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  • Generation of a ciliary margin-like stem cell niche from self-organizing human retinal tissue.

Generation of a ciliary margin-like stem cell niche from self-organizing human retinal tissue.

Nature communications (2015-02-20)
Atsushi Kuwahara, Chikafumi Ozone, Tokushige Nakano, Koichi Saito, Mototsugu Eiraku, Yoshiki Sasai
ABSTRACT

In the developing neural retina (NR), multipotent stem cells within the ciliary margin (CM) contribute to de novo retinal tissue growth. We recently reported the ability of human embryonic stem cells (hESCs) to self-organize stratified NR using a three-dimensional culture technique. Here we report the emergence of CM-like stem cell niches within human retinal tissue. First, we developed a culture method for selective NR differentiation by timed BMP4 treatment. We then found that inhibiting GSK3 and FGFR induced the transition from NR tissue to retinal pigment epithelium (RPE), and that removing this inhibition facilitated the reversion of this RPE-like tissue back to the NR fate. This step-wise induction-reversal method generated tissue aggregates with RPE at the margin of central-peripherally polarized NR. We demonstrate that the NR-RPE boundary tissue further self-organizes a niche for CM stem cells that functions to expand the NR peripherally by de novo progenitor generation.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Rhodopsin Antibody, clone RET-P1, clone RET-P1, Chemicon®, from mouse
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Taurine, ≥98%, FG
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Mitomycin C from Streptomyces caespitosus, powder, BioReagent, suitable for cell culture
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Mitomycin C from Streptomyces caespitosus, powder, contains NaCl as solubilizer
Supelco
Taurine, Pharmaceutical Secondary Standard; Certified Reference Material
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Mitomycin C from Streptomyces caespitosus, ≥98% (HPLC), potency: ≥970 μg per mg (USP XXIV), γ-irradiated, suitable for cell culture
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