Xu Quan, Halle Lennard, Hediyeh-Zadeh Soroor, Kuijs Merel, Riedweg Rya, Kilik Umut, Recaldin Timothy, Yu Qianhui, Rall Isabell, Frum Tristan, Adam Lukas, Parikh Shrey, Kfuri-Rubens Raphael, Gander Manuel, Klein Dominik, Curion Fabiola, He Zhisong, Fleck Jonas Simon, Oost Koen, Kahnwald Maurice, Barbiero Silvia, Mitrofanova Olga, Maciag Grzegorz Jerzy, Jensen Kim B, Lutolf Matthias, Liberali Prisca, Spence Jason R, Gjorevski Nikolche, Beumer Joep, Treutlein Barbara, Theis Fabian J, Camp J Gray
Institute of Human Biology (IHB), Roche Pharma Research and Early Development, Roche Innovation Center, Basel, Switzerland.
Department of Computational Health, Institute of Computational Biology, Helmholtz Center Munich, Munich, Germany.
Nat Genet. 2025 May;57(5):1201-1212. doi: 10.1038/s41588-025-02182-6. Epub 2025 May 12.
Human pluripotent stem cells and tissue-resident fetal and adult stem cells can generate epithelial tissues of endodermal origin in vitro that recapitulate aspects of developing and adult human physiology. Here, we integrate single-cell transcriptomes from 218 samples covering organoids and other models of diverse endoderm-derived tissues to establish an initial version of a human endoderm-derived organoid cell atlas. The integration includes nearly one million cells across diverse conditions, data sources and protocols. We compare cell types and states between organoid models and harmonize cell annotations through mapping to primary tissue counterparts. Focusing on the intestine and lung, we provide examples of mapping data from new protocols and show how the atlas can be used as a diverse cohort to assess perturbations and disease models. The human endoderm-derived organoid cell atlas makes diverse datasets centrally available and will be valuable to assess fidelity, characterize perturbed and diseased states, and streamline protocol development.
人类多能干细胞以及组织驻留的胎儿和成体干细胞能够在体外生成内胚层来源的上皮组织,这些组织重现了发育中和成体人类生理学的某些方面。在此,我们整合了来自218个样本的单细胞转录组,这些样本涵盖了类器官以及其他多种内胚层衍生组织的模型,以建立人类内胚层衍生类器官细胞图谱的初始版本。整合过程包括跨越不同条件、数据来源和实验方案的近一百万个细胞。我们比较了类器官模型之间的细胞类型和状态,并通过映射到原始组织对应物来统一细胞注释。以肠道和肺为例,我们展示了来自新实验方案的映射数据示例,并说明了该图谱如何用作一个多样化的队列来评估扰动和疾病模型。人类内胚层衍生类器官细胞图谱使各种数据集能够集中获取,对于评估保真度、表征扰动和疾病状态以及简化实验方案开发将具有重要价值。