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Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments

Severe mental illnesses (SMI) such as schizophrenia and bipolar disorder affect 2-4% of the world population. Current medications and diagnostic methods for mental illnesses are not satisfying. In animal studies, stem cell therapy is promising for some neuropsychiatric disorders and cognitive/social...

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Autores principales: Zhang, Yongbo, Zhao, Yingying, Song, Xiaopeng, Luo, Hua, Sun, Jinmei, Han, Chunyu, Gu, Xiaohuan, Li, Jun, Cai, Guilan, Zhu, Yanbing, Liu, Zhandong, Wei, Ling, Wei, Zheng Zachory
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205035/
https://www.ncbi.nlm.nih.gov/pubmed/32425815
http://dx.doi.org/10.3389/fpsyt.2020.00080
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author Zhang, Yongbo
Zhao, Yingying
Song, Xiaopeng
Luo, Hua
Sun, Jinmei
Han, Chunyu
Gu, Xiaohuan
Li, Jun
Cai, Guilan
Zhu, Yanbing
Liu, Zhandong
Wei, Ling
Wei, Zheng Zachory
author_facet Zhang, Yongbo
Zhao, Yingying
Song, Xiaopeng
Luo, Hua
Sun, Jinmei
Han, Chunyu
Gu, Xiaohuan
Li, Jun
Cai, Guilan
Zhu, Yanbing
Liu, Zhandong
Wei, Ling
Wei, Zheng Zachory
author_sort Zhang, Yongbo
collection PubMed
description Severe mental illnesses (SMI) such as schizophrenia and bipolar disorder affect 2-4% of the world population. Current medications and diagnostic methods for mental illnesses are not satisfying. In animal studies, stem cell therapy is promising for some neuropsychiatric disorders and cognitive/social deficits, not only treating during development (targeting modulation and balancing) but also following neurodegeneration (cell replacement and regenerating support). We believe that novel interventions such as modulation of particular cell populations to develop cell-based treatment can improve cognitive and social functions in SMI. With pathological synaptic/myelin damage, oligodendrocytes seem to play a role. In this review, we have summarized oligodendrogenesis mechanisms and some related calcium signals in neural cells and stem/progenitor cells. The related benefits from endogenous stem/progenitor cells within the brain and exogenous stem cells, including multipotent mesenchymal-derived stromal cells (MSC), fetal neural stem cells (NSC), pluripotent stem cells (PSC), and differentiated progenitors, are discussed. These also include stimulating mechanisms of oligodendrocyte proliferation, maturation, and myelination, responsive to the regenerative effects by both endogenous stem cells and transplanted cells. Among the mechanisms, calcium signaling regulates the neuronal/glial progenitor cell (NPC/GPC)/oligodendrocyte precursor cell (OPC) proliferation, migration, and differentiation, dendrite development, and synaptic plasticity, which are involved in many neuropsychiatric diseases in human. On the basis of numerous protein annotation and protein-protein interaction databases, a total of 119 calcium-dependent/activated proteins that are related to neuropsychiatry in human are summarized in this investigation. One of the advanced methods, the calcium/cation-channel-optogenetics-based stimulation of stem cells and transplanted cells, can take advantage of calcium signaling regulations. Intranasal-to-brain delivery of drugs and stem cells or local delivery with the guidance of brain imaging techniques may provide a unique new approach for treating psychiatric disorders. It is also expected that preconditioning stem cell therapy following precise brain imaging as pathological confirmation has high potential if translated to cell clinic use. Generally, modulable cell transplantation followed by stimulations should provide paracrine protection, synaptic modulation, and myelin repair for the brain in SMI.
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spelling pubmed-72050352020-05-18 Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments Zhang, Yongbo Zhao, Yingying Song, Xiaopeng Luo, Hua Sun, Jinmei Han, Chunyu Gu, Xiaohuan Li, Jun Cai, Guilan Zhu, Yanbing Liu, Zhandong Wei, Ling Wei, Zheng Zachory Front Psychiatry Psychiatry Severe mental illnesses (SMI) such as schizophrenia and bipolar disorder affect 2-4% of the world population. Current medications and diagnostic methods for mental illnesses are not satisfying. In animal studies, stem cell therapy is promising for some neuropsychiatric disorders and cognitive/social deficits, not only treating during development (targeting modulation and balancing) but also following neurodegeneration (cell replacement and regenerating support). We believe that novel interventions such as modulation of particular cell populations to develop cell-based treatment can improve cognitive and social functions in SMI. With pathological synaptic/myelin damage, oligodendrocytes seem to play a role. In this review, we have summarized oligodendrogenesis mechanisms and some related calcium signals in neural cells and stem/progenitor cells. The related benefits from endogenous stem/progenitor cells within the brain and exogenous stem cells, including multipotent mesenchymal-derived stromal cells (MSC), fetal neural stem cells (NSC), pluripotent stem cells (PSC), and differentiated progenitors, are discussed. These also include stimulating mechanisms of oligodendrocyte proliferation, maturation, and myelination, responsive to the regenerative effects by both endogenous stem cells and transplanted cells. Among the mechanisms, calcium signaling regulates the neuronal/glial progenitor cell (NPC/GPC)/oligodendrocyte precursor cell (OPC) proliferation, migration, and differentiation, dendrite development, and synaptic plasticity, which are involved in many neuropsychiatric diseases in human. On the basis of numerous protein annotation and protein-protein interaction databases, a total of 119 calcium-dependent/activated proteins that are related to neuropsychiatry in human are summarized in this investigation. One of the advanced methods, the calcium/cation-channel-optogenetics-based stimulation of stem cells and transplanted cells, can take advantage of calcium signaling regulations. Intranasal-to-brain delivery of drugs and stem cells or local delivery with the guidance of brain imaging techniques may provide a unique new approach for treating psychiatric disorders. It is also expected that preconditioning stem cell therapy following precise brain imaging as pathological confirmation has high potential if translated to cell clinic use. Generally, modulable cell transplantation followed by stimulations should provide paracrine protection, synaptic modulation, and myelin repair for the brain in SMI. Frontiers Media S.A. 2020-04-30 /pmc/articles/PMC7205035/ /pubmed/32425815 http://dx.doi.org/10.3389/fpsyt.2020.00080 Text en Copyright © 2020 Zhang, Zhao, Song, Luo, Sun, Han, Gu, Li, Cai, Zhu, Liu, Wei and Wei http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Psychiatry
Zhang, Yongbo
Zhao, Yingying
Song, Xiaopeng
Luo, Hua
Sun, Jinmei
Han, Chunyu
Gu, Xiaohuan
Li, Jun
Cai, Guilan
Zhu, Yanbing
Liu, Zhandong
Wei, Ling
Wei, Zheng Zachory
Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title_full Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title_fullStr Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title_full_unstemmed Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title_short Modulation of Stem Cells as Therapeutics for Severe Mental Disorders and Cognitive Impairments
title_sort modulation of stem cells as therapeutics for severe mental disorders and cognitive impairments
topic Psychiatry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7205035/
https://www.ncbi.nlm.nih.gov/pubmed/32425815
http://dx.doi.org/10.3389/fpsyt.2020.00080
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