Efficient neuronal differentiation and maturation of human pluripotent stem cells encapsulated in 3D microfibrous scaffolds

被引:45
作者
Lu, Hong Fang [1 ]
Lim, Sze-Xian [1 ]
Leong, Meng Fatt [1 ]
Narayanan, Karthikeyan [1 ]
Toh, Rebecca P. K. [1 ]
Gao, Shujun [1 ]
Wan, Andrew C. A. [1 ]
机构
[1] The Nanos, Inst Bioengn & Nanotechnol, Singapore 138669, Singapore
关键词
Neural cell; Stem cell; Scaffold; Nerve regeneration; DIRECTED DIFFERENTIATION; DOPAMINERGIC-NEURONS; NEURAL PRECURSORS; PARKINSONS-DISEASE; HIGHLY EFFICIENT; SELF-RENEWAL; LARGE-SCALE; HUMAN ES; DERIVATION; TRANSPLANTATION;
D O I
10.1016/j.biomaterials.2012.09.006
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Developing an efficient culture system for controlled human pluripotent stem cell (hPSC) differentiation into selected lineages is a major challenge in realizing stem cell-based clinical applications. Here, we report the use of chitin-alginate 3D microfibrous scaffolds, previously developed for hPSC propagation, to support efficient neuronal differentiation and maturation under chemically defined culture conditions. When treated with neural induction medium containing Noggin/retinoic acid, the encapsulated cells expressed much higher levels of neural progenitor markers SOX1 and PAX6 than those in other treatment conditions. Immunocytochemisty analysis confirmed that the majority of the differentiated cells were nestin-positive cells. Subsequently transferring the scaffolds to neuronal differentiation medium efficiently directed these encapsulated neural progenitors into mature neurons, as detected by RT-PCR and positive immunostaining for neuron markers beta III tubulin and MAP2. Furthermore, flow cytometry confirmed that >90% beta III tubulin-positive neurons was achieved for three independent iPSC and hESC lines, a differentiation efficiency much higher than previously reported. Implantation of these terminally differentiated neurons into SCID mice yielded successful neural grafts comprising MAP2 positive neurons, without tumorigenesis, suggesting a potential safe cell source for regenerative medicine. These results bring us one step closer toward realizing large-scale production of stem cell derivatives for clinical and translational applications. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:9179 / 9187
页数:9
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