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Showing results 1 to 20 of 20
Full TextIssue DateTitleAuthor(s)
2004TGF-beta induces proangiogenic and antiangiogenic factors via parallel but distinct Smad pathwaysNakagawa, T.; Li, J.; Garcia, G.; Mu, W.; Piek, E., et al
2004Identification of novel regulators associated with early-phase osteoblast differentiation.Jong, D.S. de; Vaes, B.L.T.; Dechering, K.J.; Feijen, A.; Hendriks, J.M., et al
2004Regulation of Notch signaling genes during BMP2-induced differentiation of osteoblast precursor cells.Jong, D.S. de; Steegenga, W.T.; Hendriks, J.M.; Zoelen, E.J.J. van; Olijve, W., et al
2005Least Absolute Regression Network Analysis of the murine osteoblast differentiation networkSomeren, E.P. van; Vaes, B.L.T.; Steegenga, W.T.; Sijbers, A.M.; Dechering, K.J., et al
2005Microarray analysis reveals expression regulation of Wnt antagonists in differentiating osteoblastsVaes, B.L.T.; Dechering, K.J.; Someren, E.P. van; Hendriks, J.M.; Ven, C.J. van de, et al
2006Negative constraints underlie the ErbB specificity of epidermal growth factor-like ligandsWoning, S.P. van der; Rotterdam, W. van; Nabuurs, S.B.; Venselaar, H.; Jacobs-Oomen, S., et al
2006Epidermal growth factor mutant with wild-type affinity for both ErbB1 and ErbB3Wingens, M.; Jacobs-Oomen, S.; Woning, S.P. van der; Stortelers, C.; Zoelen, E.J.J. van
2006Microarray analysis on Runx2-deficient mouse embryos reveals novel Runx2 functions and target genes during intramembranous and endochondral bone formationVaes, B.L.T.; Ducy, P.; Sijbers, A.M.; Hendriks, J.M.A.; Someren, E.P. van, et al
2007TGF-beta family signaling in skeletal development, maintenance, and disease.Alliston, T.; Piek, E.; Derynck, R.; Miyazono,K., Derynck, R.
2007TGF-beta family signaling in mesenchymal differentiationDerynck, R.; Piek, E.; Schneider, R.A.; Choy, L.; Alliston, T., et al
2007Interpretation of ANOVA models for microarray data using PCA.Haan, J.R. de; Wehrens, R.; Bauerschmidt, S.; Piek, E.; Schaik, R.C. Van, et al
2008Biological effects of rinsing morsellised bone grafts before and after impactionHannink, G.J.; Piek, E.; Hendriks, J.M.A.; Kraan, P.M. van der; Schreurs, Wim, et al
2008Sphingosine-1-Phosphate Acts as a Developmental Stage Specific Inhibitor of Platelet-Derived Growth Factor-induced Chemotaxis of OsteoblastsRoelofsen, T.; Akkers, R.; Beumer, W.; Apotheker, M.; Steeghs, I., et al
2010The effect of pkc activation and inhibition on osteogenic differentiation of human mesenchymal stem cellsLiu, J.; Someren, E.P. van; Mentink, A.; Licht, R.; Dechering, K.J., et al
2010Effect of chordin-like 1 on mc3t3-e1 and human mesenchymal stem cellsFernandes, H.; Dechering, K.J.; Someren, E.P. van; Steeghs, I.; Apotheker, M., et al
2010Osteo-transcriptomics of human mesenchymal stem cells: Accelerated gene expression and osteoblast differentiation induced by vitamin d reveals c-myc as an enhancer of bmp2-induced osteogenesisPiek, E.; Sleumer, L.S.; Someren, E.P. van; Heuver, L.; Haan, J.R. de, et al
2010Delineation of amplification, hybridization and location effects in microarray data yields better-quality normalizationHulsman, M.; Mentink, A.; Someren, E.P. van; Dechering, K.J.; Boer, J. de, et al
2011Structural basis for agonism and antagonism for a set of chemically related progesterone receptor modulatorsLusher, S.J.; Raaijmakers, H.C.A.; Vu-Pham, D.; Dechering, K.J.; Lam, T.W., et al
2011Epigenetics: DNA demethylation promotes skeletal myotube maturationHupkes, M.; Jonsson, M.K.; Scheenen, W.J.; Rotterdam, W. van; Sotoca Covaleda, A.M., et al
2011DNA methylation restricts spontaneous multi-lineage differentiation of mesenchymal progenitor cells, but is stable during growth factor-induced terminal differentiationHupkes, M.; Someren, E.P. van; Middelkamp, S.H.A.; Piek, E.; Zoelen, E.J. van, et al
Showing results 1 to 20 of 20

 

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