Warschkau David, Delgado-Betancourt Estefanía, Holthaus David, Müller Antonia, Kliem Gudrun, Krug Susanne M, Schulzke Joerg-Dieter, Aebischer Toni, Klotz Christian, Seeber Frank
FG 16: Mycotic and Parasitic Agents and Mycobacteria, Robert Koch-Institute, Berlin, Germany.
Department of Gastroenterology, Rheumatology and Infectious Diseases, Clinical Physiology/Nutritional Medicine, Charité - Universitätsmedizin Berlin, Berlin, Germany.
Bio Protoc. 2022 Jan 20;12(2):e4295. doi: 10.21769/BioProtoc.4295.
In the expanding field of intestinal organoid research, various protocols for three- and two-dimensional organoid-derived cell cultures exist. Two-dimensional organoid-derived monolayers are used to overcome some limitations of three-dimensional organoid cultures. They are increasingly used also in infection research, to study physiological processes and tissue barrier functions, where easy experimental access of pathogens to the luminal and/or basolateral cell surface is required. This has resulted in an increasing number of publications reporting different protocols and media compositions for organoid manipulation, precluding direct comparisons of research outcomes in some cases. With this in mind, here we describe a protocol aimed at the harmonization of seeding conditions for three-dimensional intestinal organoids of four commonly used research species onto cell culture inserts, to create organoid-derived monolayers that form electrophysiologically tight epithelial barriers. We give an in-depth description of media compositions and culture conditions for creating these monolayers, enabling also the less experienced researchers to obtain reproducible results within a short period of time, and which should simplify the comparison of future studies between labs, but also encourage others to consider these systems as alternative cell culture models in their research. Graphic abstract: ECM, extracellular matrix; ODM, organoid-derived monolayer.
在不断拓展的肠道类器官研究领域,存在多种用于三维和二维类器官衍生细胞培养的方案。二维类器官衍生的单层细胞用于克服三维类器官培养的一些局限性。它们在感染研究中也越来越多地被使用,以研究生理过程和组织屏障功能,这些研究需要病原体能够轻松接触到管腔和/或基底外侧细胞表面。这导致越来越多的出版物报道了不同的类器官操作方案和培养基成分,在某些情况下妨碍了对研究结果的直接比较。考虑到这一点,我们在此描述一种方案,旨在使四种常用研究物种的三维肠道类器官接种到细胞培养插入物上的条件标准化,以创建形成电生理紧密上皮屏障的类器官衍生单层细胞。我们深入描述了用于创建这些单层细胞的培养基成分和培养条件,使经验较少的研究人员也能在短时间内获得可重复的结果,这不仅应简化各实验室未来研究之间的比较,还应鼓励其他人在研究中考虑将这些系统作为替代细胞培养模型。图形摘要:ECM,细胞外基质;ODM,类器官衍生单层细胞。