Searchable abstracts of presentations at key conferences on calcified tissues

ba0001oc4.5 | Osteoblasts and osteocytes | ECTS2013

Mechanical loading increases the effect of sclerostin antibody treatment in a mouse model of high turnover osteoporosis

von Salis-Soglio Marcella , Kuhn Gisela , Kneissel Michaela , Muller Ralph

Sclerostin, a Wnt signaling antagonist encoded by the SOST gene, negatively regulates osteoblasts and inhibits bone formation. Mechanical loading, which induces bone formation, leads to a decrease in sclerostin levels. Recently, neutralizing antibodies against sclerostin were tested successfully for the treatment of osteoporosis in rodents. However, sclerostin is not the only signal involved in mechanotransduction. Therefore we investigated whether treatment with sclerostin an...

ba0001pp437 | Osteoporosis: treatment | ECTS2013

The spatial relationship between bone formation and bone resorption in healthy and ovariectomized mice treated with PTH, bisphosphonate or mechanical loading

Ruffoni Davide , Weigt Claudia , Fattorini Elisa , Levchuk Alina , Schulte Friederike , Kuhn Gisela , Muller Ralph

Bone is continuously remodeled to remove damage, to adapt to changes in mechanical demands and to regulate calcium homeostasis. The first aim is accomplished by coupled bone formation and resorption whereas adaptation requires sites of formation to differ from those of resorption. The regulation of circulating ions is achieved by a stochastic exchange of bone packets. Here, we investigated these different aspects of remodeling in healthy and ovariectomized (OVX) mice treated w...