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The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling  and procedural motor learning | Science Signaling
The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling and procedural motor learning | Science Signaling

Transport and Localization of the DEG/ENaC Ion Channel BNaC1α to Peripheral  Mechanosensory Terminals of Dorsal Root Ganglia Neurons | Journal of  Neuroscience
Transport and Localization of the DEG/ENaC Ion Channel BNaC1α to Peripheral Mechanosensory Terminals of Dorsal Root Ganglia Neurons | Journal of Neuroscience

Mathematics | Free Full-Text | Biophysics and Modeling of  Mechanotransduction in Neurons: A Review
Mathematics | Free Full-Text | Biophysics and Modeling of Mechanotransduction in Neurons: A Review

PDF) The ability of LCRMP-1 to promote cancer invasion by enhancing  filopodia formation is antagonized by CRMP-1
PDF) The ability of LCRMP-1 to promote cancer invasion by enhancing filopodia formation is antagonized by CRMP-1

Cancers | Free Full-Text | Aquaporins and Ion Channels as Dual Targets in  the Design of Novel Glioblastoma Therapeutics to Limit Invasiveness
Cancers | Free Full-Text | Aquaporins and Ion Channels as Dual Targets in the Design of Novel Glioblastoma Therapeutics to Limit Invasiveness

Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth  Cones and Presynaptic Membrane of Cultured Hippocampal Neurons
Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth Cones and Presynaptic Membrane of Cultured Hippocampal Neurons

Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth  Cones and Presynaptic Membrane of Cultured Hippocampal Neurons
Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth Cones and Presynaptic Membrane of Cultured Hippocampal Neurons

The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling  and procedural motor learning | Science Signaling
The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling and procedural motor learning | Science Signaling

Acid-sensing ion channels contribute to synaptic transmission and inhibit  cocaine-evoked plasticity | Nature Neuroscience
Acid-sensing ion channels contribute to synaptic transmission and inhibit cocaine-evoked plasticity | Nature Neuroscience

Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth  Cones and Presynaptic Membrane of Cultured Hippocampal Neurons
Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth Cones and Presynaptic Membrane of Cultured Hippocampal Neurons

SGCE promotes filopodia development and inhibits synapse formation. A... |  Download Scientific Diagram
SGCE promotes filopodia development and inhibits synapse formation. A... | Download Scientific Diagram

Acidic pHe regulates cytoskeletal dynamics through conformational integrin  β1 activation and promotes membrane protrusion - ScienceDirect
Acidic pHe regulates cytoskeletal dynamics through conformational integrin β1 activation and promotes membrane protrusion - ScienceDirect

IJMS | Free Full-Text | Ion Channels in Gliomas—From Molecular Basis  to Treatment
IJMS | Free Full-Text | Ion Channels in Gliomas—From Molecular Basis to Treatment

PDF) The ability of LCRMP-1 to promote cancer invasion by enhancing  filopodia formation is antagonized by CRMP-1
PDF) The ability of LCRMP-1 to promote cancer invasion by enhancing filopodia formation is antagonized by CRMP-1

Triggering of Major Brain Disorders by Protons and ATP: The Role of ASICs  and P2X Receptors | SpringerLink
Triggering of Major Brain Disorders by Protons and ATP: The Role of ASICs and P2X Receptors | SpringerLink

Semi-Implantable Bioelectronics | SpringerLink
Semi-Implantable Bioelectronics | SpringerLink

Direct Comparisons of the Morphology, Migration, Cell Adhesions, and Actin  Cytoskeleton of Fibroblasts in Four Different Three-Dimensional  Extracellular Matrices | Tissue Engineering Part A
Direct Comparisons of the Morphology, Migration, Cell Adhesions, and Actin Cytoskeleton of Fibroblasts in Four Different Three-Dimensional Extracellular Matrices | Tissue Engineering Part A

The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling  and procedural motor learning | Science Signaling
The acid-sensing ion channel ASIC1a mediates striatal synapse remodeling and procedural motor learning | Science Signaling

PDF) Brilliant Blue G improves cognition in an animal model of Alzheimer's  disease and inhibits amyloid-β-induced loss of filopodia and dendrite  spines in hippocampal neurons
PDF) Brilliant Blue G improves cognition in an animal model of Alzheimer's disease and inhibits amyloid-β-induced loss of filopodia and dendrite spines in hippocampal neurons

SGCE promotes filopodia development and inhibits synapse formation. A... |  Download Scientific Diagram
SGCE promotes filopodia development and inhibits synapse formation. A... | Download Scientific Diagram

High-Density Expression of Ca2+-Permeable ASIC1a Channels in NG2 Glia of  Rat Hippocampus | PLOS ONE
High-Density Expression of Ca2+-Permeable ASIC1a Channels in NG2 Glia of Rat Hippocampus | PLOS ONE

Cancers | Free Full-Text | Ca2+ Signaling and Its Potential Targeting in  Pancreatic Ductal Carcinoma
Cancers | Free Full-Text | Ca2+ Signaling and Its Potential Targeting in Pancreatic Ductal Carcinoma

Cancers | Free Full-Text | Aquaporins and Ion Channels as Dual Targets in  the Design of Novel Glioblastoma Therapeutics to Limit Invasiveness
Cancers | Free Full-Text | Aquaporins and Ion Channels as Dual Targets in the Design of Novel Glioblastoma Therapeutics to Limit Invasiveness

Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth  Cones and Presynaptic Membrane of Cultured Hippocampal Neurons
Frontiers | Distribution of Acid Sensing Ion Channels in Axonal Growth Cones and Presynaptic Membrane of Cultured Hippocampal Neurons

Triggering of Major Brain Disorders by Protons and ATP: The Role of ASICs  and P2X Receptors | SpringerLink
Triggering of Major Brain Disorders by Protons and ATP: The Role of ASICs and P2X Receptors | SpringerLink

Frontiers | Regulation of Neurogenesis by FGF Signaling and Neurogenin in  the Invertebrate Chordate Ciona
Frontiers | Regulation of Neurogenesis by FGF Signaling and Neurogenin in the Invertebrate Chordate Ciona