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Journal Article
Molecular Pain, ISSN 1744-8069, 1/2009, Volume 5, Issue 1, pp. 3 - 3
Abundantly expressed in pain-sensing neurons, TRPV1, TRPA1 and TRPM8 are major cellular sensors of thermal, chemical and mechanical stimuli. The function of... 
CELLS | ACTIVATION | PAIN | INHIBITION | ACID | NOCICEPTIVE NEURONS | CAPSAICIN RECEPTOR TRPV1 | SELECTIVITY | NEUROSCIENCES | Lidocaine - pharmacology | Transient Receptor Potential Channels - antagonists & inhibitors | Calcium Channels - metabolism | Calcium - metabolism | Calcium Signaling - physiology | Humans | Porins - metabolism | Anesthetics, Local - pharmacology | Calcium Channels - physiology | Ion Channel Gating - physiology | Movement - physiology | Aldehydes - pharmacology | Thiocyanates - pharmacology | Transient Receptor Potential Channels - physiology | Benzamides - pharmacology | Transient Receptor Potential Channels - metabolism | Carbamates - pharmacology | Membrane Potentials - drug effects | Nerve Tissue Proteins - antagonists & inhibitors | Nerve Tissue Proteins - physiology | Quinolinium Compounds - pharmacokinetics | Nerve Tissue Proteins - agonists | Cells, Cultured | Rats | TRPM Cation Channels - agonists | Allyl Compounds - pharmacology | Calcium Channel Blockers - pharmacology | Membrane Potentials - physiology | TRPM Cation Channels - physiology | Transient Receptor Potential Channels - agonists | Nerve Tissue Proteins - metabolism | Lidocaine - analogs & derivatives | Animals | TRPA1 Cation Channel | TRPM Cation Channels - metabolism | HeLa Cells | Benzoxazoles - pharmacokinetics | Ion Channel Gating - drug effects | Physiological aspects | Sensory receptors | Ion channels | Genetic aspects | Research
Journal Article
Journal of Dental Research, ISSN 0022-0345, 9/2014, Volume 93, Issue 9, pp. 911 - 917
The mechanism of pain in dentine hypersensitivity is poorly understood but proposed to result from the activation of dental sensory neurons in response to... 
orofacial pain | sensation | dentin | signal transduction | transient receptor potential channel | ion channels | HUMAN DENTAL-PULP | CELLS | RAT ODONTOBLASTS | SODIUM-CALCIUM EXCHANGERS | TRANSDUCTION | TOOTH-PULP | IN-VITRO | DENTISTRY, ORAL SURGERY & MEDICINE | ION-CHANNEL | MICE | EXPRESSION | Acrolein - analogs & derivatives | Transient Receptor Potential Channels - antagonists & inhibitors | Leucine - pharmacology | Capsaicin - pharmacology | Humans | Adenosine Triphosphate - secretion | Nociceptors - physiology | Sensory System Agents - pharmacology | Calcium Channels - physiology | Pyrimidinones - pharmacology | Transient Receptor Potential Channels - physiology | Cell Culture Techniques | Leucine - analogs & derivatives | Isothiocyanates - pharmacology | Acrolein - pharmacology | Cell Line | Nerve Tissue Proteins - antagonists & inhibitors | Acetanilides - pharmacology | Nerve Tissue Proteins - physiology | TRPV Cation Channels - physiology | Purines - pharmacology | Nerve Tissue Proteins - agonists | TRPV Cation Channels - agonists | Dental Pulp - cytology | TRPM Cation Channels - agonists | Sulfonamides - pharmacology | Transient Receptor Potential Channels - agonists | Culture Media, Conditioned | Calcium Signaling - drug effects | Odontoblasts - physiology | Odontoblasts - secretion | TRPA1 Cation Channel | Research Reports
Journal Article
Journal Article
Advances in experimental medicine and biology, ISSN 0065-2598, 2017, Volume 976, p. 1
The transient receptor potential (TRP) ion channels are named after the discovery of the photo-transducted channels in Drosophila. TRPs, activated by various... 
Transient Receptor Potential Channels - classification | Animals | Humans | Transient Receptor Potential Channels - physiology
Journal Article
Journal of Biological Chemistry, ISSN 0021-9258, 05/2016, Volume 291, Issue 21, pp. 11446 - 11459
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 04/2005, Volume 25, Issue 16, pp. 4052 - 4061
Mechanosensory channels of sensory cells mediate the sensations of hearing, touch, and some forms of pain. The TRPA1 (a member of the TRP family of ion channel... 
Mechanosensory | Nociceptor | Auditory | Desensitization | Pain | Channel | Cochlea | Hair cell | Transduction | Nodose | Multisensory | Adaptation | nociceptor | cochlea | LOCALIZATION | pain | ROOT GANGLION NEURONS | transduction | STEREOCILIA | hair cell | channel | adaptation | multisensory | NEUROSCIENCES | desensitization | MECHANOTRANSDUCER CHANNEL | auditory | MECHANOELECTRICAL TRANSDUCTION | CALCIUM | FAST ADAPTATION | MECHANOSENSORY TRANSDUCTION | ION CHANNELS | COLD | mechanosensory | nodose | Gadolinium - pharmacology | Membrane Glycoproteins - metabolism | Calcium - metabolism | Humans | Actins - metabolism | Mechanoreceptors - physiology | Nociceptors - physiology | Membrane Potentials - radiation effects | RNA, Messenger - metabolism | Patch-Clamp Techniques - methods | Dose-Response Relationship, Drug | Ganglia - cytology | Drug Interactions | Transfection - methods | Hair Cells, Auditory - physiology | Gentamicins - pharmacology | Cloning, Molecular - methods | Ubiquitin Thiolesterase - metabolism | Transient Receptor Potential Channels - physiology | Electric Stimulation - methods | In Situ Hybridization - methods | Isothiocyanates - pharmacology | Animals, Newborn | Membrane Potentials - drug effects | Neurons, Afferent - drug effects | Neurons, Afferent - radiation effects | Cell Line | Peripherins | Blotting, Western - methods | Membrane Potentials - physiology | Neurons, Afferent - physiology | Immunohistochemistry - methods | Nerve Tissue Proteins - metabolism | Hair Cells, Auditory - drug effects | Neurons, Afferent - classification | Animals | Cell Count - methods | Ruthenium Red - pharmacology | Pain - physiopathology | Transient Receptor Potential Channels - genetics | TRPA1 Cation Channel | Amiloride - pharmacology | Hearing - physiology | Mice | Neurons, Afferent - metabolism | Neurofilament Proteins - metabolism | Intermediate Filament Proteins - metabolism | Nociceptors - drug effects | Molecular | Cellular
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 01/2008, Volume 28, Issue 3, pp. 576 - 586
Journal Article