Membrane transport systems participate in fundamental activities such as cell cycle control, proliferation, survival, volume regulation, pH maintenance and regulation of extracellular matrix synthesis. Multiple isoforms of Na+, K+-ATPase are expressed in primary chondrocytes. Some of these isoforms have previously been reported to be expressed exclusively in electrically excitable cells (i.e., cardiomyocytes and neurons). Studying the distribution of Na+, K+-ATPase isoforms in chondrocytes makes it possible to document the diversity of isozyme pairing and to clarify issues concerning Na+, K+-ATPase isoform abundance and the physiological relevance of their expression. In this study, we investigated the expression of Na+, K+-ATPase in a huma...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
OBJECTIVE: Chondrocytes are highly sensitive to variations in extracellular glucose and oxygen level...
Membrane transport systems participate in fundamental activities such as cell cycle control, prolife...
The chondrocyte is the cell responsible for the maintenance of the articular cartilage matrix. The n...
The chondrocyte is the cell responsible for the maintenance of the articular cartilage matrix. The n...
We have used isoform-specific antibodies against the Na+, K(+)-ATPase alpha (alpha 1, alpha 2 and al...
The maintenance of a relatively low intracellular Na+:K+ ratio is essential for the functioning of a...
Sodium transport systems in human chondrocytes Morphological and functional expression of the Na+,K+...
The abundance of Na+, K+-ATPase in cartilage is controlled by the ionic composition of the extracell...
Osteoblasts play a critical role in bone formation and mineralization, a process that depends on opt...
The expression of Na+, K+-ATPase alpha and beta subunits isoforms, FXYD2 and FXYD7 were studied in r...
Na+, K+-ATPase is ubiquitously expressed in the plasma membrane of all animal cells where it serves ...
The catalytic a isoforms of the Na+, K+- ATPase and stimuli controlling the plasma membrane abundanc...
The catalytic alpha isoforms of the Na+, K(+)-ATPase and stimuli controlling the plasma membrane abu...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
OBJECTIVE: Chondrocytes are highly sensitive to variations in extracellular glucose and oxygen level...
Membrane transport systems participate in fundamental activities such as cell cycle control, prolife...
The chondrocyte is the cell responsible for the maintenance of the articular cartilage matrix. The n...
The chondrocyte is the cell responsible for the maintenance of the articular cartilage matrix. The n...
We have used isoform-specific antibodies against the Na+, K(+)-ATPase alpha (alpha 1, alpha 2 and al...
The maintenance of a relatively low intracellular Na+:K+ ratio is essential for the functioning of a...
Sodium transport systems in human chondrocytes Morphological and functional expression of the Na+,K+...
The abundance of Na+, K+-ATPase in cartilage is controlled by the ionic composition of the extracell...
Osteoblasts play a critical role in bone formation and mineralization, a process that depends on opt...
The expression of Na+, K+-ATPase alpha and beta subunits isoforms, FXYD2 and FXYD7 were studied in r...
Na+, K+-ATPase is ubiquitously expressed in the plasma membrane of all animal cells where it serves ...
The catalytic a isoforms of the Na+, K+- ATPase and stimuli controlling the plasma membrane abundanc...
The catalytic alpha isoforms of the Na+, K(+)-ATPase and stimuli controlling the plasma membrane abu...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
Chondrocytes exist in an unusual and variable ionic and osmotic environment in the extracellular mat...
OBJECTIVE: Chondrocytes are highly sensitive to variations in extracellular glucose and oxygen level...