SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte biosynthesis in situ have been well documented, but the mechanotransduction pathways that regulate such phenomena have not been elucidated completely. The goal of this study was to examine the effects of tissue deformation on the morphology of a range of intracellular organelles which play a major role in cell biosynthesis and metabolism.DesignUsing chemical fixation, high pressure freezing, and electron microscopy, we imaged chondrocytes within mechanically compressed cartilage explants at high magnification and quantitatively and qualitatively assessed changes in organelle volume and shape caused by graded levels of loading.ResultsCompression o...
Mechanical loading of articular cartilage stimulates the metabolism of resident chondrocytes and ind...
As part of a program of research aimed at determining the role of mechanical forces in connective ti...
International audienceArticular cartilage is physiologically exposed to repeated loads. The mechanic...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
OBJECTIVE: The effects of mechanical deformation of intact cartilage tissue on chondrocyte biosynthe...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectiveTo determine if increasing cartilage cross-links through in vitro glycation of carti...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2002.Includ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Biological Engineering Division, 2005.Includ...
SummaryObjectivesOsteoarthritis (OA) is associated with a gradual reduction in the interstitial osmo...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
SummaryObjectiveThe objective of this study was to measure the effects of dynamic compression on sin...
In cartilage tissue engineering, it is vital that an appropriate amount of stress is received by the...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
Mechanical loading of articular cartilage stimulates the metabolism of resident chondrocytes and ind...
As part of a program of research aimed at determining the role of mechanical forces in connective ti...
International audienceArticular cartilage is physiologically exposed to repeated loads. The mechanic...
SummaryObjectiveThe effects of mechanical deformation of intact cartilage tissue on chondrocyte bios...
OBJECTIVE: The effects of mechanical deformation of intact cartilage tissue on chondrocyte biosynthe...
AbstractThe metabolic activity of chondrocytes in articular cartilage is influenced by alterations i...
SummaryObjectiveTo determine if increasing cartilage cross-links through in vitro glycation of carti...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2002.Includ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Biological Engineering Division, 2005.Includ...
SummaryObjectivesOsteoarthritis (OA) is associated with a gradual reduction in the interstitial osmo...
Chondrocytes are responsible for the elaboration and maintenance of the extracellular (EC) matrix in...
AbstractIntroduction: Chondrocytes in articular cartilage utilize mechanical signals to regulate the...
SummaryObjectiveThe objective of this study was to measure the effects of dynamic compression on sin...
In cartilage tissue engineering, it is vital that an appropriate amount of stress is received by the...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
Mechanical loading of articular cartilage stimulates the metabolism of resident chondrocytes and ind...
As part of a program of research aimed at determining the role of mechanical forces in connective ti...
International audienceArticular cartilage is physiologically exposed to repeated loads. The mechanic...