Abstract Background Kv1.3 potassium channels regulate microglial functions and are overexpressed in neuroinflammatory diseases. Kv1.3 blockade may selectively inhibit pro-inflammatory microglia in neurological diseases but the molecular and cellular mechanisms regulated by Kv1.3 channels are poorly defined. Methods We performed immunoblotting and flow cytometry to confirm Kv1.3 channel upregulation in lipopolysaccharide (LPS)-activated BV2 microglia and in brain mononuclear phagocytes freshly isolated from LPS-treated mice. Quantitative proteomics was performed on BV2 microglia treated with control, LPS, ShK-223 (highly selective Kv1.3 blocker), and LPS+ShK-223. Gene ontology (GO) analyses of Kv1.3-dependent LPS-regulated proteins were perf...
Background: Studies have shown that activation of microglia is the main mechanism of neuropathic pai...
Increasing evidence suggests ion channels have critical functions in the differentiation and plastic...
[eng] The Kv1.3 voltage-dependent potassium channel plays a crucial role in the immune response part...
Microglia show a rich repertoire of activation patterns regulated by a complex ensemble of surface i...
Microglia show a rich repertoire of activation patterns regulated by a complex ensemble of surface i...
In the last 5 years inhibitors of the potassium channel KV1.3 have been shown to reduce neuroin...
Kv1.3 potassium channels, expressed by proinflammatory central nervous system mononuclear phagocytes...
Epilepsy is a chronic neurological disorder whose pathophysiology relates to inflammation. The potas...
ObjectiveInhibitors of the voltage-gated K+ channel Kv1.3 are currently in development as immunomodu...
Microglia-mediated inflammation exerts adverse effects in ischemic stroke and in neurodegenerative d...
Microglia are highly plastic cells that can assume different phenotypes in response to microenvironm...
Microglia significantly contribute to the pathophysiology of Alzheimer's disease but an effective mi...
Kv1.3 is a voltage gated potassium channel that has been implicated in pathophysiology of multiple s...
Characterization of the key cellular targets contributing to sustained microglial activation in neur...
After acute CNS damage, microglia undergo complex molecular and functional changes. Pro-inflammatory...
Background: Studies have shown that activation of microglia is the main mechanism of neuropathic pai...
Increasing evidence suggests ion channels have critical functions in the differentiation and plastic...
[eng] The Kv1.3 voltage-dependent potassium channel plays a crucial role in the immune response part...
Microglia show a rich repertoire of activation patterns regulated by a complex ensemble of surface i...
Microglia show a rich repertoire of activation patterns regulated by a complex ensemble of surface i...
In the last 5 years inhibitors of the potassium channel KV1.3 have been shown to reduce neuroin...
Kv1.3 potassium channels, expressed by proinflammatory central nervous system mononuclear phagocytes...
Epilepsy is a chronic neurological disorder whose pathophysiology relates to inflammation. The potas...
ObjectiveInhibitors of the voltage-gated K+ channel Kv1.3 are currently in development as immunomodu...
Microglia-mediated inflammation exerts adverse effects in ischemic stroke and in neurodegenerative d...
Microglia are highly plastic cells that can assume different phenotypes in response to microenvironm...
Microglia significantly contribute to the pathophysiology of Alzheimer's disease but an effective mi...
Kv1.3 is a voltage gated potassium channel that has been implicated in pathophysiology of multiple s...
Characterization of the key cellular targets contributing to sustained microglial activation in neur...
After acute CNS damage, microglia undergo complex molecular and functional changes. Pro-inflammatory...
Background: Studies have shown that activation of microglia is the main mechanism of neuropathic pai...
Increasing evidence suggests ion channels have critical functions in the differentiation and plastic...
[eng] The Kv1.3 voltage-dependent potassium channel plays a crucial role in the immune response part...