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Updated: Aug 11, 2026

Recording Temperature-induced Neuronal Activity through Monitoring Calcium Changes in the Olfactory Bulb of Xenopus laevis
Published on: June 3, 2016
Olfactory nerve stimulation-evoked mGluR1 slow potentials, oscillations, and calcium signaling in mouse olfactory
1Laboratory for Neuronal Circuit Dynamics, RIKEN Brain Science Institute, Wako-shi, Saitama, 351-0198, Japan.
Abstract:
Fast synaptic transmission between olfactory receptor neurons and mitral cells (MCs) is mediated through AMPA and NMDA ionotropic glutamate receptors. MCs also express high levels of metabotropic glutamate receptor 1 (mGluR1) whose functional significance is less understood. Here we characterized a slow mGluR1-mediated potential that was evoked by high-frequency (100-Hz) olfactory nerve (ON) stimulation in the presence of NBQX and D-APV, blockers of ionotropic glutamate receptors, and that was associated with a local Ca2+ transient in the MC dendritic tuft. High-frequency ON stimulation in the presence of NBQX and D-APV also evoked a slow, nearly 2-Hz oscillation of MC membrane potential that was abolished by the mGluR1 antagonist LY367385 (50 microM). Both mGluR slow potential and slow oscillation persisted in the presence of gabazine (10 microM), a GABA(A) receptor antagonist, and intracellular QX-314 (10 mM), a Na+ channel blocker. In contrast to a slow mGluR1 potential in cerebellar Purkinje neurons, the MC mGluR1 potential was not depressed by SKF96365 (< or =250 microM) and thus is likely not mediated by TRPC1 cation channels, nor was it potentiated by an elevation of intracellular Ca2+ level. Imaging with the Na+ indicator SBFI revealed a Na+ transient in the MC dendrite accompanying the mGluR1 slow potential. We conclude that the MC mGluR1 potential triggered by glutamate released from the ON supports oscillations and synchronizations of MCs associated within one glomerulus.
Insights
Metabotropic glutamate receptor 1 (mGluR1) mediates slow potentials and oscillations in mitral cells (MCs) during high-frequency olfactory nerve stimulation. This glutamate signaling supports synchronized MC activity within olfactory glomeruli.
Area of Science:
- Neuroscience
- Olfactory System Research
- Synaptic Transmission
Background:
- Fast synaptic transmission in the olfactory system relies on AMPA and NMDA receptors.
- The role of metabotropic glutamate receptor 1 (mGluR1) in mitral cells (MCs) is not well understood.
Purpose of the Study:
- To characterize the functional significance of mGluR1 in MCs.
- To investigate mGluR1-mediated signaling during olfactory nerve stimulation.
Main Methods:
- Electrophysiological recordings in MCs.
- High-frequency olfactory nerve stimulation.
- Pharmacological blockade of ionotropic glutamate receptors (NBQX, D-APV) and GABA(A) receptors (gabazine).
- Calcium (Ca2+) and sodium (Na+) imaging.
- Application of mGluR1 antagonist (LY367385).
Main Results:
- High-frequency stimulation evoked a slow mGluR1-mediated potential and a ~2-Hz oscillation in MCs.
- These effects were blocked by the mGluR1 antagonist LY367385.
- The mGluR1 potential was associated with Ca2+ and Na+ transients in the MC dendritic tuft.
- The potential and oscillation persisted despite blockade of ionotropic glutamate and GABA(A) receptors.
Conclusions:
- The mGluR1 pathway in MCs is activated by glutamate released during high-frequency olfactory nerve stimulation.
- This pathway contributes to slow potentials and oscillations, influencing MC synchronization within olfactory glomeruli.
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