Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development

Neural stem cells (NSCs) hold a very significant promise as candidates for cell therapy due to their robust neuroprotective and regenerative properties. Preclinical studies using NSCs have shown enough encouraging results to perform deeper investigations into more potential clinical applications. Ne...

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Main Authors: Klaudia Radoszkiewicz, Aleksandra Bzinkowska, Magdalena Chodkowska, Paulina Rybkowska, Monika Sypecka, Ilona Zembrzuska-Kaska, Anna Sarnowska
Format: Article
Language:English
Published: Frontiers Media S.A. 2024-01-01
Series:Frontiers in Neuroscience
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fnins.2023.1332751/full
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author Klaudia Radoszkiewicz
Aleksandra Bzinkowska
Magdalena Chodkowska
Paulina Rybkowska
Monika Sypecka
Ilona Zembrzuska-Kaska
Anna Sarnowska
author_facet Klaudia Radoszkiewicz
Aleksandra Bzinkowska
Magdalena Chodkowska
Paulina Rybkowska
Monika Sypecka
Ilona Zembrzuska-Kaska
Anna Sarnowska
author_sort Klaudia Radoszkiewicz
collection DOAJ
description Neural stem cells (NSCs) hold a very significant promise as candidates for cell therapy due to their robust neuroprotective and regenerative properties. Preclinical studies using NSCs have shown enough encouraging results to perform deeper investigations into more potential clinical applications. Nevertheless, our knowledge regarding neurogenesis and its underlying mechanisms remains incomplete. To understand them better, it seems necessary to characterize all components of neural stem cell niche and discover their role in physiology and pathology. Using NSCs in vivo brings challenges including limited cell survival and still inadequate integration within host tissue. Identifying overlooked factors that might influence these outcomes becomes pivotal. In this review, we take a deeper examination of the influence of a fundamental element that is present in the brain, the cerebrospinal fluid (CSF), which still remains relatively unexplored. Its role in neurogenesis could be instrumental to help find novel therapeutic solutions for neurological disorders, eventually advancing our knowledge on central nervous system (CNS) regeneration and repair.
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spelling doaj.art-fb4e22f4fe9542b7aa86a63725807f902024-01-12T04:17:31ZengFrontiers Media S.A.Frontiers in Neuroscience1662-453X2024-01-011710.3389/fnins.2023.13327511332751Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy developmentKlaudia RadoszkiewiczAleksandra BzinkowskaMagdalena ChodkowskaPaulina RybkowskaMonika SypeckaIlona Zembrzuska-KaskaAnna SarnowskaNeural stem cells (NSCs) hold a very significant promise as candidates for cell therapy due to their robust neuroprotective and regenerative properties. Preclinical studies using NSCs have shown enough encouraging results to perform deeper investigations into more potential clinical applications. Nevertheless, our knowledge regarding neurogenesis and its underlying mechanisms remains incomplete. To understand them better, it seems necessary to characterize all components of neural stem cell niche and discover their role in physiology and pathology. Using NSCs in vivo brings challenges including limited cell survival and still inadequate integration within host tissue. Identifying overlooked factors that might influence these outcomes becomes pivotal. In this review, we take a deeper examination of the influence of a fundamental element that is present in the brain, the cerebrospinal fluid (CSF), which still remains relatively unexplored. Its role in neurogenesis could be instrumental to help find novel therapeutic solutions for neurological disorders, eventually advancing our knowledge on central nervous system (CNS) regeneration and repair.https://www.frontiersin.org/articles/10.3389/fnins.2023.1332751/fullcerebrospinal fluidartificial cerebrospinal fluidembryonic cerebrospinal fluidadult cerebrospinal fluidneural stem cellcell therapy
spellingShingle Klaudia Radoszkiewicz
Aleksandra Bzinkowska
Magdalena Chodkowska
Paulina Rybkowska
Monika Sypecka
Ilona Zembrzuska-Kaska
Anna Sarnowska
Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
Frontiers in Neuroscience
cerebrospinal fluid
artificial cerebrospinal fluid
embryonic cerebrospinal fluid
adult cerebrospinal fluid
neural stem cell
cell therapy
title Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
title_full Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
title_fullStr Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
title_full_unstemmed Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
title_short Deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
title_sort deciphering the impact of cerebrospinal fluid on stem cell fate as a new mechanism to enhance clinical therapy development
topic cerebrospinal fluid
artificial cerebrospinal fluid
embryonic cerebrospinal fluid
adult cerebrospinal fluid
neural stem cell
cell therapy
url https://www.frontiersin.org/articles/10.3389/fnins.2023.1332751/full
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