• About
  • Keywords

Toxoplasma gondii & Human Phenotype

Compendium of Known Effects and Ongoing Research

induced neuronal cells

Infection and characterization of Toxoplasma gondii in human induced neurons from patients with brain disorders and healthy controls

October 3, 2016
Passeri E, Jones-Brando, L Bordon, C Sengupta, S Wilson, AM Primerano, A Rapoport, JL Ishizuka, K Kano, S Yolken, RH Sawa, A
Microbes and Infection 2016; 18: 153-158
Click for abstract
Toxoplasma gondii is a protozoan parasite capable of establishing persistent infection within the brain. Serological studies in humans have linked exposure to Toxoplasma to neuropsychiatric disorders. However, serological studies have not elucidated the related molecular mechanisms within neuronal cells. To address this question, we used human induced neuronal cells derived from peripheral fibroblasts of healthy individuals and patients with genetically-defined brain disorders (i.e. childhood-onset schizophrenia with disease-associated copy number variations). Parasite infection was characterized by differential detection of tachyzoites and tissue cysts in induced neuronal cells. This approach may aid study of molecular mechanisms underlying individual predisposition to Toxoplasma infection linked to neuropathology of brain disorders

Tagged: antibodies, bipolar disorder, brain, cells, conversion, cysts, diseases, disorders, fibroblasts, functional-neurons, induced neuronal cells, risk, Schizophrenia, tachyzoites, Toxoplasma gondii

Physical health

Use of human induced pluripotent stem cell-derived neurons as a model for cerebral toxoplasmosis

May 24, 2016
Tanaka, N., Ashour, D., Dratz, E., Halonen, S.
Microbes Infect. 2016; 18: 10.1016/j.micinf.2016.03.012
Click for abstract
Toxoplasma gondii is a ubiquitous protozoan parasite with approximately one-third of the worlds' population chronically infected. In chronically infected individuals, the parasite resides primarily in cysts within neurons in the central nervous system. The chronic infection in immunocompetent individuals has been considered to be asymptomatic but increasing evidence indicates the chronic infection can lead to neuropsychiatric disorders such as Schizophrenia, prenatal depression and suicidal thoughts. A better understanding of the mechanism(s) by which the parasite exerts effects on human behavior is limited due to lack of suitable human neuronal models. In this paper, we report the use of human neurons derived from normal cord blood CD34+ cells generated via genetic reprogramming, as an in vitro model for the study T. gondii in neurons. This culture method resulted in a relatively pure monolayer of induced human neuronal-like cells that stained positive for neuronal markers, MAP2, NFL, NFH and NeuN. These induced human neuronal-like cells (iHNs) were efficiently infected by the Prugniad strain of the parasite and supported replication of the tachyzoite stage and development of the cyst stage. Infected iHNs could be maintained through 5 days of infection, allowing for formation of large cysts. This induced human neuronal model represents a novel culture method to study both tachyzoite and bradyzoite stages of T. gondii in human neurons.

Tagged: cysts, induced neuronal cells, latent toxoplasmosis

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

Archives

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

Recent Comments

    Meta

    • Log in
    • Entries feed
    • Comments feed
    • WordPress.org

    Copyright © 2023 Toxoplasma gondii & Human Phenotype.

    ToxoBehavior WordPress Theme by Jelena Braum