It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic manner. The disruption of the collagen network in the early stages of osteoarthritis causes an increase in water content of cartilage which leads to a reduction of pericellular osmolality in chondrocytes distributed within the extracellular environment. It is therefore arguable that an insight into the mechanical properties of chondrocytes under varying osmotic pressure would provide a better understanding of chondrocyte mechanotransduction and potentially contribute to knowledge on cartilage degeneration. In this present study, the chondrocyte cells were exposed to solutions with different osmolality. Changes in their dimensions and mechanical ...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
OBJECTIVE: This study investigated the effect of hydrostatic cyclical pressure on the cell ultras...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectivesOsteoarthritis (OA) is associated with a gradual reduction in the interstitial osmo...
Articular cartilage is compressed with joint-loading and weight-bearing stresses, followed by a bulg...
Osmotic loading of articular cartilage has been used to study cell-tissue interactions and mechanism...
Besides the elastic stiffness, the relaxation behavior of single living cells is also of interest of...
Abstract: Osmotic loading of articular cartilage has been used to study cell-tissue interactions and...
The osmotic environment of chondrocytes changes under loading and in osteoarthritis. It has been sho...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
Based on the characterization by Atomic Force Microscopy (AFM), we report that the mechanical proper...
OBJECTIVE: The effects of mechanical deformation of intact cartilage tissue on chondrocyte biosynthe...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
OBJECTIVE: This study investigated the effect of hydrostatic cyclical pressure on the cell ultras...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
It has been demonstrated that most cells of the body respond to osmotic pressure in a systematic man...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectivesOsteoarthritis (OA) is associated with a gradual reduction in the interstitial osmo...
Articular cartilage is compressed with joint-loading and weight-bearing stresses, followed by a bulg...
Osmotic loading of articular cartilage has been used to study cell-tissue interactions and mechanism...
Besides the elastic stiffness, the relaxation behavior of single living cells is also of interest of...
Abstract: Osmotic loading of articular cartilage has been used to study cell-tissue interactions and...
The osmotic environment of chondrocytes changes under loading and in osteoarthritis. It has been sho...
The aim of this paper is to determine the strain-rate-dependent mechanical behavior of living and fi...
Based on the characterization by Atomic Force Microscopy (AFM), we report that the mechanical proper...
OBJECTIVE: The effects of mechanical deformation of intact cartilage tissue on chondrocyte biosynthe...
The collagen network and proteoglycan matrix of articular cartilage are thought to play an important...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
OBJECTIVE: This study investigated the effect of hydrostatic cyclical pressure on the cell ultras...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...