Stromal Cell–Derived Inducing Activity, Nurr1, and Signaling Molecules Synergistically Induce Dopaminergic Neurons from Mouse Embryonic Stem Cells
Open Access
- 1 September 2005
- journal article
- research article
- Published by Oxford University Press (OUP) in The International Journal of Cell Cloning
- Vol. 24 (3) , 557-567
- https://doi.org/10.1634/stemcells.2005-0233
Abstract
To induce differentiation of embryonic stem cells (ESCs) into specialized cell types for therapeutic purposes, it may be desirable to combine genetic manipulation and appropriate differentiation signals. We studied the induction of dopaminergic (DA) neurons from mouse ESCs by overexpressing the transcription factor Nurr1 and coculturing with PA6 stromal cells. Nurr1-expressing ESCs (N2 and N5) differentiated into a higher number of neurons (∼twofold) than the naïve ESCs (D3). In addition, N2/N5-derived cells contained a significantly higher proportion (>50%) of tyrosine hydroxylase (TH)+ neurons than D3 (<30%) and an even greater proportion of TH+ neurons (∼90%) when treated with the signaling molecules sonic hedgehog, fibroblast growth factor 8, and ascorbic acid. N2/N5-derived cells express much higher levels of DA markers (e.g., TH, dopamine transporter, aromatic amino acid decarboxylase, and G protein–regulated inwardly rectifying K+ channel 2) and produce and release a higher level of dopamine, compared with D3-derived cells. Furthermore, the majority of generated neurons exhibited electrophysiological properties characteristic of midbrain DA neurons. Finally, transplantation experiments showed efficient in vivo integration/generation of TH+ neurons after implantation into mouse striatum. Taken together, our results show that the combination of genetic manipulation(s) and in vitro cell differentiation conditions offers a reliable and effective induction of DA neurons from ESCs and may pave the way for future cell transplantation therapy in Parkinson's disease.Keywords
This publication has 47 references indexed in Scilit:
- In vitroandin vivoanalyses of human embryonic stem cell‐derived dopamine neuronsJournal of Neurochemistry, 2005
- The homeodomain transcription factor Pitx3 facilitates differentiation of mouse embryonic stem cells into AHD2-expressing dopaminergic neuronsMolecular and Cellular Neuroscience, 2004
- Evidence of a Pluripotent Human Embryonic Stem Cell Line Derived from a Cloned BlastocystScience, 2004
- Optimal conditions for in vivo induction of dopaminergic neurons from embryonic stem cells through stromal cell‐derived inducing activityJournal of Neuroscience Research, 2002
- Directed Differentiation of Embryonic Stem Cells into Motor NeuronsCell, 2002
- Specification of catecholaminergic and serotonergic neuronsNature Reviews Neuroscience, 2002
- In vitro differentiation of transplantable neural precursors from human embryonic stem cellsNature Biotechnology, 2001
- Embryo-Derived Stem Cells: Of Mice and MenAnnual Review of Cell and Developmental Biology, 2001
- Efficient generation of midbrain and hindbrain neurons from mouse embryonic stem cellsNature Biotechnology, 2000
- Dopamine Biosynthesis Is Selectively Abolished in Substantia Nigra/Ventral Tegmental Area but Not in Hypothalamic Neurons in Mice with Targeted Disruption of the Nurr1 GeneMolecular and Cellular Neuroscience, 1998