Puschhof Jens, Pleguezuelos-Manzano Cayetano, Martinez-Silgado Adriana, Akkerman Ninouk, Saftien Aurelia, Boot Charelle, de Waal Amy, Beumer Joep, Dutta Devanjali, Heo Inha, Clevers Hans
Hubrecht Institute, Royal Netherlands Academy of Arts and Sciences (KNAW) and UMC Utrecht, Utrecht, the Netherlands.
Oncode Institute, Hubrecht Institute, Utrecht, the Netherlands.
Nat Protoc. 2021 Oct;16(10):4633-4649. doi: 10.1038/s41596-021-00589-z. Epub 2021 Aug 11.
Adult-stem-cell-derived organoids model human epithelial tissues ex vivo, which enables the study of host-microbe interactions with great experimental control. This protocol comprises methods to coculture organoids with microbes, particularly focusing on human small intestinal and colon organoids exposed to individual bacterial species. Microinjection into the lumen and periphery of 3D organoids is discussed, as well as exposure of organoids to microbes in a 2D layer. We provide detailed protocols for characterizing the coculture with regard to bacterial and organoid cell viability and growth kinetics. Spatial relationships can be studied by fluorescence live microscopy, as well as scanning electron microscopy. Finally, we discuss considerations for assessing the impact of bacteria on gene expression and mutations through RNA and DNA sequencing. This protocol requires equipment for standard mammalian tissue culture, or bacterial or viral culture, as well as a microinjection device.
成体干细胞来源的类器官可在体外模拟人类上皮组织,从而能够在高度可控的实验条件下研究宿主与微生物的相互作用。本方案包含类器官与微生物共培养的方法,尤其侧重于将人小肠和结肠类器官暴露于单个细菌物种的情况。文中讨论了对三维类器官的管腔和周边进行显微注射的方法,以及类器官在二维层中与微生物的接触。我们提供了详细的方案,用于从细菌和类器官细胞活力以及生长动力学方面对共培养进行表征。空间关系可通过荧光活体显微镜以及扫描电子显微镜进行研究。最后,我们讨论了通过RNA和DNA测序评估细菌对基因表达和突变影响时的注意事项。本方案需要标准的哺乳动物组织培养、细菌或病毒培养设备,以及一个显微注射装置。