Regenerative & Cellular Medicine Kobe Center, Sumitomo Dainippon Pharma Co., Ltd., Chuo, Kobe, 650-0047, Japan.
Regenerative & Cellular Medicine Office, Sumitomo Dainippon Pharma Co., Ltd., Chuo, Kobe, 650-0047, Japan.
Sci Rep. 2019 Dec 12;9(1):18936. doi: 10.1038/s41598-019-55130-w.
A three-dimensional retinal tissue (3D-retina) is a promising graft source for retinal transplantation therapy. We previously demonstrated that embryonic stem cells (ESCs) can generate 3D-retina in vitro using a self-organizing stem cell culture technique known as SFEBq. Here we show an optimized culture method for 3D-retina generation from feeder-free human pluripotent stem cells (hPSCs). Although feeder-free hPSC-maintenance culture was suitable for cell therapy, feeder-free hPSC-derived aggregates tended to collapse during 3D-xdifferentiation culture. We found that the initial hPSC state was a key factor and that preconditioning of the hPSC state by modulating TGF-beta and Shh signaling improved self-formation of 3D-neuroepithelium. Using the preconditioning method, several feeder-free hPSC lines robustly differentiated into 3D-retina. In addition, changing preconditioning stimuli in undifferentiated hPSCs altered the proportions of neural retina and retinal pigment epithelium, important quality factors for 3D-retina. We demonstrated that the feeder-free hiPSC-derived 3D-retina differentiated into rod and cone photoreceptors in vitro and in vivo. Thus, preconditioning is a useful culture methodology for cell therapy to direct the initial hPSC state toward self-organizing 3D-neuroepithelium.
三维视网膜组织(3D-retina)是一种很有前途的视网膜移植治疗的移植物来源。我们之前证明,胚胎干细胞(ESCs)可以使用一种称为 SFEBq 的自组织干细胞培养技术在体外生成 3D-retina。在这里,我们展示了一种从无饲养层的人多能干细胞(hPSCs)生成 3D-retina 的优化培养方法。尽管无饲养层 hPSC 维持培养适合细胞治疗,但无饲养层 hPSC 衍生的聚集物在 3D-x 分化培养期间往往会崩溃。我们发现 hPSC 的初始状态是一个关键因素,通过调节 TGF-β和 Shh 信号来预处理 hPSC 状态可以改善 3D-神经上皮的自我形成。使用预处理方法,几种无饲养层 hPSC 系可以稳定地分化为 3D-retina。此外,改变未分化 hPSC 中的预处理刺激会改变神经视网膜和视网膜色素上皮的比例,这是 3D-retina 的重要质量因素。我们证明,无饲养层 hiPSC 衍生的 3D-retina 可以在体外和体内分化为杆状和锥状光感受器。因此,预处理是一种有用的细胞治疗培养方法,可以将初始 hPSC 状态引导为自组织的 3D-神经上皮。