有独特模式的多纤毛细胞、分泌细胞和产生黏液的杯状细胞,这些细胞在24小时内与天然表皮无法区分。通过高分辨率实时成像可以追踪在类器官顶表面出现的从间充质到上皮的动态细胞转变的完整序列。这些体外培养的、自组织的黏液纤毛上皮类器官在研究黏液纤毛上皮生物学方面具有明显优势,具有高效生成、明确的培养条件、对数量和大小的控制以及在分化上皮再生过程中直接进行实时成像的便利性。