BEHAVIORAL AND MOLECULAR CONSEQUENCES OF MICROGLIAL Csf3r GENE DELETION

dc.contributor.authorOlidis, Nicholasen_US
dc.date.accessioned2026-07-15T08:36:35Z
dc.date.issued2026en_US
dc.description.abstractAmong substance use disorders (SUD), cocaine use disorder (CUD) remains one of the most prevalent in the United States, yet no FDA-approved pharmacotherapy exists. This gap is driven in part by incomplete understanding of the disease's pathophysiology. Recent studies have highlighted neuroimmune signaling as a key factor in cocaine motivation, with granulocyte colony-stimulating factor (G-CSF) shown to be sufficient to drive cocaine-seeking behavior. Given the positive correlation between G-CSF levels and drug intake, further investigation into cell-type specificity was warranted. This work characterized a genetic mouse line using Cre recombinase inducible by an estrogen receptor (CreERT2) to achieve microglial-specific Csf3r knockout. The aims were to establish baseline behavioral and molecular consequences of this knockout to clarify the role of microglial G-CSF signaling in cocaine motivation. Behavioral assessments included locomotor activity, behavioral flexibility, conditioned place preference, and anxiety-like behavior. Molecular analyses examined transcription factors, cytokine production, neuroinflammatory markers, and microglial density. We found that microglial Csf3r knockout does not alter learning capacity, baseline locomotor activity, anxiety-like behavior, or conditioned place preference. Molecularly, Csf3r knockout did not affect microglial density, pro-inflammatory cytokine levels, peripheral serum G-CSF, or cocaine-induced Fosb transcription. These findings suggest that microglial Csf3r signaling alone is not sufficient to modulate cocaine motivation.en_US
dc.identifier.urihttps://wakespace.lib.wfu.edu/handle/10339/112507
dc.language.isoenen_US
dc.publisherWake Forest Universityen_US
dc.subjecten_US
dc.titleBEHAVIORAL AND MOLECULAR CONSEQUENCES OF MICROGLIAL Csf3r GENE DELETIONen_US
dc.typeThesisen_US
thesis.contributor.advisorKiraly, Drewen_US
thesis.contributor.committeeMemberCentanni, Samuelen_US
thesis.degree.disciplineNeuroscienceen_US
thesis.embargo.liftdate2031-05-16
thesis.embargo.terms2031-05-16en_US

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