Scinovex
articleTop 10% cited

Stem Cell Properties of Human Dental Pulp Stem Cells

Journal of Dental Research · 2002 · Vol. 81(8) · pp. 531–535
Stan GronthosJaime S. BrahimW. LiLarry W. FisherNatasha ChermanA. BoydePamela DenBestenPamela Gehron RobeySongtao Shi

Abstract

In this study, we characterized the self-renewal capability, multi-lineage differentiation capacity, and clonogenic efficiency of human dental pulp stem cells (DPSCs). DPSCs were capable of forming ectopic dentin and associated pulp tissue in vivo. Stromal-like cells were reestablished in culture from primary DPSC transplants and re-transplanted into immunocompromised mice to generate a dentin-pulp-like tissue, demonstrating their self-renewal capability. DPSCs were also found to be capable of differentiating into adipocytes and neural-like cells. The odontogenic potential of 12 individual single-colony-derived DPSC strains was determined. Two-thirds of the single-colony-derived DPSC strains generated abundant ectopic dentin in vivo, while only a limited amount of dentin was detected in the remaining one-third. These results indicate that single-colony-derived DPSC strains differ from each other with respect to their rate of odontogenesis. Taken together, these results demonstrate that DPSCs possess stem-cell-like qualities, including self-renewal capability and multi-lineage differentiation.

Mesenchymal stem cell researchdental development and anomaliesBone and Dental Protein StudiesDental pulp stem cellsPulp (tooth)Stem cellDentinOdontoblastCell biologyBiologyStromal cellDentin sialophosphoproteinDentistry

MeSH terms

Tartrate-Resistant Acid PhosphataseDentin SialophosphoproteinAcid PhosphataseAdultAnimalsCell DifferentiationCell DivisionClone CellsCollagenDental PulpDentinDentinogenesisFlow CytometryHumansIsoenzymes

Funding

  • NHLBI Division of Intramural Research
Citations
2,098
FWCI
10.81
field-weighted impact
References
24
Percentile
99%
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.