Abstract High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto), which can cause damage to the muscle. Here we report that a heavy-load strength training bout greatly alters the structure of the membrane network inside the fibres, the tubular (t-) system, causing the loss of its predominantly transverse organization and an increase in vacuolation of its longitudinal tubules across adjacent sarcomeres. The transverse tubules and vacuoles displayed distinct Ca2+-handling properties. Both t-system components could take up Ca2+ from the cytoplasm but only transverse tubules supported store-operated Ca2+ entry. The retention of significant amounts of Ca2+ within vacuoles provides an effective mechani...
We used the nanometer-wide tubules of the transverse tubular (t)-system of human skeletal muscle fib...
Inactivity negatively impacts on skeletal muscle function mainly through muscle atrophy. However, re...
Most excitable cells maintain tight control of intracellular Ca2+ through coordinated interaction be...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca 2 þ levels ([Ca 2 þ ]...
The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with ...
The tubular (t-) system of skeletal muscle is an internalization of the plasma membrane that maintai...
Abstract Store-operated Ca2+ entry (SOCE), a ubiquitous mechanism that allows recovery of Ca2+ ions ...
Periods of low frequency stimulation are known to increase the net Ca uptake in skeletal muscle but ...
Skeletal muscle fibres are large and highly elongated cells specialized for producing the force requ...
AbstractChronic low-frequency stimulation of rabbit tibialis anterior muscle over a 24-h period indu...
In recent years, damage directly due to tissue deformation has gained interest in deep pressure ulce...
The effect of endurance exercise on the capacity of crube homogenates (CH) to sequester Ca2+ was det...
Proper skeletal muscle function is controlled by intracellular Ca2+ concentration and by efficient p...
We used the nanometer-wide tubules of the transverse tubular (t)-system of human skeletal muscle fib...
Inactivity negatively impacts on skeletal muscle function mainly through muscle atrophy. However, re...
Most excitable cells maintain tight control of intracellular Ca2+ through coordinated interaction be...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca 2 þ levels ([Ca 2 þ ]...
The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with ...
The tubular (t-) system of skeletal muscle is an internalization of the plasma membrane that maintai...
Abstract Store-operated Ca2+ entry (SOCE), a ubiquitous mechanism that allows recovery of Ca2+ ions ...
Periods of low frequency stimulation are known to increase the net Ca uptake in skeletal muscle but ...
Skeletal muscle fibres are large and highly elongated cells specialized for producing the force requ...
AbstractChronic low-frequency stimulation of rabbit tibialis anterior muscle over a 24-h period indu...
In recent years, damage directly due to tissue deformation has gained interest in deep pressure ulce...
The effect of endurance exercise on the capacity of crube homogenates (CH) to sequester Ca2+ was det...
Proper skeletal muscle function is controlled by intracellular Ca2+ concentration and by efficient p...
We used the nanometer-wide tubules of the transverse tubular (t)-system of human skeletal muscle fib...
Inactivity negatively impacts on skeletal muscle function mainly through muscle atrophy. However, re...
Most excitable cells maintain tight control of intracellular Ca2+ through coordinated interaction be...