Neurotoxic effects of local anesthetics on the mouse neuroblastoma NB2a cell line
No Thumbnail Available
Date
2015
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Local anesthetics are used clinically for peripheral nerve blocks, epidural anesthesia, spinal anesthesia and pain management; large concentrations, continuous application and long exposure time can cause neurotoxicity. The mechanism of neurotoxicity caused by local anesthetics is unclear. Neurite outgrowth and apoptosis can be used to evaluate neurotoxic effects. Mouse neuroblastoma cells were induced to differentiate and generate neurites in the presence of local anesthetics. The culture medium was removed and replaced with serum-free medium plus 20 μl combinations of epidermal growth factor and fibroblast growth factor containing tetracaine, prilocaine, lidocaine or procaine at concentrations of 1, 10, 25, or 100 μl prior to neurite measurement. Cell viability, iNOS, eNOS and apoptosis were evaluated. Local anesthetics produced toxic effects by neurite inhibition at low concentrations and by apoptosis at high concentrations. There was an inverse relation between local anesthetic concentrations and cell viability. Comparison of different local anesthetics showed toxicity, as assessed by cell viability and apoptotic potency, in the following order: tetracaine > prilocaine > lidocaine > procaine. Procaine was the least neurotoxic local anesthetic and because it is short-acting, may be preferred for pain prevention during short procedures. © 2015 The Biological Stain Commission.
Description
Keywords
Anesthetics, Local , Animals , Apoptosis , Cell Differentiation , Cell Line, Tumor , Cell Survival , drug effects , drug effects , drug effects , drug effects , drug effects , Mice , Neurites , Neurons , Neurotoxicity Syndromes , Oxidative Stress , pathology , pathology , toxicity , drug toxicity , local anesthetic agent , animal , apoptosis , cell differentiation , cell survival , drug effects , mouse , nerve cell , neurite , oxidative stress , pathology , toxicity and intoxication , tumor cell line