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Toxoplasma gondii & Human Phenotype

Compendium of Known Effects and Ongoing Research

immune system

Neurophysiological changes induced by chronic Toxoplasma gondii infection

December 8, 2017
Tedford, E., McConkey, G.
Pathogens 2017; 6: Artn 19 10.3390/Pathogens6020019
Click for abstract
Although the parasite Toxoplasma gondii is one of the most pervasive neurotropic pathogens in the world, the host-parasite interactions during CNS infection and the consequences of neurological infection are just beginning to be unraveled. The chronic stages of infection have been considered dormant, although several studies have found correlations of infection with an array of host behavioral changes. These may facilitate parasite transmission and impact neurological diseases. During infection, in addition to the presence of the parasites within neurons, host-mediated neuroimmune and hormonal responses to infection are also present. T. gondii induces numerous changes to host neurons during infection and globally alters host neurological signaling pathways, as discussed in this review. Understanding the neurophysiological changes in the host brain is imperative to understanding the parasitic mechanisms and to delineate the effects of this single-celled parasite on health and its contribution to neurological disease

Tagged: alzheimers-disease, bipolar disorder, central-nervous-system, gene-expression, host-parasite interaction, immune system, infection, Neurophysiology, Toxoplasma gondii

BehaviorMental health

Neurophysiological changes induced by chronic Toxoplasma gondii Infection.

March 13, 2017
Tedford, E., McConkey, G.
Pathogens. 2017; 6: 19-31
Click for abstract
Although the parasite Toxoplasma gondii is one of the most pervasive neurotropic pathogens in the world, the host-parasite interactions during CNS infection and the consequences of neurological infection are just beginning to be unraveled. The chronic stages of infection have been considered dormant, although several studies have found correlations of infection with an array of host behavioral changes. These may facilitate parasite transmission and impact neurological diseases. During infection, in addition to the presence of the parasites within neurons, host-mediated neuroimmune and hormonal responses to infection are also present. T. gondii induces numerous changes to host neurons during infection and globally alters host neurological signaling pathways, as discussed in this review. Understanding the neurophysiological changes in the host brain is imperative to understanding the parasitic mechanisms and to delineate the effects of this single-celled parasite on health and its contribution to neurological disease.

Tagged: alzheimers-disease, bipolar disorder, catecholamine, central-nervous-system, dendritic cells, dependent manner, DNA, Dopamine, gamma-interferon, gene-expression, glutamatergic, host-parasite interaction, immune system, infection, methylation, neuroimmune, Neurophysiology, parasitic, testosterone, Toxoplasma gondii

Mental health

Autoimmune diseases, gastrointestinal disorders and the microbiome in schizophrenia: more than a gut feeling

January 4, 2016
Severance, E. G., Yolken, R. H., Eaton, W. W.
Schizophrenia Research, 2016, 176 :23-35
Click for abstract
Autoimmunity, gastrointestinal (GI) disorders and schizophrenia have been associated with one another for a long time. This paper reviews these connections and provides a context by which multiple risk factors for schizophrenia may be related. Epidemiological studies strongly link schizophrenia with autoimmune disorders including enteropathic celiac disease. Exposure to wheat gluten and bovine milk casein also contribute to non-celiac food sensitivities in susceptible individuals. Co-morbid GI inflammation accompanies humoral immunity to food antigens, occurs early during the course of schizophrenia and appears to be independent from antipsychotic-generated motility effects. This inflammation impacts endothelial barrier permeability and can precipitate translocation of gut bacteria into systemic circulation. Infection by the neurotropic gut pathogen, Toxoplasma gondii, will elicit an inflammatory GI environment. Such processes trigger innate immunity, including activation of complement C1q, which also functions at synapses in the brain. The emerging field of microbiome research lies at the center of these interactions with evidence that the abundance and diversity of resident gut microbiota contribute to digestion, inflammation, gut permeability and behavior. Dietary modifications of core bacterial compositions may explain inefficient gluten digestion and how immigrant status in certain situations is a risk factor for schizophrenia. Gut microbiome research in schizophrenia is in its infancy, but data in related fields suggest disease-associated altered phylogenetic compositions. In summary, this review surveys associative and experimental data linking autoimmunity, GI activity and schizophrenia, and proposes that understanding of disrupted biological pathways outside of the brain can lend valuable information regarding pathogeneses of complex, polygenic brain disorders. (C) 2014 Elsevier B.V. All rights reserved.

Tagged: autism spectrum disorders, autoimmunity, central-nervous-system, danish national registers, dtnbp1 dysbindin gene, gluten-free diet, human endogenous retrovirus, immune system, innate immune-response, intestinal, irritable-bowel-syndrome, microbiota, psychiatry, psychosis, recent-onset psychosis, toll-like receptor-4

Physical health

Toxoplasma gondii and cognitive deficits in schizophrenia: An animal model perspective

October 12, 2012
Kannan, G., Pletnikov, M.V.
Schizophrenia Bulletin 2012; 38: 1155-1161
Click for abstract
Cognitive deficits are a core feature of schizophrenia. Epidemiological evidence indicates that microbial pathogens may contribute to cognitive impairment in patients with schizophrenia. Exposure to Toxoplasma gondii (T. gondii) has been associated with cognitive deficits in humans. However, the mechanisms whereby the parasite impacts cognition remain poorly understood. Animal models of T. gondii infection may aid in elucidating the underpinnings of cognitive dysfunction. Here, we (1) overview the literature on the association of T. gondii infection and cognitive impairment, (2) critically analyze current rodent models of cognitive deficits resulting from T. gondii infection, and (3) explore possible mechanisms whereby the parasite may affect cognitive function.

Tagged: congenital toxoplasmosis, cytomegalovirus-infection, gene-environment interactions, herpes-simplex, immune system, infection, kynurenic acid, kynurenine, laboratory rats, latent toxoplasmosis, learning and memory, mice behavior, novelty discrimination, tissue cysts, Toxoplasma

Cognitive functionsMental health

Association between intracellular infectious agents

October 19, 2010
Krause, D., Matz, J., Weidinger, E., Wagner, J., Wildenauer, A., Obermeier, M., Riedel, M., Muller, N.
European Archives of Psychiatry and Clinical Neuroscience 2010; 260: 359-363
Click for abstract
The underlying pathophysiological mechanisms in Tourette's syndrome (TS) are still unclear. Increasing evidence supports the involvement of infections, possibly on the basis of an altered immune status. Not only streptococci but also other infectious agents may be involved. This study investigates the association between the neurotrophic agents Chlamydia, Toxoplasma and TS. 32 patients with TS and 30 healthy matched controls were included. For each individual, IgA/IgG antibody titers against Chlamydia trachomatis/pneumoniae and Toxoplasma gondii were evaluated and analyzed with Fisher's exact test. We found a significantly higher rate of TS patients with elevated antibody titers against Chlamydia trachomatis (P = 0.017) as compared to controls. A trend toward a higher prevalence in the Tourette's group was shown for Toxoplasma (P = 0.069). In conclusion, within the TS patients a higher rate of antibody titers could be demonstrated, pointing to a possible role of Chlamydia and Toxoplasma in the pathogenesis of tic disorders. Because none of these agents has been linked with TS to date, a hypothesis is that infections could contribute to TS by triggering an immune response. It still remains unclear whether tic symptoms are partly due to the infection or to changes in the immune balance caused by an infection.

Tagged: chlamydia trachomatis, disease, immune system, infections, mycoplasma-pneumoniae infection, obsessive-compulsive disorder, pandas, plasma kynurenine, Schizophrenia, tic disorder, tourette's syndrome, Toxoplasma gondii, tryptophan, united-states

Mental health

The association of infectious agents and schizophrenia

October 19, 2010
Krause, D., Matz, J., Weidinger, E., Wagner, J., Wildenauer, A., Obermeier, M., Riedel, M., Muller, N.
World Journal of Biological Psychiatry 2010; 11: 739-743
Click for abstract
Objectives. The influence of infectious agents on the pathogenesis of psychiatric disorders has been discussed for decades. Pre- and postnatal infections are risk factors for schizophrenia. This may be explained by chronic infections or an altered immune status. However most of the studies have only focused on one single pathogen and not on the impact of different infectious agents. We investigated the association between schizophrenia and various neurotophic infectious agents. Methods. A total of 31 schizophrenic patients and 30 healthy matched individuals were included. Antibody titres of cytomegalovirus, herpes simplex virus, Epstein-Barr virus, mycoplasma, chlamydia and toxoplasma were evaluated. For statistical analysis we used Fisher's exact and Wilcoxon test. Results. Significantly elevated positive antibody titres within schizophrenic patients were found only for Chlamydia trachomatis (P=0.005) and a trend to significance for herpes simplex virus (P=0.055). Combining the different agents, schizophrenics had a significantly higher rate of positive titres to infectious agents as compared to controls (P=0.04). Conclusions. The higher prevalence of antibodies within schizophrenic patients emphasizes a possible role of infectious agents in the pathogenesis of schizophrenia. Our data indicates that not one specific agent might be responsible for schizophrenic symptoms but the resulting immune response in the central nervous system.

Tagged: antibodies, childhood, chlamydia, etiology, herpes-simplex, immune system, individuals, infection, influenza, maternal exposure, psychosis, risk, Schizophrenia, virus

Mental 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

  • Mortality Patterns of Toxoplasmosis and Its Comorbidities in Tanzania: A 10-Year Retrospective Hospital-Based Survey February 6, 2020
  • The role of latent toxoplasmosis in the aetiopathogenesis of schizophrenia–the risk factor or an indication of a contact with cat? February 6, 2020
  • The Association between Toxoplasma gondii Infection and Risk of Parkinson’s Disease: A Systematic Review and Meta-Analysis February 6, 2020

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