TY - JOUR
T1 - Role of non-canonical Wnt signaling in osteoblast maturation on microstructured titanium surfaces
AU - Olivares-Navarrete, Rene
AU - Hyzy, Sharon L.
AU - Hutton, Daphne L.
AU - Dunn, Ginger R.
AU - Appert, Christoph
AU - Boyan, Barbara D.
AU - Schwartz, Zvi
N1 - Funding Information:
This project was supported by a grant from the National Institute of Arthritis, Musculoskeletal, and Skin Diseases at the National Institutes of Health (USPHS Grant AR052102 ). Titanium disks were provided by Institut Straumann AG (Basel, Switzerland) as a gift. The funding source had no role in the study design, data collection and analysis, data interpretation or manuscript preparation.
Funding Information:
This study was supported by a NIH USPHS Grant AR052102. Ti disks were provided by Institut Straumann AG (Basel, Switzerland) as a gift.
PY - 2011/6
Y1 - 2011/6
N2 - The Wnt signaling pathway inhibitor Dickkopf-2 (Dkk2) regulates osteoblast differentiation on microstructured titanium (Ti) surfaces, suggesting involvement of Wnt signaling in this process. To test this, human osteoblast-like MG63 cells were cultured on tissue culture polystyrene or Ti (smooth PT (Ra = 0.2 μm), sand-blasted and acid-etched SLA (Ra = 3.22 μm), modSLA (hydrophilic SLA)). Expression of Wnt pathway receptors, activators and inhibitors was measured by qPCR. Non-canonical pathway ligands, receptors and intracellular signaling molecules, as well as bone morphogenetic proteins BMP2 and BMP4, were upregulated on SLA and modSLA, whereas canonical pathway members were downregulated. To confirm that non-canonical signaling was involved, cells were cultured daily with exogenous Wnt3a (canonical pathway) or Wnt5a (non-canonical pathway). Alternatively, cells were cultured with antibodies to Wnt3a or Wnt5a to validate that Wnt proteins secreted by the cells were mediating cell responses to the surface. Wnt5a, but not Wnt3a, increased MG63 cell differentiation and BMP2 and BMP4 proteins, suggesting Wnt5a promotes osteogenic differentiation through production of BMPs. Effects of exogenous and endogenous Wnt5a were synergistic with surface microstructure, suggesting the response also depends on cell maturation state. These results indicate a major role for the non-canonical, calcium-dependent Wnt pathway in differentiation of osteoblasts on microstructured titanium surfaces during implant osseointegration.
AB - The Wnt signaling pathway inhibitor Dickkopf-2 (Dkk2) regulates osteoblast differentiation on microstructured titanium (Ti) surfaces, suggesting involvement of Wnt signaling in this process. To test this, human osteoblast-like MG63 cells were cultured on tissue culture polystyrene or Ti (smooth PT (Ra = 0.2 μm), sand-blasted and acid-etched SLA (Ra = 3.22 μm), modSLA (hydrophilic SLA)). Expression of Wnt pathway receptors, activators and inhibitors was measured by qPCR. Non-canonical pathway ligands, receptors and intracellular signaling molecules, as well as bone morphogenetic proteins BMP2 and BMP4, were upregulated on SLA and modSLA, whereas canonical pathway members were downregulated. To confirm that non-canonical signaling was involved, cells were cultured daily with exogenous Wnt3a (canonical pathway) or Wnt5a (non-canonical pathway). Alternatively, cells were cultured with antibodies to Wnt3a or Wnt5a to validate that Wnt proteins secreted by the cells were mediating cell responses to the surface. Wnt5a, but not Wnt3a, increased MG63 cell differentiation and BMP2 and BMP4 proteins, suggesting Wnt5a promotes osteogenic differentiation through production of BMPs. Effects of exogenous and endogenous Wnt5a were synergistic with surface microstructure, suggesting the response also depends on cell maturation state. These results indicate a major role for the non-canonical, calcium-dependent Wnt pathway in differentiation of osteoblasts on microstructured titanium surfaces during implant osseointegration.
KW - Cell signaling
KW - Gene expression
KW - Osteoblast differentiation
KW - Regulatory factors
KW - Titanium surface roughness
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U2 - 10.1016/j.actbio.2011.02.030
DO - 10.1016/j.actbio.2011.02.030
M3 - Article
C2 - 21352958
AN - SCOPUS:79955573487
SN - 1742-7061
VL - 7
SP - 2740
EP - 2750
JO - Acta Biomaterialia
JF - Acta Biomaterialia
IS - 6
ER -