Potential Neuroprotective Effects of Natural Anti-NMDAR1 Autoantibodies Against Psychiatric Symptoms Associated with Traumatic Brain Injuries
Vaughn, M.; Acheson, D.; Powell, S.; Yurgil, K.; Nievergelt, C.; Baker, D.; Risbrough, V.; Zhou, X.
Show abstract
ImportanceTraumatic brain injury (TBI) increases the risk of developing psychiatric symptoms such as post-traumatic stress disorder (PTSD), depression and anxiety, however biological risk and resiliency factors that explain the significant heterogeneity in outcomes are limited. Although 5-10% of the population carries natural autoantibodies to the NMDA receptor (anti-NMDAR1) it is unknown if carrying anti-NMDAR1 autoantibodies modifies risk for psychiatric outcomes after TBI. ObjectiveSince TBI facilitates infiltration of circulating natural anti-NMDAR1 autoantibodies into the brain, we tested the hypothesis that natural anti-NMDAR1 autoantibody levels in plasma may modify risk for development of psychiatric symptoms after TBI. Design, Settings and ParticipantsData were analyzed from 1025 Marine Resiliency Study-II participants, a longitudinal study that included plasma collection and assessments for TBI, PTSD (Clinician Administered PTSD Scale-IV), depression (Beck Depression Inventory-2) and anxiety symptoms (Beck Anxiety Inventory) before and after a combat deployment to Afghanistan (2010-2013). Plasma anti-NMDAR1 autoantibody levels were quantified using a luciferase-based immunnoassay. Outcomes were post-deployment symptoms and the predictor was a continuous or dichotomous measure of anti-NMDAR1 autoantibody level. Covariates included pre-deployment symptoms, deployment history and experiences. ResultsTBI (606 with TBI, 419 without TBI) was associated with significantly greater depression, PTSD and anxiety symptoms post-deployment. In individuals with no TBI history, anti-NMDAR1 autoantibody levels were not associated with symptoms. In individuals that endorsed a TBI however, higher pre-deployment plasma levels of natural anti-NMDAR1 autoantibodies were significantly associated with lower predicted post-deployment depression and PTSD symptoms, but not anxiety. In the TBI group, high autoantibody group membership lowered predicted post-deployment CAPS-IV and BDI-2 scores by 22 and 25% respectively (Cohens d=0.25-0.32). After deployment, prevalence of moderate-severe depression was significantly lower in participants with high anti-NMDAR1 autoantibodies (.8% [2/256 participants]) compared with participants with low anti-NMDAR1 autoantibodies (3.5% [27/763 participants]), as was prevalence of taking psychotropic medications. Conclusions and RelevanceNatural anti-NMDAR1 autoantibodies may be a "resilience" factor for TBI-associated increases in depression and PTSD symptoms, supporting the hypothesis that natural anti-NMDAR1 autoantibodies could have neuroprotective effects. Mechanistic studies are warranted to understand if plasma natural anti-NMDAR1 autoantibodies reach the CNS to suppress glutamate excitotoxicity associated with TBI.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Potential Neurocognitive Biomarkers for Post Traumatic Stress Disorder (PTSD) Severity in Recent Trauma Survivors 93%
- Transcriptional changes across tissue and time provide molecular insights into a therapeutic window of opportunity following traumatic stress exposure 93%
- Neurostructural associations with traumatic experiences during child- and adulthood 93%
Similar papers in this journal
- Altered gene expression and PTSD symptom dimensions in World Trade Center responders 96%
- Towards Scalable Biomarker Discovery in Posttraumatic Stress Disorder: Triangulating Genomic and Phenotypic Evidence from a Health System Biobank 92%
- The functional role of locus coeruleus microglia in the female stress response 91%
Similar papers in this journal
- The association between blast exposure and transdiagnostic health symptoms on systemic inflammation 95%
- Pretrauma cognitive traits predict trauma-induced fear generalization and associated prefrontal functioning in a longitudinal model of posttraumatic stress disorder 93%
- Dissecting the association of C-reactive protein levels with PTSD, traumatic events, and social support 92%
Similar papers in this journal
- Inflammation is a stronger predictor of psychological trauma exposure than behavior in repeated social defeat 93%
- Purinergic P2X7 Receptor-mediated inflammation precedes PTSD-related Behaviors in Rats 92%
- Evidence of microglial involvement in the childhood abuse-associated increase in perineuronal nets in the ventromedial prefrontal cortex 91%
Similar papers in this journal
- Severe childhood and adulthood stress associates with neocortical layer-specific reductions of mature spines in psychiatric disorders 92%
- Higher polygenic scores for empathy increase posttraumatic stress severity in response to certain traumatic events 91%
- The role of hippocampal CaMKII in resilience to trauma-related psychopathology 91%
"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.