The cortical innate immune response increases local neuronal excitability leading to seizures
Open Access
- 30 June 2009
- journal article
- research article
- Published by Oxford University Press (OUP) in Brain
- Vol. 132 (9), 2478-2486
- https://doi.org/10.1093/brain/awp177
Abstract
Brain glial cells, five times more prevalent than neurons, have recently received attention for their potential involvement in epileptic seizures. Microglia and astrocytes, associated with inflammatory innate immune responses, are responsible for surveillance of brain damage that frequently results in seizures. Thus, an intriguing suggestion has been put forward that seizures may be facilitated and perhaps triggered by brain immune responses. Indeed, recent evidence strongly implicates innate immune responses in lowering seizure threshold in experimental models of epilepsy, yet, there is no proof that they can play an independent role in initiating seizures in vivo. Here, we show that cortical innate immune responses alone produce profound increases of brain excitability resulting in focal seizures. We found that cortical application of lipopolysaccharide, binding to toll-like receptor 4 (TLR4), triples evoked field potential amplitudes and produces focal epileptiform discharges. These effects are prevented by pre-application of interleukin-1 receptor antagonist. Our results demonstrate how the innate immune response may participate in acute seizures, increasing neuronal excitability through interleukin-1 release in response to TLR4 detection of the danger signals associated with infections of the central nervous system and with brain injury. These results suggest an important role of innate immunity in epileptogenesis and focus on glial inhibition, through pharmacological blockade of TLR4 and the pro-inflammatory mediators released by activated glia, in the study and treatment of seizure disorders in humans.Keywords
This publication has 63 references indexed in Scilit:
- Microglial activation and TNFα production mediate altered CNS excitability following peripheral inflammationProceedings of the National Academy of Sciences, 2008
- A novel non-transcriptional pathway mediates the proconvulsive effects of interleukin-1Brain, 2008
- Role of Brain Inflammation in EpileptogenesisYonsei Medical Journal, 2008
- Modeling the neurovascular niche: Murine strain differences mimic the range of responses to chronic hypoxia in the premature newbornJournal of Neuroscience Research, 2007
- Interleukin-10 endogenously expressed in microglia prevents lipopolysaccharide-induced neurodegeneration in the rat cerebral cortex in vivoExperimental & Molecular Medicine, 2007
- Potassium Dynamics in the Epileptic Cortex: New Insights on an Old TopicThe Neuroscientist, 2007
- Pivotal role for neuronal Toll-like receptors in ischemic brain injury and functional deficitsProceedings of the National Academy of Sciences, 2007
- The multiple effects of ketamine on electroencephalographic activity and behavior in WAG/Rij ratsPharmacology Biochemistry and Behavior, 2004
- Effects of kainic acid on messenger RNA levels of IL-1β, IL-6, TNFα and LIF in the rat brainBiochemical and Biophysical Research Communications, 1991
- Convulsants induce interleukin-1β messenger RNA in rat brainBiochemical and Biophysical Research Communications, 1990