Differentiation of primate ES cells into retinal cells induced by ES cell-derived pigmented cells

  • Fengming Yue
  • , Kohei Johkura
  • , Sakiko Shirasawa
  • , Tadayuki Yokoyama
  • , Yuji Inoue
  • , Daihachiro Tomotsune
  • , Katsunori Sasaki

Research output: Contribution to journalArticlepeer-review

22 Scopus citations

Abstract

Purpose: Photoreceptors cannot regenerate and recover their functions once disordered. Transplantation of retinal pigment epithelium (RPE) has recently become a possible therapeutic approach for retinal degeneration. In the present study, we investigated the induction of photoreceptors by coculturing primate embryonic stem cells (ESCs) with ESC-derived RPE cells. Methods: RPE cells were derived by coculturing ESCs and Sertoli cells. Photoreceptors were then induced by using ESC-derived RPE cells and retinoic acid (RA) Results: RPE cell generation was confirmed by morphological analysis, which revealed highly pigmented polygonal cells with a compact cell-cell arrangement. After coculturing ESCs and RPE cells, some ESC derivatives became immunopositive for rhodopsin. RT-PCR analysis demonstrated the expression of retina-related gene markers such as Pax6, CRX, IRBP, rhodopsin, rhodopsin kinase, and Muschx10A. When RA was added, a distinct increase in the expression of photoreceptor-specific proteins and genes was found. In addition, the differentiation of bipolar horizontal cells was demonstrated by protein and gene expression. The ESCs that were cocultured with RPE cells and treated with RA were transplanted into the renal capsule or intra-vitreal space of nude mice. Grafted ESC derivatives demonstrated extensive rhodopsin expression, and they survived and organized into recipient tissues, although they formed teratomas. Conclusion: These results indicate that coculturing ESCs with ESC-derived RPE cells is a useful and efficient method for inducing photoreceptors and providing an insight into the use of ESCs for retina regeneration.

Original languageEnglish
Pages (from-to)877-883
Number of pages7
JournalBiochemical and Biophysical Research Communications
Volume394
Issue number4
DOIs
StatePublished - 16 Apr 2010
Externally publishedYes

Keywords

  • Coculture
  • Differentiation
  • Primate embryonic stem cells
  • Retinal cells
  • Retinal pigmented epithelium
  • Retinoic acid

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