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Protective Roles for Potassium SK/KCa2 Channels in Microglia and Neurons
by
Dolga, Amalia M.
, Culmsee, Carsten
in
Alzheimer's disease
/ Antigen presentation
/ Ataxia
/ Calcium (intracellular)
/ Calcium channels
/ Calcium conductance
/ Calcium homeostasis
/ Calcium regulation
/ Calcium signalling
/ Cell death
/ Homeostasis
/ Inflammation
/ Ischemia
/ KCa2/SK channels
/ KCa3/IK channels
/ Kinases
/ Microglia
/ Multiple sclerosis
/ Neurodegeneration
/ Neurological diseases
/ Neuroprotection
/ Phagocytosis
/ Pharmacology
/ Physiology
/ Potassium
/ Potassium channels (calcium-gated)
/ Potassium channels (voltage-gated)
/ Potassium conductance
/ Proteins
/ Tumor necrosis factor-TNF
2012
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Protective Roles for Potassium SK/KCa2 Channels in Microglia and Neurons
by
Dolga, Amalia M.
, Culmsee, Carsten
in
Alzheimer's disease
/ Antigen presentation
/ Ataxia
/ Calcium (intracellular)
/ Calcium channels
/ Calcium conductance
/ Calcium homeostasis
/ Calcium regulation
/ Calcium signalling
/ Cell death
/ Homeostasis
/ Inflammation
/ Ischemia
/ KCa2/SK channels
/ KCa3/IK channels
/ Kinases
/ Microglia
/ Multiple sclerosis
/ Neurodegeneration
/ Neurological diseases
/ Neuroprotection
/ Phagocytosis
/ Pharmacology
/ Physiology
/ Potassium
/ Potassium channels (calcium-gated)
/ Potassium channels (voltage-gated)
/ Potassium conductance
/ Proteins
/ Tumor necrosis factor-TNF
2012
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Protective Roles for Potassium SK/KCa2 Channels in Microglia and Neurons
by
Dolga, Amalia M.
, Culmsee, Carsten
in
Alzheimer's disease
/ Antigen presentation
/ Ataxia
/ Calcium (intracellular)
/ Calcium channels
/ Calcium conductance
/ Calcium homeostasis
/ Calcium regulation
/ Calcium signalling
/ Cell death
/ Homeostasis
/ Inflammation
/ Ischemia
/ KCa2/SK channels
/ KCa3/IK channels
/ Kinases
/ Microglia
/ Multiple sclerosis
/ Neurodegeneration
/ Neurological diseases
/ Neuroprotection
/ Phagocytosis
/ Pharmacology
/ Physiology
/ Potassium
/ Potassium channels (calcium-gated)
/ Potassium channels (voltage-gated)
/ Potassium conductance
/ Proteins
/ Tumor necrosis factor-TNF
2012
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Protective Roles for Potassium SK/KCa2 Channels in Microglia and Neurons
Journal Article
Protective Roles for Potassium SK/KCa2 Channels in Microglia and Neurons
2012
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Overview
New concepts on potassium channel function in neuroinflammation suggest that they regulate mechanisms of microglial activation, including intracellular calcium homeostasis, morphological alterations, pro-inflammatory cytokine release, antigen presentation, and phagocytosis. Although little is known about voltage independent potassium channels in microglia, special attention emerges on small (SK/ KCNN1 -3/KCa2) and intermediate (IK/ KCNN4 /KCa3.1)-conductance calcium-activated potassium channels as regulators of microglial activation in the field of research on neuroinflammation and neurodegeneration. In particular, recent findings suggested that SK/KCa2 channels, by regulating calcium homeostasis, may elicit a dual mechanism of action with protective properties in neurons and inhibition of inflammatory responses in microglia. Thus, modulating SK/KCa2 channels and calcium signaling may provide novel therapeutic strategies in neurological disorders, where neuronal cell death and inflammatory responses concomitantly contribute to disease progression. Here, we review the particular role of SK/KCa2 channels for [Ca2+]i regulation in microglia and neurons, and we discuss the potential impact for further experimental approaches addressing novel therapeutic strategies in neurological diseases, where neuronal cell death and neuroinflammatory processes are prominent.
Publisher
Frontiers Media SA,Frontiers Media S.A
Subject
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