4.7 Article

Heterogeneity affects the differentiation potential of dental follicle stem cells through the TGF-β signaling pathway

期刊

BIOENGINEERED
卷 12, 期 2, 页码 12294-12307

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/21655979.2021.2009974

关键词

Dental stem cells; heterogeneity; cell differentiation

资金

  1. National Youth Natural Science Foundation of China [81700927, 81800930]
  2. Hospital Foundation of Hospital of Stomatology, Tianjin Medical University

向作者/读者索取更多资源

Adult mesenchymal stem cells are heterogeneous and play an important role in maintaining organ homeostasis by generating specialized cell populations. This study found that the differentiation capacity of Dental Follicle Stem Cells is correlated with their heterogeneous microenvironment and significantly modulated by the TGF-beta signaling pathway. Additional pathways, including Hippo and WNT pathways, also play a role in regulating the differentiation processes of stem cells.
Adult mesenchymal stem cells play an important role in maintaining organ homeostasis owing to their unique ability to generate more specialized cell populations in a coordinated manner. Adult mesenchymal stem cells are heterogeneous, a feature that is essential for their functions. However, studies have not elucidated how heterogeneity of mesenchymal stem cells affects their differentiation capacity. The current study thus explored the heterogeneous Dental Follicle Stem Cells (DFSCs). A previous study by our research group reported that selecting sub-clones can cause artificial damage of the heterogeneous microenvironment of DFSCs. The finds showed a decrease in differentiation capacity of the three subclones, although the underlying mechanism was not elucidated. In this study, cells were harvested and prepared for gene expression microarray analysis. Sequence data was used in gene ontology and pathway enrichment analysis. The results showed that downregulation of the TGF-beta signaling pathway was the main cause of changes in differentiation of sub-clones. Additional analyses revealed that the Hippo pathway, WNT pathway and signaling pathways regulating the pluripotency of stem cells were also implicated in these changes, through a cross talk with TGF-beta signaling pathway through Bmp2, Bmp4, and Bambi. In vivo implantation experiments and osteogenic induction showed that differentiation capacity of DFSCs was significantly reduced in the sub-clones. In summary, the findings of the current study show that differentiation potential of DFSCs is correlated with the heterogeneous microenvironment and TGF-beta signaling pathway significantly modulates these biological processes.

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