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Toxoplasma gondii & Human Phenotype

Compendium of Known Effects and Ongoing Research

DNA

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

Herpesviruses and Toxoplasma gondii in orbital frontal cortex of psychiatric patients

October 30, 2003
Conejero-Goldberg, C., Torrey, E.F., Yolken, R.H.
Schizophrenia Research 2003; 60: 65-69.
Click for abstract
Herpes simplex virus (HSV), Epstein-Barr virus (EMV), cytomegalovirus (CW), and human herpesvirus-6 (HHV-6) are viruses capable of establishing latency. All of these infect the CNS and have been detected in human postmortem brains. Toxoplasma gondii is a protozoan organism which can reactivate in the brains of previously infected immunocompromised individuals. To screen for the presence of herpesviruses and T gondii in postmortem orbital frontal brain samples from patients with schizophrenia, affective disorders, and controls, we used nested-polymerase chain reaction (n-PCR)/sequencing. We identified HGV-6B sequences in 2/51 postmortem brain samples but no sequences from other herpesviruses, We did not detect sequences of T gondii in the postmortem brains. Additional studies including ones directed at the sensitive detection of viral nucleic acids in multiple brain regions should be directed at confirming or excluding a role for viruses and protozoa in the etiology of these disorders, (C) 2002 Elsevier Science B.V. All rights reserved.

Tagged: bipolar disorder, cerebrospinal fluid, cytomegalo-virus, DNA, first-episode schizophrenia, herpes-simplex-virus, herpesvirus, nucleic-acid sequences, orbital frontal cortex, pcr, polymerase chain-reaction, postmortem, Schizophrenia, sclerosis brain-tissue, search, Toxoplasma gondii

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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