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Human stromal cell-based protocol to generate astrocytes: a straightforward <italic>in vitro</italic> predictive strategy in neurotoxicology.

Authors :
De Simone, Uliana
Caloni, Francesca
Pignatti, Patrizia
Gaetano, Carlo
Locatelli, Carlo Alessandro
Coccini, Teresa
Source :
Toxicology Mechanisms & Methods. Dec2024, p1-16. 16p. 10 Illustrations, 2 Charts.
Publication Year :
2024

Abstract

AbstractThe inherent adaptability of human mesenchymal stromal cells (hMSCs) to differentiate into neural lineages provides a valuable resource for investigating potential neurotoxicity in humans. By harnessing the ability of hMSCs to transform into astrocytes, we can evaluate the effects of various agents on these vital cells. Our protocol employs hMSCs sourced from umbilical cord tissue, ensuring a readily available supply of high-quality cells. The hMSC-to-neural workflow encompasses six essential steps: hMSC culture, followed by the generation of embryoid bodies (EBs) from these cells on specialized surfaces. Next, EBs and cells are expanded in a growth-promoting medium, directing them toward neural lineages. Subsequent differentiation into immature astrocytes is achieved through the use of specific factors. The process continues with the maturation of EBs/cells into astrocyte-like cells (hALCs) under optimized conditions, culminating in the final development of hALCs in a specialized medium. This methodology yields cells that display astrocyte morphology and express characteristic markers such as GFAP and S100β. The protocol is efficient, requiring roughly 6 weeks to generate hALCs from primary hMSCs without genetic manipulation. The application of hMSCs in evaluating cell damage triggered by neurotoxicants like MeHg and MGO underscores their potential as a valuable component within a more extensive battery of neurotoxicity tests. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15376516
Database :
Academic Search Index
Journal :
Toxicology Mechanisms & Methods
Publication Type :
Academic Journal
Accession number :
181272365
Full Text :
https://doi.org/10.1080/15376516.2024.2435351