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Article

Understanding Intra- and Inter-Species Variability in Neural Stem Cells’ Biology Is Key to Their Successful Cryopreservation, Culture, and Propagation

by
Klaudia Radoszkiewicz
1,
Katarzyna Jezierska-Woźniak
2,
Tomasz Waśniewski
3 and
Anna Sarnowska
1,*
1
Translational Platform for Regenerative Medicine, Mossakowski Medical Research Institute, Polish Academy of Sciences, 02-106 Warsaw, Poland
2
Department of Neurosurgery, Laboratory for Regenerative Medicine, Stem Cells Bank, University of Warmia and Mazury in Olsztyn, 10-720 Olsztyn, Poland
3
Department of Obstetrics and Gynaecology, School of Medicine, Collegium Medicum, University of Warmia and Mazury, 10-561 Olsztyn, Poland
*
Author to whom correspondence should be addressed.
Cells 2023, 12(3), 488; https://doi.org/10.3390/cells12030488
Submission received: 2 December 2022 / Revised: 23 January 2023 / Accepted: 30 January 2023 / Published: 2 February 2023
(This article belongs to the Special Issue Neural Stem Cells: Developmental Mechanisms and Disease Modelling)

Abstract

Although clinical trials on human neural stem cells (hNSCs) have already been implemented in the treatment of neurological diseases and they have demonstrated their therapeutic effects, many questions remain in the field of preclinical research regarding the biology of these cells, their therapeutic properties, and their neurorestorative potential. Unfortunately, scientific reports are inconsistent and much of the NSCs research has been conducted on rodents rather than human cells for ethical reasons or due to insufficient cell material. Therefore, a question arises as to whether or which conclusions drawn on the isolation, cell survival, proliferation, or cell fate observed in vitro in rodent NSCs can be introduced into clinical applications. This paper presents the effects of different spatial, nutritional, and dissociation conditions on NSCs’ functional properties, which are highly species-dependent. Our study confirmed that the discrepancies in the available literature on NSCs survival, proliferation, and fate did not only depend on intra-species factors and applied environmental conditions, but they were also affected by significant inter-species variability. Human and rodent NSCs share one feature, i.e., the necessity to be cultured immediately after isolation, which significantly maintains their survival. Additionally, in the absence of experiments on human cells, rat NSCs biology (neurosphere formation potential and neural differentiation stage) seems closer to that of humans rather than mice in response to environmental factors.
Keywords: neural stem cells; intra-species variability; inter-species variability; cryopreservation; long-term culture; human; rodents; medium composition; growth factors neural stem cells; intra-species variability; inter-species variability; cryopreservation; long-term culture; human; rodents; medium composition; growth factors

Share and Cite

MDPI and ACS Style

Radoszkiewicz, K.; Jezierska-Woźniak, K.; Waśniewski, T.; Sarnowska, A. Understanding Intra- and Inter-Species Variability in Neural Stem Cells’ Biology Is Key to Their Successful Cryopreservation, Culture, and Propagation. Cells 2023, 12, 488. https://doi.org/10.3390/cells12030488

AMA Style

Radoszkiewicz K, Jezierska-Woźniak K, Waśniewski T, Sarnowska A. Understanding Intra- and Inter-Species Variability in Neural Stem Cells’ Biology Is Key to Their Successful Cryopreservation, Culture, and Propagation. Cells. 2023; 12(3):488. https://doi.org/10.3390/cells12030488

Chicago/Turabian Style

Radoszkiewicz, Klaudia, Katarzyna Jezierska-Woźniak, Tomasz Waśniewski, and Anna Sarnowska. 2023. "Understanding Intra- and Inter-Species Variability in Neural Stem Cells’ Biology Is Key to Their Successful Cryopreservation, Culture, and Propagation" Cells 12, no. 3: 488. https://doi.org/10.3390/cells12030488

APA Style

Radoszkiewicz, K., Jezierska-Woźniak, K., Waśniewski, T., & Sarnowska, A. (2023). Understanding Intra- and Inter-Species Variability in Neural Stem Cells’ Biology Is Key to Their Successful Cryopreservation, Culture, and Propagation. Cells, 12(3), 488. https://doi.org/10.3390/cells12030488

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