A spinal mechanism of action is involved in the antinociception produced by the capsaicin analogue NE 19550 (olvanil)
- 1 December 1990
- journal article
- Published by Wolters Kluwer Health in Pain
- Vol. 43 (3) , 353-362
- https://doi.org/10.1016/0304-3959(90)90032-9
Abstract
We have studied the effect of NE 19550 (olvanil, N-(4-hydroxy-3-methoxyphenyl) methyl-9Z-octadecenamide), a capsaicin analogue with approximately equipotent antinociceptive activity in vivo compared with capsaicin, on nociceptive responses recorded from spinal dorsal horn neurones in vivo and from a spinal ventral root in vitro. In adult rats anaesthetized with halothane, antinociceptive doses of olvanil (20–40 μmol/kg, s.c.) reduced C-fibre responses evoked in wide dynamic range, lumbar dorsal horn neurones, by peripheral transcutaneous electrical stimulation. Intradermal injection of olvanil, localized to a discrete region of the peripheral receptive field, did not activate C-fibres nor change C-fibre evoked activation of dorsal horn neurones. Spinal intrathecal administration of olvanil attenuated C-fibre evoked responses and, at the highest concentration, significantly reduced Aβ-fibre evoked activity. In the neonatal rat spinal cord/tail preparation maintained in vitro, superfusion of the cord with olvanil (500 nM-5 μ M) did not evoke a depolarization but responses to peripheral noxious stimulation were attenuated. In a similar in vitro preparation of the neonatal rat spinal cord, the release of calcitonin gene-related peptide-like immunoreactivity (CGRP-LI) was measured in spinal cord superfusates. Capsaicin (2–10 μM) evoked a large release of CGRP-LI but olvanil (2–10 μM) produced only a small or undetectable release. Following the administration of each substance, however, the release of CGRP-LI evoked by a depolarizing potassium stimulus was significantly attenuated. These data indicate that C-fibre input to the dorsal horn was attenuated by acute systemic doses of olvanil that were antinociceptive in behavioural tests. This effect was unlikely to be due to impairment of C-fibre function by a peripheral locus of action but was more consistent with an action in the spinal cord in which the reduced release of a neurotransmitter substance from afferent nerve terminals may play a prominent role.Keywords
This publication has 24 references indexed in Scilit:
- Antinociception produced by capsaicin: spinal or peripheral mechanism?European Journal of Pharmacology, 1990
- NE-19550 and NE-21610, antinociceptive capsaicin analogues: studies on nociceptive fibres of the neonatal rat tail in vitroEuropean Journal of Pharmacology, 1990
- Differential effects of excitatory amino acid antagonists on dorsal horn nociceptive neurones in the ratBrain Research, 1990
- Capsaicin desensitization of peripheral nociceptive fibres does not impair sensitivity to other noxious stimuliNeuroscience Letters, 1989
- Subcutaneous formalin-induced activity of dorsal horn neurones in the rat: differential response to an intrathecal opiate administered pre or post formalinPain, 1987
- Cutaneous primary afferent properties in the hind limb of the neonatal rat.The Journal of Physiology, 1987
- The effects of locally applied capsaicin on conduction in cutaneous nerves in four mammalian speciesBritish Journal of Pharmacology, 1986
- The post‐natal development of cutaneous afferent fibre input and receptive field organization in the rat dorsal horn.The Journal of Physiology, 1985
- The role of substance P as a neurotransmitter in the reflexes of slow time courses in the neonatal rat spinal cordBritish Journal of Pharmacology, 1985
- Capsaicin and sensory neurones — a reviewPain, 1983