Pathophysiological Mechanisms of Cognitive Impairment and Neurodegeneration by Toxoplasma gondii Infection
Патофизиологические механизмы когнитивных нарушений и нейродегенерации при инфекции Toxoplasma gondii
2020-06-12
SCID: 54.1/pdawh5y2
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Alzheimer's diseaseToxoplasma gondiiamyloid-β (Aβ) accumulationcerebral toxoplasmosiscognitive impairment
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Abstract (AI)
is an obligate intracellular parasite considered one of the most successful pathogens in the world, owing to its ability to produce long-lasting infections and to persist in the central nervous system (CNS) in most warm-blooded animals, including humans. This parasite has a preference to invade neurons and affect the functioning of glial cells. This could lead to neurological and behavioral changes associated with cognitive impairment. Although several studies in humans and animal models have reported controversial results about the relationship between toxoplasmosis and the onset of dementia as a causal factor, two recent meta-analyses have shown a relative association with Alzheimer's disease (AD). AD is characterized by amyloid-β (Aβ) peptide accumulation, neurofibrillary tangles, and neuroinflammation. Different authors have found that toxoplasmosis may affect Aβ production in brain areas linked with memory functioning, and can induce a central immune response and neurotransmitter imbalance, which in turn, affect the nervous system microenvironment. In contrast, other studies have revealed a reduction of Aβ plaques and hyperphosphorylated tau protein formation in animal models, which might cause some protective effects. The aim of this article is to summarize and review the newest data in regard to different pathophysiological mechanisms of cerebral toxoplasmosis and their relationship with the development of AD and cognitive impairment. All these associations should be investigated further through clinical and experimental studies.
Key Findings
1
Cerebral toxoplasmosis can lead to neurological and behavioral changes associated with cognitive impairment.
2
Some animal studies report reduced Aβ plaques and decreased hyperphosphorylated tau formation with toxoplasmosis, suggesting possible protective effects; findings across studies are contradictory and require further research.
3
T. gondii may alter amyloid-β production in memory-related brain regions, induce central immune responses, and cause neurotransmitter imbalances affecting the neural microenvironment.
4
Toxoplasma gondii produces long-lasting CNS infections, preferentially invading neurons and affecting glial cell function.
5
Two recent meta-analyses report a relative association between T. gondii infection and Alzheimer’s disease.
Research Object
Toxoplasma gondii infection in the central nervous system (cerebral toxoplasmosis)
Research Subject
Pathophysiological mechanisms by which Toxoplasma gondii infection affects neural cells and brain microenvironment leading to cognitive impairment, neurodegeneration, and its relationship with Alzheimer's disease–related processes (Aβ accumulation, tau pathology, neuroinflammation, neurotransmitter imbalance)
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2020-06-12
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