4.3 Article

Human Pluripotent Stem Cell Differentiation into Authentic Striatal Projection Neurons

期刊

STEM CELL REVIEWS AND REPORTS
卷 9, 期 4, 页码 461-474

出版社

SPRINGER
DOI: 10.1007/s12015-013-9441-8

关键词

Striatal neuronal differentiation; Medium spiny neurons; DARPP-32; Huntington's disease; Directed differentiation; Human embryonic stem cells; Human pluripotent stem cells

资金

  1. NeuroStemcell
  2. European Union Seventh Framework Programme [222943]
  3. Ministero dell'Istruzione dell'Universita e della Ricerca [MIUR] [2008JKSHKN]
  4. Cure Huntington's Disease Initiative (CHDI) [A-4529]
  5. Fondo per gli Investimenti della Ricerca di Base [FIRB] [RBFR10A01S]
  6. Marie Curie fellowship
  7. Unicredit Banca S.p.A. (Italy)

向作者/读者索取更多资源

Here we present the principles and steps of a protocol that we have recently developed for the differentiation of hES/iPS cells into the authentic human striatal projection medium spiny neurons (MSNs) that die in Huntington's Disease (HD). Authenticity is judged by the convergence of multiple features within individual cells. Our procedure lasts 80 days and couples neural induction via BMP/TGF-beta inhibition with exposure to the developmental factors sonic hedgehog (SHH) and dickkopf1 (DKK-1) to drive ventral telencephalic specification, followed by terminal differentiation [1]. Authenticity of the resulting neuronal population is monitored by the appearance of FOXG1(+)/GSX2(+) progenitor cells of the lateral ganglionic eminence (LGE) at day 15-25 of differentiation, followed by appearance of CTIP2-, FOXP1- and FOXP2-positive cells at day 45. These precursor cells then mature into MAP2(+)/GABA(+) neurons with 20 % of them ultimately co-expressing the DARPP-32 and CTIP2 diagnostic markers and carrying electrophysiological properties expected for fully functional MSNs. The protocol is characterized by its replicability in at least three human pluripotent cell lines. Altogether this protocol defines a useful platform for in vitro developmental neurobiology studies, drug screening, and regenerative medicine approaches.

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