Contains fulltext : 69701.pdf (publisher's version ) (Closed access)Bone unloading results in osteocyte apoptosis, which attracts osteoclasts leading to bone loss. Loading of bone drives fluid flow over osteocytes which respond by releasing signaling molecules, like nitric oxide (NO), that inhibit osteocyte apoptosis and alter osteoblast and osteoclast activity thereby preventing bone loss. However, which apoptosis-related genes are modulated by loading is unknown. We studied apoptosis-related gene expression in response to pulsating fluid flow (PFF) in osteocytes, osteoblasts, and fibroblasts, and whether this is mediated by loading-induced NO production. PFF (0.7+/-0.3Pa, 5Hz, 1h) upregulated Bcl-2 and downregulated casp...
<div><p>Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte...
Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte network...
Skeletal integrity is preserved by continuous bone remodeling by osteoblasts and osteoclasts. While ...
Bone unloading results in osteocyte apoptosis, which attracts osteoclasts leading to bone loss. Load...
Bone unloading results in osteocyte apoptosis, which attracts osteoclasts leading to bone loss. Load...
Contains fulltext : 50275.pdf (publisher's version ) (Closed access)Bone tissue ca...
Osteocytes (resident bone cells) are believed to sense loading-induced interstitial fluid flow in bo...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Bone has the capacity to alter its mass and structure to its mechanical environment. Osteocytes are ...
Cytokine-induced nitric oxide inhibits bone resorption by inducing apoptosis of osteoclast progenito...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Damage accumulation in the bone under continuous daily loading causes local mechanical overloading k...
Nitric oxide (NO) plays a crucial role in the physiological and pathophysiological regulations of os...
Objective: Inflammatory diseases often coincide with reduced bone mass. Mechanoresponsive osteocytes...
Osteocytes make up the largest cell population in bone and are believed to be the main mechanosensor...
<div><p>Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte...
Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte network...
Skeletal integrity is preserved by continuous bone remodeling by osteoblasts and osteoclasts. While ...
Bone unloading results in osteocyte apoptosis, which attracts osteoclasts leading to bone loss. Load...
Bone unloading results in osteocyte apoptosis, which attracts osteoclasts leading to bone loss. Load...
Contains fulltext : 50275.pdf (publisher's version ) (Closed access)Bone tissue ca...
Osteocytes (resident bone cells) are believed to sense loading-induced interstitial fluid flow in bo...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Bone has the capacity to alter its mass and structure to its mechanical environment. Osteocytes are ...
Cytokine-induced nitric oxide inhibits bone resorption by inducing apoptosis of osteoclast progenito...
Strain-derived flow of interstitial fluid activates signal transduction pathways in osteocytes that ...
Damage accumulation in the bone under continuous daily loading causes local mechanical overloading k...
Nitric oxide (NO) plays a crucial role in the physiological and pathophysiological regulations of os...
Objective: Inflammatory diseases often coincide with reduced bone mass. Mechanoresponsive osteocytes...
Osteocytes make up the largest cell population in bone and are believed to be the main mechanosensor...
<div><p>Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte...
Reduced mechanical stress is a major cause of osteoporosis in the elderly, and the osteocyte network...
Skeletal integrity is preserved by continuous bone remodeling by osteoblasts and osteoclasts. While ...