Acyclic retinoid induces differentiation and apoptosis of murine hepatic stem cells

Stem Cell Res Ther. 2015 Mar 26;6(1):51. doi: 10.1186/s13287-015-0046-9.

Abstract

Introduction: The therapeutic potential of acyclic retinoid (ACR), a synthetic retinoid, has been confirmed in experimental and clinical studies. Therapeutic targets include precancerous and cancer stem cells. As ACR is also involved in developmental processes, its effect on normal hepatic stem cells (HpSCs) should be investigated for understanding the underlying mechanisms. Here, we examined effects of the acyclic retinoid peretinoin on fresh isolated murine HpSCs.

Methods: We isolated c-kit-CD29+CD49f+/lowCD45-Ter119- cells from murine fetal livers using flow cytometry. To evaluate the effect of ACR, we traced clonal expansion and analyzed cell differentiation as well as apoptosis during the induction process by immunofluorescent staining and marker gene expression.

Results: ACR dose-dependently inhibited HpSCs expansion. Stem cell clonal expansion was markedly inhibited during the culture period. Moreover, ACR showed a significant promotion of HpSC differentiation and induction of cellular apoptosis. The expression of stem cell marker genes, Afp, Cd44, and Dlk, was downregulated, while that of mature hepatocyte genes, Alb and Tat, and apoptosis-related genes, Annexin V and Caspase-3, were upregulated. Flow cytometry showed that the proportion of Annexin V-positive cells increased after ACR incubation compared with the control. Data obtained by immunofluorescent staining for albumin and Caspase-3 corroborated the data on gene expression. Finally, we found that ACR directly regulates the expression of retinoic acid receptors and retinoid X receptors.

Conclusions: These findings indicate that ACR inhibits the clonal expansion of normal HpSCs in vitro and promotes the differentiation of immature cells by regulating receptors of retinoic acid.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Annexin A5 / biosynthesis
  • Apoptosis / drug effects*
  • Calcium-Binding Proteins
  • Caspase 3 / biosynthesis
  • Cell Differentiation / drug effects*
  • Cells, Cultured
  • Down-Regulation
  • Flow Cytometry
  • Gene Products, tat / biosynthesis
  • Hyaluronan Receptors / biosynthesis
  • Intercellular Signaling Peptides and Proteins / biosynthesis
  • Liver / cytology*
  • Liver Regeneration / physiology*
  • Mice
  • Mice, Inbred C57BL
  • Receptors, Retinoic Acid / metabolism
  • Stem Cells / cytology
  • Stem Cells / metabolism
  • Tretinoin / analogs & derivatives*
  • Tretinoin / pharmacology
  • Up-Regulation
  • alpha-Fetoproteins / biosynthesis

Substances

  • Annexin A5
  • Calcium-Binding Proteins
  • Cd44 protein, mouse
  • Dlk1 protein, mouse
  • Gene Products, tat
  • Hyaluronan Receptors
  • Intercellular Signaling Peptides and Proteins
  • Receptors, Retinoic Acid
  • alpha-Fetoproteins
  • Tretinoin
  • 3,7,11,15-tetramethyl-2,4,6,10,14-hexadecapentaenoic acid
  • Caspase 3