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Published on: June 29, 2018
Effects of μ-opioid receptor modulation on the hippocampal network activity of sharp wave and ripples
Panagiotis Giannopoulos1, Costas Papatheodoropoulos
1Specialist Community Addictions Service, Unit 5, The Valley Centre, Gordon Road High Wycombe, Buckinghamshire, HP13 6EQ, UK. panos.giannopoulos@oxfordhealth.nhs.uk
Background And Purpose:
Hippocampus-dependent memory involves the activity of sharp wave ripples (SWRs), which are thought to participate in the process of memory consolidation. The hippocampus contains high levels of endogenous opioids and of μ-opioid receptors (MORs). Here, we have assessed the role of MOR agonists in the modulation of SWRs.
Experimental Approach:
Using recordings of extracellular potentials from the CA1 field of rat hippocampal slices, we examined the pharmacological actions of morphine, DAMGO and fentanyl on SWRs and on network excitability and paired-pulse inhibition.
Key Results:
All three MOR agonists (1 nM-10 μM) significantly increased the amplitude of sharp waves and the occurrence of SWR sequences, but reduced the initiation of episodes of SWRs. Fentanyl was most potent in producing these effects and morphine the least. Interestingly, although SWRs were reduced by relatively high concentrations (≥100 nM) of all agonists, they were significantly enhanced by very low concentrations of morphine (5-10 nM). Morphine and DAMGO at moderate-to-high concentrations increased network excitability and reduced inhibition. Furthermore, DAMGO suppressed inhibition more readily than it increased excitation, whereas morphine suppressed inhibition only at high concentrations. These drug effects were reversed by the MOR antagonists naloxone and CTOP.
Conclusions And Implications:
We found that the SWRs were significantly modulated by three MOR agonists and that the SWRs were very sensitive to subtle changes in the excitation/inhibition balance induced by MOR agonists. Such modulation might underlie the effects of these agonists on hippocampus-dependent memory.
Insights
Micro-opioid receptor (MOR) agonists modulate sharp wave ripples (SWRs), crucial for memory consolidation. Low morphine concentrations enhance SWRs, while higher doses and other agonists alter network excitability and inhibition.
Area of Science:
- Neuroscience
- Pharmacology
- Memory Research
Background:
- Sharp wave ripples (SWRs) are vital for hippocampus-dependent memory consolidation.
- The hippocampus expresses high levels of endogenous opioids and mu-opioid receptors (MORs).
Purpose of the Study:
- To investigate the role of MOR agonists in modulating SWR activity.
- To understand how MORs influence network excitability and inhibition in the hippocampus.
Main Methods:
- Extracellular potential recordings from rat hippocampal CA1 slices.
- Pharmacological assessment of morphine, DAMGO, and fentanyl on SWRs, network excitability, and paired-pulse inhibition.
- Reversal of drug effects using MOR antagonists naloxone and CTOP.
Main Results:
- MOR agonists increased sharp wave amplitude and SWR occurrence, but reduced SWR initiation.
- Fentanyl was most potent, morphine least potent; low-dose morphine uniquely enhanced SWRs.
- Moderate-to-high agonist concentrations increased excitability and reduced inhibition, with varying effects on excitation vs. inhibition balance.
Conclusions:
- MOR agonists significantly modulate SWRs, demonstrating high sensitivity to excitation/inhibition balance changes.
- These modulations by MOR agonists may explain their effects on hippocampus-dependent memory.
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