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Toxoplasma gondii & Human Phenotype

Compendium of Known Effects and Ongoing Research

glutamate-receptor

From toxoplasmosis to schizophrenia via nMda dysfunction: peptide overlap between Toxoplasma gondii and N-Methyl-D-aspartate receptors as a potential Mechanistic Link.

October 2, 2017
Lucchese, G.
Frontiers in Psychiatry 2017; 8
Click for abstract
The present work aims at investigating how Toxoplasma gondii (T. gondii) infection may be linked to N-methyl-D-aspartate receptor (NMDAR) dysfunction in schizophrenia and related disorders and puts forward the hypothesis that immune responses against T. gondii may involve NMDARs. Indeed, the analysis of the protozoan proteome and NMDAR subunits for peptide commonalities shows a massive peptide overlap and supports the possibility that anti-T. gondii immune responses raised during active protozoan infection may cross-react with host NMDARs, determining disruption of neural circuits and cognitive deficits. In particular, the NMDA 2D subunit, which is mainly expressed in parvalbumin-positive interneurons, appears to be a hotspot for potential T. gondii-induced cross-reactive immune attacks.

Tagged: bipolar disorder, brain activity rat-brain antibodies, gamma oscillations, glun2d subunit, glutamate-receptor, hippocampal interneurons, immune crossreactivity, ketamine, n-methyl-d-aspartate receptors, neural oscillations, nmda 2d, parvalbumin-positive interneurons, peptide commonality, Schizophrenia, Toxoplasma gondii

Mental health

Pathogen-mediated NMDA receptor autoimmunity and cellular barrier dysfunction in schizophrenia

May 9, 2017
Kannan, G., Gressitt, K.L., Yang, S., Stallings, C.R., Katsafanas, E., Schweinfurth, L.A., Savage, C.L.G., Adamos, M.B., Sweeney, K.M., Origoni, A.E., Khushalani, S., Bahn, S., Leweke, F.M., Dickerson, F.B., Yolken, R.H., Pletnikov, M.V., Severance, E.G.
Translational Psychiatry 2017; 7: 10.1038/tp.2017.162
Click for abstract
Autoantibodies that bind the N-methyl-D-aspartate receptor (NMDAR) may underlie glutamate receptor hypofunction and related cognitive impairment found in schizophrenia. Exposure to neurotropic pathogens can foster an autoimmune-prone environment and drive systemic inflammation leading to endothelial barrier defects. In mouse model cohorts, we demonstrate that infection with the protozoan parasite, Toxoplasma gondii, caused sustained elevations of IgG class antibodies to the NMDAR in conjunction with compromised blood-gut and blood-brain barriers. In human cohorts, NMDAR IgG and markers of barrier permeability were significantly associated with T. gondii exposure in schizophrenia compared with controls and independently of antipsychotic medication. Combined T. gondii and NMDAR antibody seropositivity in schizophrenia resulted in higher degrees of cognitive impairment as measured by tests of delayed memory. These data underscore the necessity of disentangling the heterogeneous pathophysiology of schizophrenia so that relevant subsets eligible for NMDAR-related treatment can be identified. Our data aid to reconcile conflicting reports regarding a role of pathological NMDAR autoantibodies in this disorder.

Tagged: bipolar disorder, celiac-disease, glutamate-receptor, human-behavior, immune activation, increased prevalence, latent toxoplasmosis, lupus autoantibodies, S100B protein, Toxoplasma gondii

BehaviorMental health

Topics

  • Behavior 105
  • Cognitive functions 64
  • Mental health 439
  • Morphology 6
  • Motor functions 10
  • Personality 36
  • Physical health 134
  • Reproduction 36
  • Reviews 40
  • Sensory functions 3
  • Uncategorized 2

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Recent articles

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