Dendritic cells do not transduce inflammatory stimuli via the capsaicin receptor TRPV1 |
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Authors: | O'Connell Peta J Pingle Sandeep C Ahern Gerard P |
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Affiliation: | Robarts Research Institute, 100 Perth Drive, P.O. Box 5015, London, Ont., Canada N6A 5K8. peta@robarts.ca |
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Abstract: | Inflammatory stimuli provide critical activation signals for dendritic cells (DC). Signaling through the capsaicin receptor TRPV1 is reported to initiate DC maturation and migration. We attempted to characterize TRPV1 channels in DC. Capsaicin or extracellular protons failed to elicit a change in intracellular [Ca(2+)] or membrane current in DC. In contrast, capsaicin evoked a sustained increase in [Ca(2+)] and large inwards currents in sensory neurons and TRPV1-expressing HEK293 cells. TRPV1 expression was confirmed by RT-PCR in sensory neurons, but was undetectable in DC. Interestingly, and in contrast to capsaicin, the inflammatory neuropeptide substance P evoked Ca(2+) transients in DC. Thus, our data do not support the hypothesis that DC express TRPV1 channels. Rather, signaling through TRPV1 in sensory nerves may modulate DC via neurogenic actions. |
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Keywords: | CGRP, calcitonin gene related peptide DC, dendritic cells DRG, dorsal root ganglia FITC, fluorescein isothiocyanate PE, phyocoerythrin TRPV1, transient receptor potential channel vanilloid type 1 SP substance P |
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