Hofer Moritz, Duque-Correa Maria A, Lutolf Matthias P
Laboratory of Stem Cell Bioengineering, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Wellcome-MRC Cambridge Stem Cell Institute, University of Cambridge, Cambridge, UK.
Nat Biomed Eng. 2024 Dec 4. doi: 10.1038/s41551-024-01313-4.
Organoids for modelling the physiology and pathology of gastrointestinal tissues are constrained by a poorly accessible lumen. Here we report the development and applicability of bilaterally accessible organoid-derived patterned epithelial monolayers that allow the independent manipulation of their apical and basal sides. We constructed gastric, small-intestinal, caecal and colonic epithelial models that faithfully reproduced their respective tissue geometries and that exhibited stem cell regionalization and transcriptional resemblance to in vivo epithelia. The models' enhanced observability allowed single-cell tracking and studies of the motility of cells in immersion culture and at the air-liquid interface. Models mimicking infection of the caecal epithelium by the parasite Trichuris muris allowed us to live image syncytial tunnel formation. The enhanced observability of bilaterally accessible organoid-derived gastrointestinal tissue will facilitate the study of the dynamics of epithelial cells and their interactions with pathogens.
用于模拟胃肠道组织生理学和病理学的类器官受到难以触及的管腔的限制。在此,我们报告了双侧可及的类器官衍生的图案化上皮单层的开发及其适用性,该上皮单层允许对其顶端和基底侧进行独立操作。我们构建了胃、小肠、盲肠和结肠上皮模型,这些模型忠实地再现了它们各自的组织几何形状,并表现出干细胞区域化以及与体内上皮细胞的转录相似性。这些模型增强的可观察性使得在浸没培养和空气-液体界面中进行单细胞追踪以及细胞运动性研究成为可能。模拟寄生虫毛首鞭形线虫感染盲肠上皮的模型使我们能够实时成像合胞体隧道的形成。双侧可及的类器官衍生的胃肠道组织增强的可观察性将有助于研究上皮细胞的动态及其与病原体的相互作用。