Voltage-gated Na(+) channels (VGSCs) are heteromeric membrane protein complexes containing pore-forming α subunits and smaller, non-pore-forming β subunits. VGSCs are classically expressed in excitable cells, including neurons and muscle cells, where they mediate action potential firing, neurite outgrowth, pathfinding, and migration. VGSCs are also expressed in metastatic cells from a number of cancers. The Na(v)1.5 α subunit (encoded by SCN5A) is expressed in breast cancer (BCa) cell lines, where it enhances migration and invasion. We studied the expression of SCN5A in BCa array data, and tested the effect of the VGSC-blocking anticonvulsant phenytoin (5,5-diphenylhydantoin) on Na(+) current, migration, and invasion in BCa cells. SCN5A was...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated Na(+) channels (VGSCs) are heteromeric membrane protein complexes containing pore-form...
Voltage-gated Na(+) channels (VGSCs) are heteromeric membrane protein complexes containing pore-form...
Background Voltage-gated Na+ channels (VGSCs) are heteromeric protein complexes containing pore-form...
Although survival rates of breast, colon, and prostate cancers are improving, deaths from these tumo...
Voltage-gated Na+ channels (VGSCs) initiate and propagate action potentials in neurones. Functional...
Voltage-gated sodium channel (VGSC) activity enhances cell behaviors related to metastasis, such as ...
Voltage-gated Na (+) channels (VGSCs) are macromolecular protein complexes containing a pore-forming...
Voltage-gated Na (+) channels (VGSCs) are macromolecular protein complexes containing a pore-forming...
Purpose: Ion channel activity is involved in several basic cellular behaviors that are integral to m...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated Na(+) channels (VGSCs) are heteromeric membrane protein complexes containing pore-form...
Voltage-gated Na(+) channels (VGSCs) are heteromeric membrane protein complexes containing pore-form...
Background Voltage-gated Na+ channels (VGSCs) are heteromeric protein complexes containing pore-form...
Although survival rates of breast, colon, and prostate cancers are improving, deaths from these tumo...
Voltage-gated Na+ channels (VGSCs) initiate and propagate action potentials in neurones. Functional...
Voltage-gated sodium channel (VGSC) activity enhances cell behaviors related to metastasis, such as ...
Voltage-gated Na (+) channels (VGSCs) are macromolecular protein complexes containing a pore-forming...
Voltage-gated Na (+) channels (VGSCs) are macromolecular protein complexes containing a pore-forming...
Purpose: Ion channel activity is involved in several basic cellular behaviors that are integral to m...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...
Voltage-gated sodium (NaV) channels, initially characterized in excitable cells, have been shown to ...