Effect of Acute Calcium Influx after Mechanical Stretch InjuryIn Vitroon the Viability of Hippocampal Neurons
- 1 January 2004
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Neurotrauma
- Vol. 21 (1) , 61-72
- https://doi.org/10.1089/089771504772695959
Abstract
We use a new in vitro model to examine the effect of mechanical deformation on neurons. We examined acute changes in cytosolic calcium concentrations ([Ca2+]i) caused by a rapid stretch of cultured hippocampal neurons, using mechanical loading conditions that mimic brain deformations during trauma. We found that stretch-injury of neurons induces a strain-dependent increase in [Ca2+]i. Remarkably, the extent of this calcium response exceeded the levels initiated by chemical toxicity with NMDA (100 μM) or glutamate (5 mM) exposure. Propidium iodide labeling at 24 h following stretch showed neuronal death occurred only at the most severe level of mechanical injury. Although NMDA-induced toxicity could be inhibited in calcium free media or by treatment with MK-801, stretch-induced neuronal death was not similarly reduced with either treatment. Unexpectedly, reduction of the acute stretch-induced calcium transient with calcium-free media or MK-801 resulted in an increase in neuronal death at lower stretch levels. These data suggest that mechanical stretch can initiate calcium influx in hippocampal neurons, but substantially modulating the early calcium flux from the extracellular space or through the NMDA channel does not provide an effective means for improving neuronal survival.Keywords
This publication has 55 references indexed in Scilit:
- Fundamentals of Impact Biomechanics: Part I - Biomechanics of the Head, Neck, and ThoraxAnnual Review of Biomedical Engineering, 2000
- One-Year Study of Spatial Memory Performance, Brain Morphology, and Cholinergic Markers After Moderate Controlled Cortical Impact in RatsJournal of Neurotrauma, 1999
- Calcium in Ischemic Cell DeathStroke, 1998
- An In Vitro Model of Traumatic Neuronal Injury: Loading Rate-Dependent Changes in Acute Cytosolic Calcium and Lactate Dehydrogenase ReleaseJournal of Neurotrauma, 1997
- Acute Alterations in [Ca2+]iin NG108-15 Cells Subjected to High Strain Rate Deformation and Chemical Hypoxia: Anin VitroModel for Neural TraumaJournal of Neurotrauma, 1996
- Stretch-Induced Injury of Cultured Neuronal, Glial, and Endothelial CellsStroke, 1996
- A New Model for Rapid Stretch-Induced Injury of Cells in Culture: Characterization of the Model Using AstrocytesJournal of Neurotrauma, 1995
- Calcium: still center-stage in hypoxic-ischemic neuronal deathTrends in Neurosciences, 1995
- Excitotoxicity and the NMDA receptor -- still lethal after eight yearsTrends in Neurosciences, 1995
- Hippocampal Pathology in Fatal Human Head Injury Without High Intracranial PressureJournal of Neurotrauma, 1994