Scinovex
article Open AccessTop 1% cited

Activin A Maintains Pluripotency of Human Embryonic Stem Cells in the Absence of Feeder Layers

Stem Cells · 2005 · Vol. 23(4) · pp. 489–495
Gillian M. BeattieAna D. LopezNathan BucayAndrew HintonMeri T. FirpoCharles C. KingAlberto Hayek

Abstract

To date, all human embryonic stem cells (hESCs) available for research require unidentified soluble factors secreted from feeder layers to maintain the undifferentiated state and pluripotency. Activation of STAT3 by leukemia inhibitory factor is required to maintain "stemness" in mouse embryonic stem cells, but not in hESCs, suggesting the existence of alternate signaling pathways for self-renewal and pluripotency in human cells. Here we show that activin A is secreted by mouse embryonic feeder layers (mEFs) and that culture medium enriched with activin A is capable of maintaining hESCs in the undifferentiated state for >20 passages without the need for feeder layers, conditioned medium from mEFs, or STAT3 activation. hESCs retained both normal karyotype and markers of undifferentiated cells, including Oct-4, nanog, and TRA-1-60 and remained pluripotent, as shown by the in vivo formation of teratomas.

Pluripotent Stem Cells ResearchCRISPR and Genetic EngineeringRenal and related cancersEmbryonic stem cellHomeobox protein NANOGBiologyKOSRCell biologyLeukemia inhibitory factorStem cellRex1Induced pluripotent stem cellNanog Homeobox Protein

MeSH terms

Nanog Homeobox ProteinAnimalsAntigens, SurfaceCell DifferentiationCells, CulturedCulture MediaDNA-Binding ProteinsEmbryo, MammalianGlycoproteinsHumansKaryotypingLamininNiacinamideProteoglycansTeratoma

Funding

  • Larry L. Hillblom Foundation
  • National Institutes of Health
  • University of California, San Diego
Citations
498
FWCI
19.30
field-weighted impact
References
29
Percentile
100%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.