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Published on: July 15, 2010
Interleukin 1 beta inhibits synaptic strength and long-term potentiation in the rat CA1 hippocampus
F P Bellinger1, S Madamba, G R Siggins
1Department of Neuropharmacology, Scripps Research Institute, La Jolla, CA 92037.
Insights
Interleukin-1 beta (IL-1 beta) reduces long-term potentiation (LTP), a key process for memory and learning in the brain. This cytokine
Area of Science:
- Neuroscience
- Neuroinflammation
- Synaptic Plasticity
Background:
- Cytokines like interleukin-1 beta (IL-1 beta) are released in the nervous system during inflammation or infection.
- IL-1 beta has been shown to enhance synaptic inhibitory mechanisms.
- Long-term potentiation (LTP) is a cellular model for memory and learning.
Purpose of the Study:
- To investigate the effect of IL-1 beta on LTP in the CA1 region of rat hippocampal slices.
- To determine if IL-1 beta modulates synaptic potentials and affects LTP induction.
Main Methods:
- Superfusion of rat hippocampal slices with varying concentrations of IL-1 beta.
- Evoking LTP via tetanic stimulation of the stratum radiatum.
- Measuring population excitatory postsynaptic potential (pEPSP) slope and population spike (PS) amplitude.
Main Results:
- IL-1 beta significantly reduced LTP in a concentration-dependent manner.
- IL-1 beta applied before tetanic stimulation inhibited LTP of PS amplitude and pEPSP slope.
- Heat-inactivated IL-1 beta had no effect, confirming IL-1 beta's specific action.
Conclusions:
- IL-1 beta modulates synaptic potentials and reduces LTP.
- These findings suggest a role for IL-1 beta in neuronal disorders, including HIV-1-associated dementia.
Abstract:
Cytokines such as interleukin-1 beta (IL-1 beta) are released in the nervous system following inflammation or infection. Recently, IL-1 beta was shown to enhance synaptic inhibitory mechanisms. We therefore investigated the effect of IL-1 beta superfusion on long-term potentiation (LTP), the cellular model of memory and learning, evoked in the CA1 region by tetanic stimulation of the stratum radiatum in the rat hippocampal slice. IL-1 beta (150 pM-1.5 nM) superfused 10 min before tetanic stimulation significantly reduced LTP of the slope of the population excitatory postsynaptic potential (pEPSP) and the population spike (PS) amplitude in CA1 in a concentration-dependent manner. IL-1 beta (1.5 nM) applied for 10 min 1 h before tetanus significantly inhibited LTP of the PS amplitude and pEPSP slope and reduced pEPSP and PS values before tetanus as well, although the PS returned to control values before tetanus. Heat-inactivated IL-1 beta had no effect on pre-tetanus pEPSP or PS values or the induction of LTP. These data demonstrate that IL-1 beta modulates synaptic potentials and reduces LTP. These findings have important implications for the role of IL-1 beta in neuronal disorders following infection, perhaps best exemplified by HIV-1-associated dementia.
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