Searchable abstracts of presentations at key conferences on calcified tissues

ba0005oc4.4 | Catabolism and metabolism | ECTS2016

Osteocyte-specific ablation of Pparγ improves energy metabolism and prevents fat accumulation but not bone loss in response to a high fat diet

Brun Julia , Ferrari Serge , Bonnet Nicolas

PparĪ³ is a master transcriptional regulator of energy metabolism. We demonstrated that Dmp1-Cre/Lox-mice (KO) have increased bone mass and improved energy metabolism. Here we investigated if PparĪ³-deficiency in Dmp1 cells can prevent high fat diet effects on these parameters. For this purpose, WT and KO male mice aged of 16 weeks received a high fat or chow diet (HF 60% vs CD 10% of fat) for 12 weeks. Lean and fat, bone structure, metabolic rate and tissue temperatur...

ba0005p440 | Other diseases of bone and mineral metabolism | ECTS2016

Mice lacking periostin are resistant to bone microstructural alterations during lactation

Bonnet Nicolas , Brun Julia , Ferrari Serge

Periostin is a matricellular protein expressed in late osteoblasts/osteocytes, which levels increase in response to PTH and mechanical loading. In turn periostin contributes to modeling based bone formation while restraining bone remodeling. Periostin is also a substrate of cathepsin K and inhibition of periostin blunts the effects of cathepsin K inhibition on bone. Considering the important role of osteocytes and their cathepsin K expression on osteolysis during lactation, we...