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Updated: Feb 14, 2026

Methods for Intravenous Self Administration in a Mouse Model
Published on: December 8, 2012
Intravenous morphine self-administration alters accumbal microRNA profiles in the mouse brain
Juhwan Kim1, Heh-In Im2, Changjong Moon3
1Department of Veterinary Anatomy and Animal Behavior, College of Veterinary Medicine and BK21 Plus Project Team, Chonnam National University, Gwangju; Center for Neuroscience, Korea Institute of Science and Technology (KIST), Seoul, South Korea.
Abstract:
A significant amount of evidence indicates that microRNAs (miRNAs) play an important role in drug addiction. The nucleus accumbens (NAc) is a critical part of the brain's reward circuit and is involved in a variety of psychiatric disorders, including depression, anxiety, and drug addiction. However, few studies have examined the expression of miRNAs and their functional roles in the NAc under conditions of morphine addiction. In this study, mice were intravenously infused with morphine (0.01, 0.03, 0.3, 1 and 3 mg/kg/infusion) and showed inverted U-shaped response. After morphine self-administration, NAc was used to analyze the functional networks of altered miRNAs and their putative target mRNAs in the NAc following intravenous self-administration of morphine. We utilized several bioinformatics tools, including Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway mapping and CyTargetLinker. We found that 62 miRNAs were altered and exhibited differential expression patterns. The putative targets were related to diverse regulatory functions, such as neurogenesis, neurodegeneration, and synaptic plasticity, as well as the pharmacological effects of morphine (receptor internalization/endocytosis). The present findings provide novel insights into the regulatory mechanisms of accumbal molecules under conditions of morphine addiction and identify several novel biomarkers associated with morphine addiction.
Insights
MicroRNAs (miRNAs) are crucial in drug addiction. This study identified 62 altered miRNAs in the nucleus accumbens (NAc) of morphine-addicted mice, revealing new biomarkers for addiction.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) are implicated in drug addiction.
- The nucleus accumbens (NAc) is vital for reward processing and psychiatric disorders.
- Limited research exists on miRNA roles in the NAc during morphine addiction.
Purpose of the Study:
- To investigate altered miRNA expression and function in the NAc during morphine addiction.
- To identify molecular targets and pathways regulated by miRNAs in morphine addiction.
- To discover potential biomarkers for morphine addiction.
Main Methods:
- Mice received intravenous morphine infusions, exhibiting an inverted U-shaped dose-response.
- Morphine self-administration was employed.
- Bioinformatic tools (KEGG, CyTargetLinker) analyzed miRNA and mRNA networks in the NAc.
Main Results:
- 62 miRNAs showed differential expression in the NAc following morphine self-administration.
- Putative miRNA targets are involved in neurogenesis, neurodegeneration, and synaptic plasticity.
- Targets also relate to morphine's pharmacological effects, including receptor internalization.
Conclusions:
- This study provides novel insights into molecular regulation in the NAc under morphine addiction.
- Altered miRNAs and their targets highlight key regulatory mechanisms.
- Several novel biomarkers for morphine addiction were identified.
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