1. DIO2-deficient mice are protected against cartilage damage in a model of exercise-induced OA. (April 2015) Authors: Bomer, N.; Cornelis, F.M.; Ramos, Y.F.; Hollander, W. den; Storms, L.; van der Breggen, R.; Lakenberg, N.; Slagboom, P.E.; Meulenbelt, I.; Lories, R.J. Journal: Osteoarthritis and cartilage Issue: Volume 23(2015)Supplement 2 Page Start: A37 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
2. DIO2-knockout modulates circadian clock genes in articular cartilage through thyroid hormone signaling. (April 2015) Authors: Bomer, N.; Cornelis, F.M.; Ramos, Y.F.; Hollander, W. den; Lakenberg, N.; van der Breggen, R.; Storms, L.; Slagboom, P.E.; Lories, R.J.; Meulenbelt, I. Journal: Osteoarthritis and cartilage Issue: Volume 23(2015)Supplement 2 Page Start: A67 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
3. Genetic variants in the SUPT3H-RUNX2 locus confer susceptibility for bone and cartilage related disorders via long-range regulation of RUNX2. (April 2015) Authors: Boer, C.G.; Narcisi, R.; Ramos, Y.F.; Hollander, W. den; Bomer, N.; Betancourt, M.C. Castano; Uitterlinden, A.G.; van Osch, G.; Meulenbelt, I.; van Meurs, J.J. Journal: Osteoarthritis and cartilage Issue: Volume 23(2015)Supplement 2 Page Start: A71 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
4. Neo-cartilage engineered from primary chondrocytes is epigenetically similar to autologous cartilage, in contrast to using mesenchymal stem cells. (April 2016) Authors: Bomer, N.; den Hollander, W.; Suchiman, E.; Houtman, E.; Slieker, R.C.; Heijmans, B.T.; Slagboom, P.E.; Nelissen, R.G.; Ramos, Y.F.; Meulenbelt, I. Journal: Osteoarthritis and cartilage Issue: Volume 24(2016)Supplement 1 Page Start: S227 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
5. Neo-cartilage engineered from primary chondrocytes is epigenetically similar to autologous cartilage, in contrast to using mesenchymal stem cells. Issue 8 (August 2016) Authors: Bomer, N.; den Hollander, W.; Suchiman, H.; Houtman, E.; Slieker, R.C.; Heijmans, B.T.; Slagboom, P.E.; Nelissen, R.G.H.H.; Ramos, Y.F.M.; Meulenbelt, I. Journal: Osteoarthritis and cartilage Issue: Volume 24:Issue 8(2016) Page Start: 1423 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
6. Risk prediction using epigenetic profiles in blood of osteoarthritis patients. (April 2015) Authors: Ramos, Y.F.; Hollander, W. den; Lakenberg, N.; van der Breggen, R.; Bomer, N.; Kroon, H.; Kloppenburg, M.; Slagboom, P.; Meulenbelt, I. Journal: Osteoarthritis and cartilage Issue: Volume 23(2015)Supplement 2 Page Start: A73 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗