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Integration of BMP, Wnt, and notch signaling pathways in osteoblast differentiation

Journal of Cellular Biochemistry · 2011 · Vol. 112(12) · pp. 3491–3501
Grace L. LinKurt D. Hankenson

Abstract

Bone marrow-derived mesenchymal stem cells (MSCs) are multipotent progenitors that can commit to osteoblast, chondrocyte, adipocyte, and several other lineages. The proper utilization of stem cells for clinical applications requires an integrated understanding of multiple signal inputs that control maintenance of stemness, proliferation, commitment, and differentiation. Various signaling pathways have been implicated in the regulation of MSC differentiation; however, complexities of pathway interactions, as well as seemingly contradictory results in the literature, create an often confusing and disjointed knowledge base. Several recent publications explore the integration of signaling pathways such as BMP, Wnt, Notch, Hedgehog, and Fibroblast Growth Factors in MSC osteoblast differentiation. The transcription factor Cbfa1/Runx2 has been implicated in these pathways as a potential focal point for signaling integration. This review will outline the current understanding of these pathways and indicate where both spatiotemporal effects during differentiation and comparable experimental conditions need to be considered in order to clarify the outcome(s) of differing regulatory levels of these signaling pathways.

TGF-β signaling in diseasesWnt/β-catenin signaling in development and cancerBone Metabolism and DiseasesWnt signaling pathwayRUNX2Cell biologyOsteoblastBiologySignal transductionNotch signaling pathwayProgenitor cellMesenchymal stem cellCellular differentiation

MeSH terms

AnimalsCell DifferentiationHumansOsteoblastsSignal TransductionBone Morphogenetic ProteinsCore Binding Factor Alpha 1 SubunitWnt ProteinsReceptors, Notch

Funding

  • National Institutes of Health
Citations
500
FWCI
10.91
field-weighted impact
References
91
Percentile
99%
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