[[abstract]]Interstitial flow in and around bone tissue is oscillatory in nature and affects the mechanical microenvironment for bone cell growth and formation. We investigated the role of oscillatory shear stress (OSS) in modulating the proliferation of human osteoblast-like MG63 cells and its underlying mechanisms. Application of OSS (0.5 ± 4 dynes/cm2) to MG63 cells induced sustained activation of phosphatidylinositol 3-kinase (PI3K)/Akt/mTOR/p70S6K (p70S6 kinase) signaling cascades and hence cell proliferation, which was accompanied by increased expression of cyclins A and D1, cyclin-dependent protein kinases-2, -4, and -6, and bone formation-related genes (c-fos, Egr-1, and Cox-2) and decreased expression of p21CIP1 and p27KIP1. OSS-in...
<div><p>Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditi...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
Mechanical loading preserves bone mass and function—yet, little is known about the cell biological b...
[[abstract]]Interstitial flow in and around bone tissue is oscillatory in nature and affects the mec...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
[[abstract]]Integrins play significant roles in mechanical responses of cells on extracellular matri...
Interstitial fluid flow stress is one of the most important mechanical stimulations of bone cells un...
[[abstract]]interstitial flow in and around tumor tissue affects the mechanical microenvironment to ...
Osteoporosis is a common bone disease that is characterized by reduced bone strength. Weight bearing...
<div><p>Mechanical strain plays a critical role in the proliferation, differentiation and maturation...
[[abstract]]Estrogen and mechanical forces are positive regulators for osteoblast proliferation and ...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
Shear stress activates cellular signaling involved in cellular proliferation, differentiation, and m...
Shear stress activates cellular signaling involved in cellular proliferation, differentiation, and m...
Estrogen and mechanical forces are positive regulators for osteoblast proliferation and bone formati...
<div><p>Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditi...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
Mechanical loading preserves bone mass and function—yet, little is known about the cell biological b...
[[abstract]]Interstitial flow in and around bone tissue is oscillatory in nature and affects the mec...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
[[abstract]]Integrins play significant roles in mechanical responses of cells on extracellular matri...
Interstitial fluid flow stress is one of the most important mechanical stimulations of bone cells un...
[[abstract]]interstitial flow in and around tumor tissue affects the mechanical microenvironment to ...
Osteoporosis is a common bone disease that is characterized by reduced bone strength. Weight bearing...
<div><p>Mechanical strain plays a critical role in the proliferation, differentiation and maturation...
[[abstract]]Estrogen and mechanical forces are positive regulators for osteoblast proliferation and ...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
Shear stress activates cellular signaling involved in cellular proliferation, differentiation, and m...
Shear stress activates cellular signaling involved in cellular proliferation, differentiation, and m...
Estrogen and mechanical forces are positive regulators for osteoblast proliferation and bone formati...
<div><p>Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditi...
Fluid shear stress plays an important role in bone osteogenic differentiation. It is traditionally b...
Mechanical loading preserves bone mass and function—yet, little is known about the cell biological b...