International audienceCalcium homeostasis is critical for several vital functions in excitable and nonexcitable cells and has been shown to be impaired in many pathologies including Duchenne muscular dystrophy (DMD). Various studies using murine models showed the implication of calcium entry in the dystrophic phenotype. However, alteration of store-operated calcium entry (SOCE) and transient receptor potential vanilloid 2 (TRPV2)-dependant cation entry has not been investigated yet in human skeletal muscle cells. We pharmacologically characterized basal and store-operated cation entries in primary cultures of myotubes prepared from muscle of normal and DMD patients and found, for the first time, an increased SOCE in DMD myotubes. Moreover, ...
In Duchenne muscular dystrophy (DMD) and in the mdx mouse model of DMD, the lack of dystrophin is re...
TRP proteins constitute non-selective cation-permeable ion channels, most of which are permeable to ...
In skeletal muscle cells, plasma membrane depolarization causes a rapid calcium release from the sar...
La dystrophie musculaire de Duchenne (DMD) est la conséquence de la perte de la dystrophine, une pro...
International audienceThe dystrophin-associated protein complex (DAPC) is essential for skeletal mus...
Defective expression of dystrophin in muscle cells is the primary feature of Duchenne muscular dystr...
There is substantial evidence indicating that disruption of Ca2+ homeostasis and activation of cytos...
Calcium is the most ubiquitous second messenger. Its concentration inside the cell is tightly regula...
Duchenne muscular dystrophy (DMD) is a severe neuromuscular disease characterized by progressive and...
<div><p>There is substantial evidence indicating that disruption of Ca<sup>2+</sup> homeostasis and ...
International audienceRecent studies proposed a pivotal role of TRPC channels, in particular TRPC1, ...
Duchenne muscular dystrophy, primarily caused by a deficiency in the membrane cytoskeletal protein d...
There is substantial evidence indicating that disruption of Ca(2+) homeostasis and activation of cyt...
La dystrophie musculaire de Duchenne (DMD) résulte d'un défaut génique, récessif qui entraîne l'abse...
Store-operated Ca entry (SOCE) is an important mechanism in virtually all cells. In adult skeletal m...
In Duchenne muscular dystrophy (DMD) and in the mdx mouse model of DMD, the lack of dystrophin is re...
TRP proteins constitute non-selective cation-permeable ion channels, most of which are permeable to ...
In skeletal muscle cells, plasma membrane depolarization causes a rapid calcium release from the sar...
La dystrophie musculaire de Duchenne (DMD) est la conséquence de la perte de la dystrophine, une pro...
International audienceThe dystrophin-associated protein complex (DAPC) is essential for skeletal mus...
Defective expression of dystrophin in muscle cells is the primary feature of Duchenne muscular dystr...
There is substantial evidence indicating that disruption of Ca2+ homeostasis and activation of cytos...
Calcium is the most ubiquitous second messenger. Its concentration inside the cell is tightly regula...
Duchenne muscular dystrophy (DMD) is a severe neuromuscular disease characterized by progressive and...
<div><p>There is substantial evidence indicating that disruption of Ca<sup>2+</sup> homeostasis and ...
International audienceRecent studies proposed a pivotal role of TRPC channels, in particular TRPC1, ...
Duchenne muscular dystrophy, primarily caused by a deficiency in the membrane cytoskeletal protein d...
There is substantial evidence indicating that disruption of Ca(2+) homeostasis and activation of cyt...
La dystrophie musculaire de Duchenne (DMD) résulte d'un défaut génique, récessif qui entraîne l'abse...
Store-operated Ca entry (SOCE) is an important mechanism in virtually all cells. In adult skeletal m...
In Duchenne muscular dystrophy (DMD) and in the mdx mouse model of DMD, the lack of dystrophin is re...
TRP proteins constitute non-selective cation-permeable ion channels, most of which are permeable to ...
In skeletal muscle cells, plasma membrane depolarization causes a rapid calcium release from the sar...