Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders

Building and functioning of the human brain requires the precise orchestration and execution of myriad molecular and cellular processes, across a multitude of cell types and over an extended period of time. Dysregulation of these processes affects structure and function of the brain and can lead to...

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Published in:Cells
Main Authors: Matteo Baggiani, Maria Teresa Dell’Anno, Mauro Pistello, Luciano Conti, Marco Onorati
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Subjects:
Online Access:https://www.mdpi.com/2073-4409/9/8/1893
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author Matteo Baggiani
Maria Teresa Dell’Anno
Mauro Pistello
Luciano Conti
Marco Onorati
author_facet Matteo Baggiani
Maria Teresa Dell’Anno
Mauro Pistello
Luciano Conti
Marco Onorati
author_sort Matteo Baggiani
collection DOAJ
container_title Cells
description Building and functioning of the human brain requires the precise orchestration and execution of myriad molecular and cellular processes, across a multitude of cell types and over an extended period of time. Dysregulation of these processes affects structure and function of the brain and can lead to neurodevelopmental, neurological, or psychiatric disorders. Multiple environmental stimuli affect neural stem cells (NSCs) at several levels, thus impairing the normal human neurodevelopmental program. In this review article, we will delineate the main mechanisms of infection adopted by several neurotropic pathogens, and the selective NSC vulnerability. In particular, TORCH agents, i.e., <i>Toxoplasma gondii</i>, others (including Zika virus and Coxsackie virus), Rubella virus, Cytomegalovirus, and Herpes simplex virus, will be considered for their devastating effects on NSC self-renewal with the consequent neural progenitor depletion, the cellular substrate of microcephaly. Moreover, new evidence suggests that some of these agents may also affect the NSC progeny, producing long-term effects in the neuronal lineage. This is evident in the paradigmatic example of the neurodegeneration occurring in Alzheimer’s disease.
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spelling doaj-art-2aecd4a9fcee4c3b91cff7a4b8e30a9e2025-08-19T22:50:34ZengMDPI AGCells2073-44092020-08-0198189310.3390/cells9081893Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative DisordersMatteo Baggiani0Maria Teresa Dell’Anno1Mauro Pistello2Luciano Conti3Marco Onorati4Unit of Cell and Developmental Biology, Department of Biology, University of Pisa, 56126 Pisa, ItalyCellular Engineering Laboratory, Fondazione Pisana per la Scienza ONLUS, 56017 Pisa, ItalyRetrovirus Center and Virology Section, Department of Translational Research, University of Pisa and Virology Division, Pisa University Hospital, 56100 Pisa, ItalyDepartment of Cellular, Computational and Integrative Biology—CIBIO, University of Trento, 38122 Trento, ItalyUnit of Cell and Developmental Biology, Department of Biology, University of Pisa, 56126 Pisa, ItalyBuilding and functioning of the human brain requires the precise orchestration and execution of myriad molecular and cellular processes, across a multitude of cell types and over an extended period of time. Dysregulation of these processes affects structure and function of the brain and can lead to neurodevelopmental, neurological, or psychiatric disorders. Multiple environmental stimuli affect neural stem cells (NSCs) at several levels, thus impairing the normal human neurodevelopmental program. In this review article, we will delineate the main mechanisms of infection adopted by several neurotropic pathogens, and the selective NSC vulnerability. In particular, TORCH agents, i.e., <i>Toxoplasma gondii</i>, others (including Zika virus and Coxsackie virus), Rubella virus, Cytomegalovirus, and Herpes simplex virus, will be considered for their devastating effects on NSC self-renewal with the consequent neural progenitor depletion, the cellular substrate of microcephaly. Moreover, new evidence suggests that some of these agents may also affect the NSC progeny, producing long-term effects in the neuronal lineage. This is evident in the paradigmatic example of the neurodegeneration occurring in Alzheimer’s disease.https://www.mdpi.com/2073-4409/9/8/1893human neural stem cellsTORCH syndromemicrocephalyneurodevelopmentneurodegenerationAlzheimer’s disease
spellingShingle Matteo Baggiani
Maria Teresa Dell’Anno
Mauro Pistello
Luciano Conti
Marco Onorati
Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
human neural stem cells
TORCH syndrome
microcephaly
neurodevelopment
neurodegeneration
Alzheimer’s disease
title Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
title_full Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
title_fullStr Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
title_full_unstemmed Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
title_short Human Neural Stem Cell Systems to Explore Pathogen-Related Neurodevelopmental and Neurodegenerative Disorders
title_sort human neural stem cell systems to explore pathogen related neurodevelopmental and neurodegenerative disorders
topic human neural stem cells
TORCH syndrome
microcephaly
neurodevelopment
neurodegeneration
Alzheimer’s disease
url https://www.mdpi.com/2073-4409/9/8/1893
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