Transient receptor potential channels

Transient receptor potential ankyrin 1 mediates chronic pancreatitis pain in mice

Physiology / Inflammation / Locomotion / Mice / Transient receptor potential channels / Animals / Visceral Pain / Fibrosis / Medical Physiology / Chronic Pancreatitis / Animals / Visceral Pain / Fibrosis / Medical Physiology / Chronic Pancreatitis

A transient receptor potential channel expressed in taste receptor cells

Cognitive Science / Calcium / Membrane Proteins / Cell Biology / Gene expression / Nature / Mice / Transient receptor potential channels / Animals / Calcium channels / Nature Neuroscience / Health Science / Taste / Molecular cloning / Isoenzymes / Xenopus laevis / Oocytes / Heterologous Expression / Neurosciences / Transducin / Nature / Mice / Transient receptor potential channels / Animals / Calcium channels / Nature Neuroscience / Health Science / Taste / Molecular cloning / Isoenzymes / Xenopus laevis / Oocytes / Heterologous Expression / Neurosciences / Transducin

The Pyrexia transient receptor potential channel mediates circadian clock synchronization to low temperatures cycles in Drosophila melanogaster

Drosophila melanogaster / Biological Sciences / Darkness / Transient receptor potential channels / Animals / Temperature / Body Temperature / Photoperiod / Circadian Clocks / Temperature / Body Temperature / Photoperiod / Circadian Clocks

Prostate cell differentiation status determines transient receptor potential melastatin member 8 channel subcellular localization and function

Prostate Cancer / Cell Differentiation / Humans / Transient receptor potential channels / Clinical / Male / Endoplasmic Reticulum / Alternative splicing / Prostate / Subcellular Localization / Epithelial cells / Alternative Splicing / Protein isoforms / Base Sequence / Subcellular Fractions / Clinical Investigation / Plasma Membrane / Male / Endoplasmic Reticulum / Alternative splicing / Prostate / Subcellular Localization / Epithelial cells / Alternative Splicing / Protein isoforms / Base Sequence / Subcellular Fractions / Clinical Investigation / Plasma Membrane

Loss of classical transient receptor potential 6 channel reduces allergic airway response

Immunology / Smooth muscle / Mice / Transient receptor potential channels / Animals / Immunoglobulin E / Lung / Epithelial cells / Public health systems and services research / Trachea / Muscle contraction / Mucus / Hypersensitivity / Leukocytes / bronchial hyperreactivity (BHR) / Interleukin / Immunoglobulin E / Lung / Epithelial cells / Public health systems and services research / Trachea / Muscle contraction / Mucus / Hypersensitivity / Leukocytes / bronchial hyperreactivity (BHR) / Interleukin

Reduced Oral Ethanol Avoidance in Mice Lacking Transient Receptor Potential Channel Vanilloid Receptor 1

Psychology / Behavior Genetics / Mice / Transient receptor potential channels / Female / Animals / Male / Ethanol / Sucrose / Embryonic Stem Cells / Feeding Behavior / Capsaicin / Quinine / Trigeminal / Knockout Mice / Neurosciences / Animals / Male / Ethanol / Sucrose / Embryonic Stem Cells / Feeding Behavior / Capsaicin / Quinine / Trigeminal / Knockout Mice / Neurosciences

Methylglyoxal Activates Nociceptors through Transient Receptor Potential Channel A1 (TRPA1): A POSSIBLE MECHANISM OF METABOLIC NEUROPATHIES

Biological Chemistry / Biological Sciences / Neuropeptides / Humans / Mice / Transient receptor potential channels / Animals / Calcium channels / Neurons / CHEMICAL SCIENCES / Rats / Action Potentials / Nociceptors / Transient receptor potential channels / Animals / Calcium channels / Neurons / CHEMICAL SCIENCES / Rats / Action Potentials / Nociceptors

Ca2+-dependent PKC activation mediates menthol-induced desensitization of transient receptor potential M8

Psychology / Cognitive Science / Calcium / Drug interactions / Enzyme Inhibitors / Patch-clamp and imaging techniques / Cell line / Humans / Mutagenesis / Transient receptor potential channels / Animals / Rats / Time Factors / Transfection / Neurosciences / Fura / Menthol / Patch-clamp and imaging techniques / Cell line / Humans / Mutagenesis / Transient receptor potential channels / Animals / Rats / Time Factors / Transfection / Neurosciences / Fura / Menthol

Sensory Nerve Terminal Mitochondrial Dysfunction Activates Airway Sensory Nerves via Transient Receptor Potential (TRP) Channels

Calcium / Mitochondria / Molecular Pharmacology / Cell line / Humans / Reactive Oxygen Species / Mice / Transient receptor potential channels / Animals / Calcium channels / Male / Lipid peroxidation / Respiratory System / Action Potentials / Neurosciences / Vagus Nerve / Nociceptors / Reactive Oxygen Species / Mice / Transient receptor potential channels / Animals / Calcium channels / Male / Lipid peroxidation / Respiratory System / Action Potentials / Neurosciences / Vagus Nerve / Nociceptors

The Pyrexia transient receptor potential channel mediates circadian clock synchronization to low temperatures cycles in Drosophila melanogaster

Drosophila melanogaster / Biological Sciences / Darkness / Transient receptor potential channels / Animals / Temperature / Body Temperature / Photoperiod / Circadian Clocks / Temperature / Body Temperature / Photoperiod / Circadian Clocks

EGF suppresses hydrogen peroxide induced Ca2+ influx by inhibiting L-type channel activity in cultured human corneal endothelial cells

Calcium / Cell line / Humans / Endothelial Cells / Transient receptor potential channels / Hydrogen Peroxide / Epidermal Growth Factor / Optometry and Ophthalmology / Endothelial cell / Neurosciences / Oxidants / Intracellular Calcium / Hydrogen Peroxide / Epidermal Growth Factor / Optometry and Ophthalmology / Endothelial cell / Neurosciences / Oxidants / Intracellular Calcium

Molecular identification and functional characterization of a temperature-sensitive transient receptor potential channel (TRPM8) from canine

Transient receptor potential channels / Sensory Neuron / Protein Sequence Analysis / Molecular Identification / Mustard Oil / Temperature Sensitive Polymer / Patch Clamp / Temperature Sensitive Polymer / Patch Clamp

Heterologously expressed fungal transient receptor potential channels retain mechanosensitivity in vitro and osmotic response in vivo

Electrophysiology / Kinetics / Calcium / Ion Channels / Patch-clamp and imaging techniques / Budding Yeast / Saccharomyces cerevisiae / Lipids / Phylogeny / Transient receptor potential channels / Polymerase Chain Reaction / Candida albicans / Plasmids / Pressure / Molecular cloning / Time Factors / Fungal genome size / Osmosis / Lipid bilayers / Amino Acid Sequence / Culture Media / Heterologous Expression / Lipid Bilayer / Cytoplasm / Ligands / Patch Clamp / Molecular Sequence Data / Budding Yeast / Saccharomyces cerevisiae / Lipids / Phylogeny / Transient receptor potential channels / Polymerase Chain Reaction / Candida albicans / Plasmids / Pressure / Molecular cloning / Time Factors / Fungal genome size / Osmosis / Lipid bilayers / Amino Acid Sequence / Culture Media / Heterologous Expression / Lipid Bilayer / Cytoplasm / Ligands / Patch Clamp / Molecular Sequence Data

Methylglyoxal Activates Nociceptors through Transient Receptor Potential Channel A1 (TRPA1): A POSSIBLE MECHANISM OF METABOLIC NEUROPATHIES

Biological Chemistry / Biological Sciences / Neuropeptides / Humans / Mice / Transient receptor potential channels / Animals / Calcium channels / Neurons / CHEMICAL SCIENCES / Rats / Action Potentials / Nociceptors / Neuralgia / Transient receptor potential channels / Animals / Calcium channels / Neurons / CHEMICAL SCIENCES / Rats / Action Potentials / Nociceptors / Neuralgia

Soluble epoxide hydrolase limits mechanical hyperalgesia during inflammation

Inflammation / Calcium / Immunohistochemistry / Western blotting / Molecular / Mice / Transient receptor potential channels / Animals / Tandem Mass Spectrometry / High Performance Liquid Chromatography / Neurosciences / Hyperalgesia / Calcitonin Gene-Related Peptide / Mice / Transient receptor potential channels / Animals / Tandem Mass Spectrometry / High Performance Liquid Chromatography / Neurosciences / Hyperalgesia / Calcitonin Gene-Related Peptide
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