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Nitrous Oxide Alters Functional Connectivity in Medial Limbic Structures in Treatment-Resistant Major Depression.

Charles R Conway, Ben Julian A Palanca, Thomas Zeffiro, Britt M Gott, Frank Brown, Victoria C De Leon, Linda Barnes, Thomas Nguyen, Willa Xiong, Christina N Lessov-Schlaggar, Gemma D Espejo, Steven Mennerick, Charles F Zorumski, Peter Nagele

medRxiv : the preprint server for health sciences August 17, 2024 preprint DOI: 10.1101/2024.08.12.24311729 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Randomized crossover trial
Sample size 30
Population Patients with treatment-resistant major depression (TRD) and non-depressed healthy controls
Intervention Nitrous oxide
Dose 50% N2O/oxygen
Duration One-hour inhalation, with assessments at 2 hours and 24 hours post-inhalation
Measures resting-state fMRI functional connectivity, depression, dissociation, and psychosis assessments
Topics Depression
Registration NCT02994433
Key findings Nitrous oxide reduces functional connectivity in mood-associated brain networks in treatment-resistant depression but increases connectivity in healthy controls.

Abstract

While nitrous oxide (N2O) has demonstrated antidepressant properties in treatment-resistant major depression (TRD), little is known about neural mechanisms mediating these effects. Employing serial resting-state functional magnetic resonance imaging (rs-fMRI), we compared spatiotemporal effects of inhaled N2O on brain functional connectivity in TRD patients (n=14) and non-depressed healthy controls (n=16, CNTL). Participants received sequential, one-hour inhalations of either 50% N2O/oxygen or air/oxygen (placebo), with sessions separated by at least one month in random cross-over order. BOLD-contrast rs-fMRI scans were acquired at three time points: pre-inhalation, 2 hours post-inhalation, and 24 hours post-inhalation. For the rs-fMRI functional connectivity analyses, five a priori seeds in medial limbic structures targeted cortical networks implicated in major depression - the salience, anterior and posterior default mode, reward, and cingulo-opercular networks - and a nexus in the dorsal paracingulate region previously identified in MDD ("dorsal nexus"). Depression, dissociation, and psychosis assessments were made before and after inhalations. In TRD patients, functional connectivity was reduced in all seeded networks and the voxel-wise global analysis after N2O exposure. N2O progressively decreased connectivity in patients with TRD but increased connectivity in healthy controls. In TRD patients, each seeded network demonstrated post-inhalation functional connectivity reductions in the dorsal paracingulate gyrus ("dorsal nexus"). This study further elucidates neural mechanisms underlying the antidepressant properties of N2O, supporting the notion that N2O specifically alters mood-associated brain regions in the depressed brain state by reducing functional connectivity within these brain networks. The trial was registered at ClinicalTrials.gov (NCT02994433).