An evaluation of intrathecal ziconotide for the treatment of chronic pain
- 1 October 2000
- journal article
- review article
- Published by Informa Healthcare in Expert Opinion on Investigational Drugs
- Vol. 9 (10) , 2403-2410
- https://doi.org/10.1517/13543784.9.10.2403
Abstract
Ziconotide, the synthetic form of cone snail peptide pi-conotoxin MVIIA, is a neurone-specific N-type calcium channel blocker with an analgesic and neuroprotective effect. Intrathecal ziconotide has been recommended for approval by the FDA for the management of chronic pain. Spinally administered ziconotide produces analgesia by blocking neurotransmitter release from primary nociceptive afferents and prevents the propagation of pain signals to the brain. It has an advantage over intrathecal morphine in that there is no development of tolerance after prolonged use. Systemic toxicity is considerably reduced by administration of smaller doses intrathecally and selective delivery to the site of action in the nervous system. Nevertheless, there are neurological adverse effects due to delay in clearance of ziconotide from the neural tissues. Overall, ziconotide has a favourable risk/benefit ratio with advantages over several currently available intrathecal therapies for pain.Keywords
This publication has 16 references indexed in Scilit:
- A guide to drug evaluation for chronic painEmerging Drugs, 2000
- Effects of intrathecal administration of ziconotide, a selective neuronal N-type calcium channel blocker, on mechanical allodynia and heat hyperalgesia in a rat model of postoperative painPain, 2000
- Interactions of intrathecally administered ziconotide, a selective blocker of neuronal N-type voltage-sensitive calcium channels, with morphine on nociception in ratsPublished by Wolters Kluwer Health ,2000
- Pharmacotherapeutic potential of omega-conotoxin MVIIA (SNX-111), an N-type neuronal calcium channel blocker found in the venom of Conus magusToxicon, 1998
- Effect of subcutaneous administration of calcium channel blockers on nerve injury-induced hyperalgesiaBrain Research, 1998
- Irreversible and reversible blockade of IMR32 calcium channel currents by synthetic MVIIA and iodinated MVIIC ?-conopeptidesPflügers Archiv - European Journal of Physiology, 1995
- A novel ?-conopeptide for the presynaptic localization of calcium channels at the mammalian neuromuscular junctionJournal of Neurocytology, 1995
- Calcium channel antagonist peptides define several components of transmitter release in the hippocampusNeuropharmacology, 1994
- Voltage-sensitive calcium channels in spinal nociceptive processing: blockade of N- and P-type channels inhibits formalin-induced nociceptionJournal of Neuroscience, 1994
- Conotoxins.Journal of Biological Chemistry, 1991