Osteoblasts are a key component in the regulation of the hematopoietic stem cell (HSC) niche. Manipulating osteoblast numbers results in a parallel change in HSC numbers. We tested the activity of strontium (Sr), a bone anabolic agent that enhances osteoblast function and inhibits osteoclast activity, on hematopoiesis. In vitro treatment of primary murine osteoblasts with Sr increased their ability to form bone nodules, and in vivo it increased osteoblast number, bone volume, and trabecular thickness and decreased trabecular pattern factor. However, the administration of Sr had no influence on primitive HSCs, although the number of hematopoietic progenitors was higher than in control cells. When Sr-treated mice were used as donors for HSC t...
Strontium ranelate (SrRan) is the active component of drugs currently used for reducing the risk of ...
BACKGROUND: The mechanism for the uncoupling effects of Sr on bone remains to be evaluated. Osteobla...
Osteoblasts play a crucial role in the hematopoietic stem cell (HSC) niche; however, an overall incr...
Osteoblasts are a key component in the regulation of the hematopoietic stem cell (HSC) niche. Manipu...
In vitro studies have demonstrated that strontium (Sr) could increase osteogenic differentiation of ...
Strontium ralenate is a new anti-osteoporosis agent. The cellular and molecular mechanism underlying...
The cellular and molecular mechanism underlying the anabolic effect of strontium on bone remains to ...
International audienceObjectives: Strontium is known to induce a positive bone balance but its speci...
Summary The effect of strontium ranelate (SR) on human osteoblast differentiation was tested. SR ind...
Abstract Background Strontium is a widely used anti-osteoporotic agent due to its dual effects on in...
Background and purpose: Strontium ranelate reduces fracture risk in postmenopausal women with osteop...
Strontium Ranelate (SrRan) is used to decrease the risk of bone fractures. Any factor that alters th...
The osteogenic potential of mesenchymal stromal cells (MSCs) varies among different tissue sources. ...
Strontium (Sr) exerts an anabolic and antiresorptive effect on bone, but the mechanism remains unkno...
Development of tools to be used for in vivo bone tissue regeneration focuses on cellular models and ...
Strontium ranelate (SrRan) is the active component of drugs currently used for reducing the risk of ...
BACKGROUND: The mechanism for the uncoupling effects of Sr on bone remains to be evaluated. Osteobla...
Osteoblasts play a crucial role in the hematopoietic stem cell (HSC) niche; however, an overall incr...
Osteoblasts are a key component in the regulation of the hematopoietic stem cell (HSC) niche. Manipu...
In vitro studies have demonstrated that strontium (Sr) could increase osteogenic differentiation of ...
Strontium ralenate is a new anti-osteoporosis agent. The cellular and molecular mechanism underlying...
The cellular and molecular mechanism underlying the anabolic effect of strontium on bone remains to ...
International audienceObjectives: Strontium is known to induce a positive bone balance but its speci...
Summary The effect of strontium ranelate (SR) on human osteoblast differentiation was tested. SR ind...
Abstract Background Strontium is a widely used anti-osteoporotic agent due to its dual effects on in...
Background and purpose: Strontium ranelate reduces fracture risk in postmenopausal women with osteop...
Strontium Ranelate (SrRan) is used to decrease the risk of bone fractures. Any factor that alters th...
The osteogenic potential of mesenchymal stromal cells (MSCs) varies among different tissue sources. ...
Strontium (Sr) exerts an anabolic and antiresorptive effect on bone, but the mechanism remains unkno...
Development of tools to be used for in vivo bone tissue regeneration focuses on cellular models and ...
Strontium ranelate (SrRan) is the active component of drugs currently used for reducing the risk of ...
BACKGROUND: The mechanism for the uncoupling effects of Sr on bone remains to be evaluated. Osteobla...
Osteoblasts play a crucial role in the hematopoietic stem cell (HSC) niche; however, an overall incr...