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Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and disease
Noemi Gatto, Cleide Dos Santos Souza, Allan C. Shaw, Simon Bell, Monika A. Myszczynska, Samantha K. Powers, Kathrin Meyer, Lydia M. Castelli, Evangelia Karyka, Heather Mortiboys, Mimoun Azzouz, Guillaume M. Hautbergue, Nóra M. Márkus, Pamela J. Shaw, Laura Ferraiuolo
Aging Cell · 2020 · ▲ 58 citations
Genomic instability
Stem-cell exhaustion
Chronic inflammation
Cell culture / in vitro
Human
In vitro
Abstract
Astrocytes are highly specialised cells, responsible for CNS homeostasis and neuronal activity. Lack of human in vitro systems able to recapitulate the functional changes affecting astrocytes during ageing represents a major limitation to studying mechanisms and potential therapies aiming to preserve neuronal health. Here, we show that induced astrocytes from fibroblasts donors in their childhood or adulthood display age-related transcriptional differences and functionally diverge in a spectrum of age-associated features, such as altered nuclear compartmentalisation, nucleocytoplasmic shuttling properties, oxidative stress response and DNA damage response. Remarkably, we also show an age-related differential response of induced neural progenitor cells derived astrocytes (iNPC-As) in their ability to support neurons in co-culture upon pro-inflammatory stimuli. These results show that iNPC-As are a renewable, readily available resource of human glia that retain the age-related features of the donor fibroblasts, making them a unique and valuable model to interrogate human astrocyte function over time in human CNS health and disease.
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- 10.1111/acel.13281
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- 2026-09-15 MST
Cite this
APA
Gatto, N., Souza, C.D.S., Shaw, A.C., Bell, S., Myszczynska, M.A., Powers, S.K., Meyer, K., Castelli, L.M., Karyka, E., Mortiboys, H., Azzouz, M., Hautbergue, G.M., Márkus, N.M., Shaw, P.J., & Ferraiuolo, L. (2020). Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and disease. <em>Aging Cell</em>. https://doi.org/10.1111/acel.13281
Vancouver
Gatto N, Souza CDS, Shaw AC, Bell S, Myszczynska MA, Powers SK, et al. Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and disease. Aging Cell. 2020. doi:10.1111/acel.13281.
BibTeX
@article{noemi2020Direct,
title = {Directly converted astrocytes retain the ageing features of the donor fibroblasts and elucidate the astrocytic contribution to human CNS health and disease},
author = {Noemi Gatto and Cleide Dos Santos Souza and Allan C. Shaw and Simon Bell and Monika A. Myszczynska and Samantha K. Powers and Kathrin Meyer and Lydia M. Castelli and Evangelia Karyka and Heather Mortiboys and Mimoun Azzouz and Guillaume M. Hautbergue and Nóra M. Márkus and Pamela J. Shaw and Laura Ferraiuolo},
journal = {Aging Cell},
year = {2020},
doi = {10.1111/acel.13281},
}
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