Recently, we demonstrated that osteoblast-specific overexpression of human WNT16 increased both cortical and trabecular bone mass and structure in mice. To further identify the cell-specific role of Wnt16 in bone homeostasis, we created transgenic (TG) mice overexpressing human WNT16 in osteocytes using Dmp1 promoter (Dmp1-hWNT16 TG) on C57BL/6 (B6) background. We analyzed bone phenotypes and serum bone biomarkers, performed gene expression analysis and measured dynamic bone histomorphometry in Dmp1-hWNT16 TG and wild-type (WT) mice. Compared to WT mice, Dmp1-hWNT16 TG mice exhibited significantly higher whole-body, spine and femoral aBMD, BMC and trabecular (BV/TV, Tb.N, and Tb.Th) and cortical (bone area and thickness) parameters in both ...
Wnt signaling is important for proper embryonic development, shaping cell fate and migration, stem c...
Osteoporosis is a complex disease characterized by low bone mass, microarchitectural deterioration, ...
In the course of embryonic development skeletal elements form either through intramembranous or endo...
Previous genome-wide association studies have identified common variants in genes associated with bo...
Glucocorticoids (GC) are commonly used for the treatment of a wide variety of autoimmune, pulmonary,...
Abstract Substantial progress has been made in the therapeutic reduction of vertebral fracture risk...
We aimed to identify genetic variants associated with cortical bone thickness (CBT) and bone mineral...
We aimed to identify genetic variants associated with cortical bone thickness (CBT) and bone mineral...
Glucocorticoid-induced osteoporosis is a frequent complication of systemic glucocorticoid (GC) thera...
The WNT16 locus is a major determinant of cortical bone thickness and nonvertebral fracture risk in ...
Human genetic evidence demonstrates that WNT1 mutations cause osteogenesis imperfecta (OI) and early...
Compelling clinical data together with genetically modified mouse models have demonstrated that Wnt1...
Numerous GWAS and candidate gene studies have highlighted the role of the Wnt pathway in bone biolog...
The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imperfecta t...
Abstract The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imp...
Wnt signaling is important for proper embryonic development, shaping cell fate and migration, stem c...
Osteoporosis is a complex disease characterized by low bone mass, microarchitectural deterioration, ...
In the course of embryonic development skeletal elements form either through intramembranous or endo...
Previous genome-wide association studies have identified common variants in genes associated with bo...
Glucocorticoids (GC) are commonly used for the treatment of a wide variety of autoimmune, pulmonary,...
Abstract Substantial progress has been made in the therapeutic reduction of vertebral fracture risk...
We aimed to identify genetic variants associated with cortical bone thickness (CBT) and bone mineral...
We aimed to identify genetic variants associated with cortical bone thickness (CBT) and bone mineral...
Glucocorticoid-induced osteoporosis is a frequent complication of systemic glucocorticoid (GC) thera...
The WNT16 locus is a major determinant of cortical bone thickness and nonvertebral fracture risk in ...
Human genetic evidence demonstrates that WNT1 mutations cause osteogenesis imperfecta (OI) and early...
Compelling clinical data together with genetically modified mouse models have demonstrated that Wnt1...
Numerous GWAS and candidate gene studies have highlighted the role of the Wnt pathway in bone biolog...
The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imperfecta t...
Abstract The recent identification of homozygous WNT1 mutations in individuals with osteogenesis imp...
Wnt signaling is important for proper embryonic development, shaping cell fate and migration, stem c...
Osteoporosis is a complex disease characterized by low bone mass, microarchitectural deterioration, ...
In the course of embryonic development skeletal elements form either through intramembranous or endo...