4.7 Article

Directed neural differentiation of human embryonic stem cells via an obligated primitive anterior stage

Journal

STEM CELLS
Volume 25, Issue 6, Pages 1511-1520

Publisher

ALPHAMED PRESS
DOI: 10.1634/stemcells.2006-0707

Keywords

neural differentiation; neural stem cells; Pax6; neural induction

Funding

  1. NCRR NIH HHS [R21 RR016588, R21 RR016588-02] Funding Source: Medline
  2. NICHD NIH HHS [P30 HD003352-40, P30 HD003352] Funding Source: Medline
  3. NINDS NIH HHS [R01 NS045926-02S1, R01 NS045926-03, R01 NS045926, R01 NS045926-02, R01 NS045926-01] Funding Source: Medline

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Understanding neuroectoderm formation and subsequent diversification to functional neural subtypes remains elusive. We show here that human embryonic stem cells (hESCs) differentiate to primitive neuroectoderm after 8-10 days. At this stage, cells uniformly exhibit columnar morphology and express neural markers, including anterior but not posterior homeodomain proteins. The anterior identity of these cells develops regardless of morphogens present during initial neuroectoderm specification. This anterior phenotype can be maintained or transformed to a caudal fate with specific morphogens over the next week, when cells become definitive neuroepithelia, marked by neural tube-like structures with distinct adhesion molecule expression, Sox1 expression, and a resistance to additional patterning signals. Thus, primitive neuroepithelia represents the earliest neural cells that possess the potential to differentiate to regionally specific neural progenitors. This finding offers insights into early human brain development and lays a foundation for generating neural cells with correct positional and transmitter profiles.

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