Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/66781
Citations
Scopus Web of Science® Altmetric
?
?
Type: Journal article
Title: Design and Assessment of a Potent Sodium Channel Blocking Derivative of Mexiletine for Minimizing Experimental Neuropathic Pain in Several Rat Models
Author: Weston, R.
Subasinghe, K.
Staikopoulos, V.
Jarrott, B.
Citation: Neurochemical Research, 2009; 34(10):1816-1823
Publisher: Kluwer Academic/Plenum Publ
Issue Date: 2009
ISSN: 0364-3190
1573-6903
Statement of
Responsibility: 
Robert M. Weston, Kamani R. Subasinghe, Vasiliki Staikopoulos, Bevyn Jarrott
Abstract: Physical or chemical damage to peripheral nerves can result in neuropathic pain which is not easily alleviated by conventional analgesic drugs. Substantial evidence has demonstrated that voltage-gated Na+ channels in the membrane of damaged nerves play a key role in the establishment and maintenance of pathological neuronal excitability not only of these peripheral nerves but also in the second- and third-order neurons in the pain pathway to the cerebral cortex. Na+ channel blocking drugs have been used in treating neuropathic pain with limited success mainly because of a preponderance of side-effects. We have developed an analogue of mexiletine which is approximately 80 times more potent than mexiletine in competing with the radioligand, 3H-batrachotoxinin for binding to Na+ channels in rat brain membranes and also it is much more lipophilic than mexiletine which should enhance its uptake into the brain to block the increased expression of Na+ channels on second- and third-order neurons of the pain pathway. This analogue, HFI-1, has been tested in three different rat models of neuropathic pain (formalin paw model, ligated spinal nerve model and contusive spinal cord injury model) and found to be more effective in reducing pain behaviours than mexiletine.
Keywords: Voltage gated sodium channels
Sodium channel blockers
Mexiletine
HFI-1
Neuropathic pain
Rodent models of neuropathic pain
Rights: © Springer Science+Business Media, LLC 2009
DOI: 10.1007/s11064-009-0012-y
Published version: http://dx.doi.org/10.1007/s11064-009-0012-y
Appears in Collections:Aurora harvest 5
Molecular and Biomedical Science publications

Files in This Item:
There are no files associated with this item.


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.