Morphine self-administration induces region-specific brain volume changes and microglial phenotypic alterations without affecting neuronal density in male Wistar rats
Elizarraras-Herrera, A. D.; Medina-Sanchez, D.; Serrano-Ramirez, M. S.; Angeles Valdez, D.; Trujillo-Villarreal, L. A.; Carbajo-Mata, M. A.; Carranza-Aguilar, C.; Garza-Villarreal, E. A.
Show abstract
Addiction to opioids, including morphine, is a major public health crisis in the U.S. It has been associated with brain volume changes in reward-related regions, neuronal death, and neuroinflammation. However, the link between structural changes and neuroinflammation is not well understood. In this study, we used operant conditioning to induce morphine self-administration in rats and examined brain volume and cellular changes, focusing on microglial phenotypes. Male Wistar rats were conditioned to morphine self-administration (0.01 mg/kg) for 20 days under a fixed-ratio 1 schedule. In vivo structural Magnetic Resonance Imaging (MRI) scans were conducted at the beginning and end of self-administration. Brains were stained for Iba1 and NeuN proteins, and confocal images were analyzed for cell counts and microglial morphology. We used Deformation-Based Morphometry for MRI volume analysis and Principal Component Analysis with K-means clustering for microglial phenotyping. Our results showed that morphine self-administration led to volume changes in addiction-related brain regions, including increased globus pallidus and decreased insular cortex volume. Additionally, morphine caused widespread neuroinflammation, evidenced by elevated microglial density in the caudate-putamen, dentate gyrus, globus pallidus, and insular cortex, without affecting neuron counts. Finally, we observed region-specific variations in microglial phenotypes, suggesting region-specific neuroinflammatory roles. In conclusion, our study shows that morphine self-administration induces structural and microglial changes in addiction-related brain regions without neuronal loss, highlighting the role of neuroinflammation in opioid-induced adaptations. The variability in microglial phenotypes underscores their complexity, emphasizing the need to study their progression in addiction and their potential as therapeutic targets.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Long-access heroin self-administration induces region specific reduction of grey matter volume and microglia reactivity in the rat. 98%
- Increased LPS-Induced Fever and Sickness Behavior in Adult Male and Female Rats Perinatally Exposed to Morphine 95%
- Adolescent ethanol drinking promotes hyperalgesia, neuroinflammation and serotonergic deficits in mice that persist into adulthood 95%
Similar papers in this journal
- Chronic delivery of buprenorphine during abstinence decreases incubation of heroin seeking and neuronal activation in medial prefrontal cortex and striatum in male and female rats 96%
- CaMKIIa+ neurons in the bed nucleus of the stria terminalis modulate pace of natural reward seeking depending on internal state 94%
- The ultrasonic vocalization (USV) syllable profile during neonatal opioid withdrawal and a kappa opioid receptor component to increased USV emissions in female mice 94%
Similar papers in this journal
- Comparative analysis of the modulation of perineuronal nets in the prefrontal cortex of rats during protracted withdrawal from cocaine, heroin and sucrose self-administration 96%
- Reduced anterior cingulate cortex volume induced by chronic stress correlates with increased behavioral emotionality and decreased synaptic puncta density 94%
- Unexpected short- and long-term effects of chronic adolescent HU-210 exposure on emotional behavior 94%
Similar papers in this journal
- Repeated blast mild traumatic brain injury and oxycodone self-administration produce interactive effects on neuroimaging outcomes 95%
- Rapid appearance of negative emotion during oral fentanyl self-administration in male and female rats 94%
- Cocaine memory reactivation induces functional adaptations of fast-spiking interneurons in the rat medial prefrontal cortex 94%
Similar papers in this journal
- Prenatal opioid exposure inhibits microglial sculpting of the dopamine system during adolescence 95%
- Facilitating mGluR4 activity reverses the long-term deleterious consequences of chronic morphine exposure 94%
- Role of the medial prefrontal cortex in the effects of rapid acting antidepressants on decision-making biases in rodents 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.