Skeletal muscle ion channelopathies (SMICs) are a large heterogeneous group of rare genetic disorders caused by mutations in genes encoding ion channel subunits in the skeletal muscle mainly characterized by myotonia or periodic paralysis, potentially resulting in long-term disabilities. However, with the development of new molecular technologies, new genes and new phenotypes, including progressive myopathies, have been recently discovered, markedly increasing the complexity in the field. In this regard, new advances in SMICs show a less conventional role of ion channels in muscle cell division, proliferation, differentiation, and survival. Hence, SMICs represent an expanding and exciting field. Here, we review current knowledge of SMICs, w...
The skeletal muscle channelopathies are a group of inherited muscle diseases characterised by the ab...
Familial disorders of skeletal muscle excitability were initially described early in the last centur...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...
Skeletal muscle ion channelopathies (SMICs) are a large heterogeneous group of rare genetic disorder...
Molecular genetics of ion channel diseases. Many physiological processes depend upon the proper func...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
Introduction: Skeletal muscle channelopathies are rare inherited conditions that cause significant m...
Skeletal muscle ion channelopathies include non-dystrophic myotonias (NDM), periodic paralyses (PP),...
Hereditary muscle channelopathies are caused by dominant mutations in the genes encoding for subunit...
Skeletal muscle channelopathies are rare inherited neuromuscular conditions caused by ion channel ge...
In the human genome more than 400 genes encode ion channels, which are transmembrane proteins mediat...
Non-dystrophic myotonias (NDM) and periodic paralyses (PP) are a heterogeneous group of disabling di...
The skeletal muscle fibre membrane plays a major role in muscle contraction by generating and propag...
The skeletal muscle channelopathies are a group of inherited muscle diseases characterised by the ab...
Familial disorders of skeletal muscle excitability were initially described early in the last centur...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...
Skeletal muscle ion channelopathies (SMICs) are a large heterogeneous group of rare genetic disorder...
Molecular genetics of ion channel diseases. Many physiological processes depend upon the proper func...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
Introduction: Skeletal muscle channelopathies are rare inherited conditions that cause significant m...
Skeletal muscle ion channelopathies include non-dystrophic myotonias (NDM), periodic paralyses (PP),...
Hereditary muscle channelopathies are caused by dominant mutations in the genes encoding for subunit...
Skeletal muscle channelopathies are rare inherited neuromuscular conditions caused by ion channel ge...
In the human genome more than 400 genes encode ion channels, which are transmembrane proteins mediat...
Non-dystrophic myotonias (NDM) and periodic paralyses (PP) are a heterogeneous group of disabling di...
The skeletal muscle fibre membrane plays a major role in muscle contraction by generating and propag...
The skeletal muscle channelopathies are a group of inherited muscle diseases characterised by the ab...
Familial disorders of skeletal muscle excitability were initially described early in the last centur...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...