GIGA Stem Cells, GIGA Institute, University of Liège, Liège, Belgium.
Department of Ophthalmology, Faculty of Medicine and CHU University Hospital, University of Liège, Liège, Belgium.
Sci Rep. 2023 Jan 21;13(1):1223. doi: 10.1038/s41598-023-28429-y.
We report the generation and analysis of single-cell RNA-Seq data (> 38,000 cells) from mouse native retinae and induced pluripotent stem cell (iPSC)-derived retinal organoids at four matched stages of development spanning the emergence of the major retinal cell types. We combine information from temporal sampling, visualization of 3D UMAP manifolds, pseudo-time and RNA velocity analyses, to show that iPSC-derived 3D retinal organoids broadly recapitulate the native developmental trajectories. However, we observe relaxation of spatial and temporal transcriptome control, premature emergence and dominance of photoreceptor precursor cells, and susceptibility of dynamically regulated pathways and transcription factors to culture conditions in retinal organoids. We demonstrate that genes causing human retinopathies are enriched in cell-type specifying genes and identify a subset of disease-causing genes with expression profiles that are highly conserved between human retinae and murine retinal organoids. This study provides a resource to the community that will be useful to assess and further improve protocols for ex vivo recapitulation and study of retinal development.
我们报告了单细胞 RNA-Seq 数据(超过 38000 个细胞)的生成和分析,这些数据来自于小鼠天然视网膜和诱导多能干细胞(iPSC)衍生的视网膜类器官,涵盖了主要视网膜细胞类型出现的四个匹配发育阶段。我们结合了时间采样、3D UMAP 流形的可视化、伪时间和 RNA 速度分析的信息,表明 iPSC 衍生的 3D 视网膜类器官广泛重现了天然的发育轨迹。然而,我们观察到转录组控制的空间和时间松弛、光感受器前体细胞的过早出现和主导地位,以及动态调节途径和转录因子对视网膜类器官培养条件的敏感性。我们证明,导致人类视网膜病变的基因在细胞类型特异性基因中富集,并确定了一组疾病相关基因,其表达谱在人类视网膜和鼠类视网膜类器官之间高度保守。这项研究为社区提供了一个资源,这将有助于评估和进一步改进体外重现和研究视网膜发育的方案。