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人胚胎干细胞诱导形成的自组织类脑器官。

Self-formation of optic cups and storable stratified neural retina from human ESCs.

机构信息

Organogenesis and Neurogenesis Group, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan; Division of Human Stem Cell Technology, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan; Environmental Health Science Laboratory, Sumitomo Chemical Co., Ltd., Osaka 554-8558, Japan; Department of Medical Embryology, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan.

Organogenesis and Neurogenesis Group, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan; Division of Human Stem Cell Technology, RIKEN Center for Developmental Biology, Kobe 650-0047, Japan; Environmental Health Science Laboratory, Sumitomo Chemical Co., Ltd., Osaka 554-8558, Japan.

出版信息

Cell Stem Cell. 2012 Jun 14;10(6):771-785. doi: 10.1016/j.stem.2012.05.009.

Abstract

In this report, we demonstrate that an optic cup structure can form by self-organization in human ESC culture. The human ESC-derived optic cup is much larger than the mouse ESC-derived one, presumably reflecting the species differences. The neural retina in human ESC culture is thick and spontaneously curves in an apically convex manner, which is not seen in mouse ESC culture. In addition, human ESC-derived neural retina grows into multilayered tissue containing both rods and cones, whereas cone differentiation is rare in mouse ESC culture. The accumulation of photoreceptors in human ESC culture can be greatly accelerated by Notch inhibition. In addition, we show that an optimized vitrification method enables en bloc cryopreservation of stratified neural retina of human origin. This storage method at an intermediate step during the time-consuming differentiation process provides a versatile solution for quality control in large-scale preparation of clinical-grade retinal tissues.

摘要

在本报告中,我们证明了在人 ESC 培养物中可以通过自组织形成视杯结构。人 ESC 衍生的视杯比鼠 ESC 衍生的视杯大得多,这可能反映了物种差异。人 ESC 培养物中的神经视网膜较厚,并自发地以凸面向上的方式弯曲,而在鼠 ESC 培养物中则看不到这种情况。此外,人 ESC 衍生的神经视网膜生长为含有棒状细胞和锥状细胞的多层组织,而锥状细胞分化在鼠 ESC 培养物中很少见。Notch 抑制可大大加速人 ESC 培养物中光感受器的积累。此外,我们还表明,优化的玻璃化方法可实现人源分层神经视网膜的整块冷冻保存。这种在耗时的分化过程中的中间步骤进行的储存方法为大规模制备临床级视网膜组织的质量控制提供了一种通用的解决方案。

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