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Journal ArticleDOI

Impaired Nociception and Pain Sensation in Mice Lacking the Capsaicin Receptor

TLDR
Sensory neurons from mice lacking VR1 are severely deficient in their responses to each of these noxious stimuli and are impaired in the detection of painful heat, and showed little thermal hypersensitivity in the setting of inflammation.
Abstract
The capsaicin (vanilloid) receptor VR1 is a cation channel expressed by primary sensory neurons of the "pain" pathway. Heterologously expressed VR1 can be activated by vanilloid compounds, protons, or heat (>43 degrees C), but whether this channel contributes to chemical or thermal sensitivity in vivo is not known. Here, we demonstrate that sensory neurons from mice lacking VR1 are severely deficient in their responses to each of these noxious stimuli. VR1-/- mice showed normal responses to noxious mechanical stimuli but exhibited no vanilloid-evoked pain behavior, were impaired in the detection of painful heat, and showed little thermal hypersensitivity in the setting of inflammation. Thus, VR1 is essential for selective modalities of pain sensation and for tissue injury-induced thermal hyperalgesia.

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Citations
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Journal ArticleDOI

Phosphorylation of Extracellular Signal-Regulated Kinase in Primary Afferent Neurons by Noxious Stimuli and Its Involvement in Peripheral Sensitization

TL;DR: PERK inPrimary afferents by noxious stimulationin vivo showed distinct characteristics of expression and may be correlated with the functional activity of primary afferent neurons.
Journal ArticleDOI

TRPA1: A Gatekeeper for Inflammation

TL;DR: Tissue damage evokes an inflammatory response that promotes the removal of harmful stimuli, tissue repair, and protective behaviors to prevent further damage and encourage healing, making TRPA1 a gatekeeper of chronic inflammatory disorders of the skin, airways, and gastrointestinal tract.
Journal ArticleDOI

Molecular Determinants of Vanilloid Sensitivity in TRPV1

TL;DR: Key residues (Met547 and Thr550) in transmembrane regions 3 and 4 of rat and human TRPV1 that confer vanilloid sensitivity, [3H]RTX binding and competitive antagonist binding to rabbit TRpV1 are identified and it is shown that these residues differentially affect ligand recognition as well as the assays of functional response versus ligand binding.
Journal ArticleDOI

TRP ion channels in the nervous system.

TL;DR: In the central nervous system, TRPs participate in neurite outgrowth, receptor signalling and excitotoxic cell death resulting from anoxia, and are emerging as essential cellular switches that allow animals to respond to their environments.
Journal ArticleDOI

Signalling pathways involved in the sensitisation of mouse nociceptive neurones by nerve growth factor.

TL;DR: Monitoring the effects of NGF on the increase in intracellular calcium concentration following exposure to capsaicin indicates that the crucial early pathway activated by NGF involves PI3K, while PKC and CaMK II are also involved, probably at subsequent stages of the NGF‐activated signalling pathway.
References
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Journal ArticleDOI

The capsaicin receptor: a heat-activated ion channel in the pain pathway

TL;DR: The cloned capsaicin receptor is also activated by increases in temperature in the noxious range, suggesting that it functions as a transducer of painful thermal stimuli in vivo.
Journal ArticleDOI

A new and sensitive method for measuring thermal nociception in cutaneous hyperalgesia.

TL;DR: Both the thermal method and the Randall‐Selitto mechanical method detected dose‐related hyperalgesia and its blockade by either morphine or indomethacin, but the Thermal method showed greater bioassay sensitivity and allowed for the measurement of other behavioral parameters in addition to the nociceptive threshold.
Journal ArticleDOI

Vanilloid receptors on sensory nerves mediate the vasodilator action of anandamide

TL;DR: It is shown that the vasodilator response to anandamide in isolated arteries is capsaicin-sensitive and accompanied by release of calcitonin-gene-related peptide (CGRP), which indicates that the vanilloid receptor may be another molecular target for endogenousAnandamide, besides cannabinoid receptors, in the nervous and cardiovascular systems.
Journal Article

Vanilloid (Capsaicin) Receptors and Mechanisms

TL;DR: This paper focuses on hot pepper, which is eaten on a daily basis by an estimated one-quarter of the world’s population and has potential to be a biological target for regenerative medicine.
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