Early reduced bone formation following burn injury in rats is not inversely related to marrow adiposity
暂无分享,去创建一个
[1] Steven M. Romanelli,et al. G-CSF partially mediates effects of sleeve gastrectomy on the bone marrow niche. , 2019, The Journal of clinical investigation.
[2] J. Pettitt,et al. The skeletal cell‐derived molecule sclerostin drives bone marrow adipogenesis , 2018, Journal of cellular physiology.
[3] M. Almeida,et al. The Role of FoxOs in Bone Health and Disease. , 2018, Current topics in developmental biology.
[4] C. Rosen,et al. Bone-Fat Interaction. , 2017, Endocrinology and metabolism clinics of North America.
[5] C. Andersen,et al. The effect of burn on serum concentrations of sclerostin and FGF23. , 2015, Burns : journal of the International Society for Burn Injuries.
[6] L. Sidossis,et al. Browning of subcutaneous white adipose tissue in humans after severe adrenergic stress (1160.5) , 2014, Cell metabolism.
[7] R. Baron,et al. FGF-21 and skeletal remodeling during and after lactation in C57BL/6J mice. , 2014, Endocrinology.
[8] L. Bonewald,et al. Preliminary evidence of early bone resorption in a sheep model of acute burn injury: an observational study , 2013, Journal of Bone and Mineral Metabolism.
[9] J. Hamilton,et al. Proinflammatory cytokines inhibit osteogenic differentiation from stem cells: implications for bone repair during inflammation. , 2009, Osteoarthritis and cartilage.
[10] Y. Iwakura,et al. Increased fat:carbohydrate oxidation ratio in Il1ra−/− mice on a high-fat diet is associated with increased sympathetic tone , 2008, Diabetologia.
[11] D. Herndon,et al. Evidence supporting a role of glucocorticoids in short-term bone loss in burned children , 2004, Osteoporosis International.
[12] R. Eastell,et al. Histomorphometric and biochemical characterization of bone following acute severe burns in children. , 1995, Bone.