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Inducing Plasticity of Astrocytic Receptors by Manipulation of Neuronal Firing Rates
Published on: March 20, 2014
Expression of µ-Opioid Receptor in CA1 Hippocampal Astrocytes
Min-Ho Nam1,2,3, Kyung-Seok Han1,2,4, Jaekwang Lee1
1Center for Neuroscience and Functional Connectomics, Korea Institute of Science and Technology (KIST), Seoul 02792, Korea.
Abstract:
µ-opioid receptor (MOR) is a class of opioid receptors with a high affinity for enkephalins and beta-endorphin. In hippocampus, activation of MOR is known to enhance the neuronal excitability of pyramidal neurons, which has been mainly attributed to a disinhibition of pyramidal neurons via activating Gαi subunit to suppress the presynaptic release of GABA in hippocampal interneurons. In contrast, the potential role of MOR in hippocampal astrocytes, the most abundant cell type in the brain, has remained unexplored. Here, we determine the cellular and subcellular distribution of MOR in different cell types of the hippocampus by utilizing MOR-mCherry mice and two different antibodies against MOR. Consistent with previous findings, we demonstrate that MOR expression in the CA1 pyramidal layer is co-localized with axon terminals from GABAergic inhibitory neurons but not with soma of pyramidal neurons. More importantly, we demonstrate that MOR is highly expressed in CA1 hippocampal astrocytes. The ultrastructural analysis further demonstrates that the astrocytic MOR is localized in soma and processes, but not in microdomains near synapses. Lastly, we demonstrate that astrocytes in ventral tegmental area and nucleus accumbens also express MOR. Our results provide the unprecedented evidence for the presence of MOR in astrocytes, implicating potential roles of astrocytic MOR in addictive behaviors.
Insights
µ-opioid receptors (MOR) are found in hippocampal astrocytes, not just neurons. This discovery suggests a new role for astrocytic MOR in brain function and addictive behaviors.
Area of Science:
- Neuroscience
- Cell Biology
- Pharmacology
Background:
- µ-opioid receptors (MOR) modulate neuronal excitability in the hippocampus, primarily through GABAergic interneurons.
- The role of MOR in hippocampal astrocytes, the brain's most abundant glial cells, remains largely unknown.
Purpose of the Study:
- To investigate the cellular and subcellular distribution of MOR in hippocampal astrocytes.
- To explore the potential implications of astrocytic MOR in brain function and behavior.
Main Methods:
- Utilized MOR-mCherry mice and specific MOR antibodies for cellular localization studies.
- Performed ultrastructural analysis to determine subcellular distribution of MOR in astrocytes.
- Examined MOR expression in astrocytes of the ventral tegmental area and nucleus accumbens.
Main Results:
- Confirmed MOR expression in GABAergic axon terminals in the CA1 pyramidal layer.
- Demonstrated high expression of MOR in CA1 hippocampal astrocytes, localized in soma and processes.
- Identified MOR expression in astrocytes within the ventral tegmental area and nucleus accumbens.
Conclusions:
- This study provides the first evidence for the presence of µ-opioid receptors in astrocytes.
- Astrocytic MOR may play a significant role in addictive behaviors, opening new avenues for research and therapeutic strategies.
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