Mechanical loading preserves bone mass and function—yet, little is known about the cell biological basis behind this preservation. For example, cell and nucleus morphology are critically important for cell function, but how these morphological characteristics are affected by the physiological mechanical loading of bone cells is under-investigated. This study aims to determine the effects of fluid shear stress on cell and nucleus morphology and volume of osteoblasts, and how these effects relate to changes in actin cytoskeleton and focal adhesion formation. Mouse calvaria 3T3-E1 (MC3T3-E1) osteoblasts were treated with or without 1 h pulsating fluid flow (PFF). Live-cell imaging was performed every 10 min during PFF and immediately after PFF...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
Mechanical force plays an important role in the regulation of bone remodelling in intact bone and bo...
Mechanical loading preserves bone mass and function—yet, little is known about the cell biological b...
Interstitial fluid flow stress is one of the most important mechanical stimulations of bone cells un...
Bone cells, in particular osteoblasts, are capable of communication with each other during bone grow...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
The shear stress induced by the loading-mediated flow of interstitial fluid through the lacuno-canal...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
<div><p>Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditi...
Abstract Background Mechanostimuli of different cells can affect a wide array of cellular and inter-...
The interactions between skeletal muscle and bone have been recently noted, and muscle-derived humor...
Introduction: A limited understanding of the cellular mechanisms governing bone mechanotransduction ...
Bone continuously adapts its internal structure to accommodate the functional demands of its mechani...
Initial stress-kick is required for bone cell activation 60 The shear stress induced by the loading-...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
Mechanical force plays an important role in the regulation of bone remodelling in intact bone and bo...
Mechanical loading preserves bone mass and function—yet, little is known about the cell biological b...
Interstitial fluid flow stress is one of the most important mechanical stimulations of bone cells un...
Bone cells, in particular osteoblasts, are capable of communication with each other during bone grow...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
The shear stress induced by the loading-mediated flow of interstitial fluid through the lacuno-canal...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
<div><p>Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditi...
Abstract Background Mechanostimuli of different cells can affect a wide array of cellular and inter-...
The interactions between skeletal muscle and bone have been recently noted, and muscle-derived humor...
Introduction: A limited understanding of the cellular mechanisms governing bone mechanotransduction ...
Bone continuously adapts its internal structure to accommodate the functional demands of its mechani...
Initial stress-kick is required for bone cell activation 60 The shear stress induced by the loading-...
Aim: To determine whether fluid flow-induced shear stress affects the differentiation of bone marrow...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
Mechanical force plays an important role in the regulation of bone remodelling in intact bone and bo...