Functional engraftment of human ES cell-derived dopaminergic neurons enriched by coculture with telomerase-immortalized midbrain astrocytes
- PMID: 17057709
- DOI: 10.1038/nm1495
Functional engraftment of human ES cell-derived dopaminergic neurons enriched by coculture with telomerase-immortalized midbrain astrocytes
Erratum in
- Nat Med. 2007 Mar;13(3):385
Abstract
To direct human embryonic stem (HES) cells to a dopaminergic neuronal fate, we cocultured HES cells that were exposed to both sonic hedgehog and fibroblast growth factor 8 with telomerase-immortalized human fetal midbrain astrocytes. These astrocytes substantially potentiated dopaminergic neurogenesis by both WA09 and WA01 HES cells, biasing them to the A9 nigrostriatal phenotype. When transplanted into the neostriata of 6-hydroxydopamine-lesioned parkinsonian rats, the dopaminergic implants yielded a significant, substantial and long-lasting restitution of motor function. However, although rich in donor-derived tyrosine hydroxylase-expressing neurons, the grafts exhibited expanding cores of undifferentiated mitotic neuroepithelial cells, which can be tumorigenic. These results show the utility of recreating the cellular environment of the developing human midbrain while driving dopaminergic neurogenesis from HES cells, and they demonstrate the potential of the resultant cells to mediate substantial functional recovery in a model of Parkinson disease. Yet these data also mandate caution in the clinical application of HES cell-derived grafts, given their potential for phenotypic instability and undifferentiated expansion.
Comment in
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Stem cells: the good, bad and barely in control.Nat Med. 2006 Nov;12(11):1237-8. doi: 10.1038/nm1106-1237. Nat Med. 2006. PMID: 17088886 No abstract available.
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Large stem cell grafts could lead to erroneous interpretations of behavioral results?Nat Med. 2007 Feb;13(2):118; author reply 118-9. doi: 10.1038/nm0207-118a. Nat Med. 2007. PMID: 17290262 No abstract available.
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