Cancer is the consequence of aberrations in cell growth or cell death. In this scenario, mitochondria and ion channels play a critical role in regard to cell proliferation, malignant angiogenesis, migration, and metastasis. In this review, we focus on Kv1.3 and specifically on mitoKv1.3, which showed an aberrant expression in cancer cells compared with healthy tissues and which is involved in the apoptotic pathway. In recent years, mitoKv1.3 has become an oncological target since its pharmacological modulation has been demonstrated to reduce tumor growth and progression both in vitro and in vivo using preclinical mouse models of different types of tumors
Reprogramming of energy metabolism constitutes one of the hallmarks of cancer and is, therefore, an ...
AbstractRecent evidence points to the crucial involvement of voltage-gated potassium channels (Kv) i...
Background: Mitochondria play a central role in ATP-generating processes. Indeed, in mammalian tissu...
Kv1.3 is a voltage gated potassium channel located in the plasma membrane, as well as at intracellu...
Kv1.3 is a voltage gated potassium channel located in the plasma membrane, as well as at intracellu...
Ion channels are non-conventional, druggable oncological targets. The intermediate-conductance calci...
Previous results link the mitochondrial potassium channel Kv1.3 (mitoKv1.3) to the regulation of apo...
: Ion channels are non-conventional, druggable oncological targets. The intermediate-conductance cal...
Mitochondria are highly dynamic organelles and their function is crucial for the maintenance of cell...
Plasma membrane (PM) and mitochondrial (mt) ion channels - particularly potassium channels - became ...
Plasma membrane (PM) and mitochondrial (mt) ion channels - particularly potassium channels - became ...
Mitochondria, the key bioenergetic intracellular organelles, harbor a number of proteins with proven...
The two-pore potassium channel TASK-3 has been shown to localize to both the plasma membrane and the...
The two-pore potassium channel TASK-3 has been shown to localize to both the plasma membrane and the...
AbstractMitochondria have been shown to play a pivotal role in apoptotic signalling in various cell ...
Reprogramming of energy metabolism constitutes one of the hallmarks of cancer and is, therefore, an ...
AbstractRecent evidence points to the crucial involvement of voltage-gated potassium channels (Kv) i...
Background: Mitochondria play a central role in ATP-generating processes. Indeed, in mammalian tissu...
Kv1.3 is a voltage gated potassium channel located in the plasma membrane, as well as at intracellu...
Kv1.3 is a voltage gated potassium channel located in the plasma membrane, as well as at intracellu...
Ion channels are non-conventional, druggable oncological targets. The intermediate-conductance calci...
Previous results link the mitochondrial potassium channel Kv1.3 (mitoKv1.3) to the regulation of apo...
: Ion channels are non-conventional, druggable oncological targets. The intermediate-conductance cal...
Mitochondria are highly dynamic organelles and their function is crucial for the maintenance of cell...
Plasma membrane (PM) and mitochondrial (mt) ion channels - particularly potassium channels - became ...
Plasma membrane (PM) and mitochondrial (mt) ion channels - particularly potassium channels - became ...
Mitochondria, the key bioenergetic intracellular organelles, harbor a number of proteins with proven...
The two-pore potassium channel TASK-3 has been shown to localize to both the plasma membrane and the...
The two-pore potassium channel TASK-3 has been shown to localize to both the plasma membrane and the...
AbstractMitochondria have been shown to play a pivotal role in apoptotic signalling in various cell ...
Reprogramming of energy metabolism constitutes one of the hallmarks of cancer and is, therefore, an ...
AbstractRecent evidence points to the crucial involvement of voltage-gated potassium channels (Kv) i...
Background: Mitochondria play a central role in ATP-generating processes. Indeed, in mammalian tissu...