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Identification of embryonic stem cell–derived midbrain dopaminergic neurons for engraftment
Yosif M. Ganat, … , Urs Rutishauser, Lorenz Studer
Yosif M. Ganat, … , Urs Rutishauser, Lorenz Studer
Published July 2, 2012
Citation Information: J Clin Invest. 2012;122(8):2928-2939. https://doi.org/10.1172/JCI58767.
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Research Article

Identification of embryonic stem cell–derived midbrain dopaminergic neurons for engraftment

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Abstract

Embryonic stem cells (ESCs) represent a promising source of midbrain dopaminergic (DA) neurons for applications in Parkinson disease. However, ESC-based transplantation paradigms carry a risk of introducing inappropriate or tumorigenic cells. Cell purification before transplantation may alleviate these concerns and enable identification of the specific DA neuron stage most suitable for cell therapy. Here, we used 3 transgenic mouse ESC reporter lines to mark DA neurons at 3 stages of differentiation (early, middle, and late) following induction of differentiation using Hes5::GFP, Nurr1::GFP, and Pitx3::YFP transgenes, respectively. Transplantation of FACS-purified cells from each line resulted in DA neuron engraftment, with the mid-stage and late-stage neuron grafts being composed almost exclusively of midbrain DA neurons. Mid-stage neuron cell grafts had the greatest amount of DA neuron survival and robustly induced recovery of motor deficits in hemiparkinsonian mice. Our data suggest that the Nurr1+ stage (middle stage) of neuronal differentiation is particularly suitable for grafting ESC-derived DA neurons. Moreover, global transcriptome analysis of progeny from each of the ESC reporter lines revealed expression of known midbrain DA neuron genes and also uncovered previously uncharacterized midbrain genes. These data demonstrate remarkable fate specificity of ESC-derived DA neurons and outline a sequential stage-specific ESC reporter line paradigm for in vivo gene discovery.

Authors

Yosif M. Ganat, Elizabeth L. Calder, Sonja Kriks, Jenny Nelander, Edmund Y. Tu, Fan Jia, Daniela Battista, Neil Harrison, Malin Parmar, Mark J. Tomishima, Urs Rutishauser, Lorenz Studer

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Figure 6

In vivo confirmation of UNCX4.1 and PBX1 expression in the adult mouse SN and human fetal midbrain (6–8 weeks after conception).

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In vivo confirmation of UNCX4.1 and PBX1 expression in the adult mouse S...
Immuno­histo­chemistry for UNCX4.1 ([A] UNCX4.1 in single channel; [B] UNCX4.1/TH/DAPI in merged image) and PBX1 ([C] PBX1 in single channel; [D] PBX1/TH/DAPI in merged image) in the adult mouse SN. Immuno­histochemistry in human fetal midbrain tissue for (E–G) UNCX4.1 and (H–J) PBX1 demonstrated similar perinuclear and nuclear staining patterns, respectively. Scale bar: 200 μm (A–D); 100 μm (E, F, H, and I); 25 μm (G, J, and insets for A–D).

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