British Journal of Pharmacology · 1999 · 66 citations · 19 references
Although the cloned rat vanilloid receptor VR1 appears to account for both receptor binding and calcium uptake, the identification of vanilloids selective for one or the other response is of importance because these ligands may induce distinct patterns of biological activities. Phorbol 12,13‐didecanoate 20‐homovanillate (PDDHV) evoked 45 Ca 2+ ‐uptake by rat dorsal root ganglion neurons (expressing native vanilloid receptors) in culture with an EC 50 of 70 n M but inhibited [ 3 H]‐resiniferatoxin (RTX) binding to rat dorsal root ganglion membranes with a much lower potency (K i >10,000 n M ). This difference in potencies represents a more than 100 fold selectivity for capsaicin‐type pharmacology. 45 Ca 2+ influx by PDDHV was fully inhibited by the competitive vanilloid receptor antagonist capsazepine, consistent with the calcium uptake occurring via vanilloid receptors. PDDHV induced calcium mobilization in CHO cells transfected with the cloned rat vanilloid receptor VR1 with an EC 50 of 125 n M and inhibited [ 3 H]‐RTX binding to these cells with an estimated K i of 10,000 n M . By contrast, PDDHV failed to evoke a measurable calcium response in non‐transfected CHO cells, confirming its action through VR1. We conclude that PDDHV is two orders of magnitude more potent for inducing calcium uptake than for inhibiting RTX binding at vanilloid receptors, making this novel vanilloid a ligand selective for capsaicin‐type pharmacology. These results emphasize the importance of monitoring multiple endpoints for evaluation of vanilloid receptor structure‐activity relations. Furthermore, PDDHV now provides a tool to explore the biological correlates of capsaicin‐type vanilloid pharmacology. British Journal of Pharmacology (1999) 128 , 428–434; doi: 10.1038/sj.bjp.0702810
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The capsaicin receptor: a heat-activated ion channel in the pain pathway
Michael J. Caterina, Mark Schumacher, Makoto Tominaga et al. · Nature · 1997 · 9K citations · Full text
The Cloned Capsaicin Receptor Integrates Multiple Pain-Producing Stimuli
Makoto Tominaga, Michael J. Caterina, Annika B. Malmberg et al. · Neuron · 1998 · 3.1K citations · Full text
Capsaicin-induced ion fluxes in dorsal root ganglion cells in culture
JN Wood, J. Winter, I. F. James et al. · Journal of Neuroscience · 1988 · 563 citations · Full text