Transcriptional signatures of fentanyl use in the mouse ventral tegmental area

Author:

Fox Megan E.12ORCID,Montemarano Annalisa1,Ostman Alexandria E.1,Basu Mahashweta3,Herb Brian3,Ament Seth A.3,Fox Logan D.1

Affiliation:

1. Department of Anesthesiology and Perioperative Medicine The Pennsylvania State University College of Medicine Hershey Pennsylvania USA

2. Department of Pharmacology The Pennsylvania State University College of Medicine Hershey Pennsylvania USA

3. Institute for Genome Sciences University of Maryland School of Medicine Baltimore Maryland USA

Abstract

AbstractSynthetic opioids such as fentanyl contribute to the vast majority of opioid‐related overdose deaths, but fentanyl use remains broadly understudied. Like other substances with misuse potential, opioids cause lasting molecular adaptations to brain reward circuits, including neurons in the ventral tegmental area (VTA). The VTA contains numerous cell types that play diverse roles in opioid use and relapse; however, it is unknown how fentanyl experience alters the transcriptional landscape in specific subtypes. Here, we performed single nuclei RNA sequencing to study transcriptional programs in fentanyl‐experienced mice. Male and female C57/BL6 mice self‐administered intravenous fentanyl (1.5 μg/kg/infusion) or saline for 10 days. After 24 h abstinence, VTA nuclei were isolated and prepared for sequencing on the 10× platform. We identified different patterns of gene expression across cell types. In dopamine neurons, we found enrichment of genes involved in growth hormone signalling. In dopamine‐glutamate‐GABA combinatorial neurons, and some GABA neurons, we found enrichment of genes involved in Pi3k‐Akt signalling. In glutamate neurons, we found enrichment of genes involved in cholinergic signalling. We identified transcriptional regulators for the differentially expressed genes in each neuron cluster, including downregulated transcriptional repressor Bcl6, and upregulated transcription factor Tcf4. We also compared the fentanyl‐induced gene expression changes identified in mouse VTA with a published rat dataset in bulk VTA, and found overlap in genes related to GABAergic signalling and extracellular matrix interaction. Together, we provide a comprehensive picture of how fentanyl self‐administration alters the transcriptional landscape of the mouse VTA that serves as the foundation for future mechanistic studies.

Funder

National Institute on Drug Abuse

Publisher

Wiley

Reference50 articles.

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3. Opioid-Induced Molecular and Cellular Plasticity of Ventral Tegmental Area Dopamine Neurons

4. Neuroanatomical sites mediating the motivational effects of opioids as mapped by the conditioned place preference paradigm in rats;Bals‐Kubik R;J Pharmacol Exp Ther,1993

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