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MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes

OBJECTIVE: Astrocytes play a significant role in the pathology of multiple sclerosis (MS). Nevertheless, for ethical reasons, most studies in these cells were performed using the Experimental Autoimmune Encephalomyelitis model. As there are significant differences between human and mouse cells, we a...

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Autores principales: Ghirotto, Bruno, Oliveira, Danyllo F., Cipelli, Marcella, Basso, Paulo J., de Lima, Jean, Breda, Cristiane N. S., Ribeiro, Henrique C., Silva, Camille C. C., Sertié, Andrea L., Oliveira, Antonio Edson R., Hiyane, Meire I., Caldini, Elia G., Sussulini, Alessandra, Nakaya, Helder I., Kowaltowski, Alicia J., Oliveira, Enedina M. L., Zatz, Mayana, Câmara, Niels O. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9310856/
https://www.ncbi.nlm.nih.gov/pubmed/35226368
http://dx.doi.org/10.1002/ana.26336
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author Ghirotto, Bruno
Oliveira, Danyllo F.
Cipelli, Marcella
Basso, Paulo J.
de Lima, Jean
Breda, Cristiane N. S.
Ribeiro, Henrique C.
Silva, Camille C. C.
Sertié, Andrea L.
Oliveira, Antonio Edson R.
Hiyane, Meire I.
Caldini, Elia G.
Sussulini, Alessandra
Nakaya, Helder I.
Kowaltowski, Alicia J.
Oliveira, Enedina M. L.
Zatz, Mayana
Câmara, Niels O. S.
author_facet Ghirotto, Bruno
Oliveira, Danyllo F.
Cipelli, Marcella
Basso, Paulo J.
de Lima, Jean
Breda, Cristiane N. S.
Ribeiro, Henrique C.
Silva, Camille C. C.
Sertié, Andrea L.
Oliveira, Antonio Edson R.
Hiyane, Meire I.
Caldini, Elia G.
Sussulini, Alessandra
Nakaya, Helder I.
Kowaltowski, Alicia J.
Oliveira, Enedina M. L.
Zatz, Mayana
Câmara, Niels O. S.
author_sort Ghirotto, Bruno
collection PubMed
description OBJECTIVE: Astrocytes play a significant role in the pathology of multiple sclerosis (MS). Nevertheless, for ethical reasons, most studies in these cells were performed using the Experimental Autoimmune Encephalomyelitis model. As there are significant differences between human and mouse cells, we aimed here to better characterize astrocytes from patients with MS (PwMS), focusing mainly on mitochondrial function and cell metabolism. METHODS: We obtained and characterized induced pluripotent stem cell (iPSC)‐derived astrocytes from three PwMS and three unaffected controls, and performed electron microscopy, flow cytometry, cytokine and glutamate measurements, gene expression, in situ respiration, and metabolomics. We validated our findings using a single‐nuclei RNA sequencing dataset. RESULTS: We detected several differences in MS astrocytes including: (i) enrichment of genes associated with neurodegeneration, (ii) increased mitochondrial fission, (iii) increased production of superoxide and MS‐related proinflammatory chemokines, (iv) impaired uptake and enhanced release of glutamate, (v) increased electron transport capacity and proton leak, in line with the increased oxidative stress, and (vi) a distinct metabolic profile, with a deficiency in amino acid catabolism and increased sphingolipid metabolism, which have already been linked to MS. INTERPRETATION: Here we describe the metabolic profile of iPSC‐derived astrocytes from PwMS and validate this model as a very powerful tool to study disease mechanisms and to perform non‐invasive drug targeting assays in vitro. Our findings recapitulate several disease features described in patients and provide new mechanistic insights into the metabolic rewiring of astrocytes in MS, which could be targeted in future therapeutic studies. ANN NEUROL 2022;91:652–669
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spelling pubmed-93108562022-07-29 MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes Ghirotto, Bruno Oliveira, Danyllo F. Cipelli, Marcella Basso, Paulo J. de Lima, Jean Breda, Cristiane N. S. Ribeiro, Henrique C. Silva, Camille C. C. Sertié, Andrea L. Oliveira, Antonio Edson R. Hiyane, Meire I. Caldini, Elia G. Sussulini, Alessandra Nakaya, Helder I. Kowaltowski, Alicia J. Oliveira, Enedina M. L. Zatz, Mayana Câmara, Niels O. S. Ann Neurol Research Articles OBJECTIVE: Astrocytes play a significant role in the pathology of multiple sclerosis (MS). Nevertheless, for ethical reasons, most studies in these cells were performed using the Experimental Autoimmune Encephalomyelitis model. As there are significant differences between human and mouse cells, we aimed here to better characterize astrocytes from patients with MS (PwMS), focusing mainly on mitochondrial function and cell metabolism. METHODS: We obtained and characterized induced pluripotent stem cell (iPSC)‐derived astrocytes from three PwMS and three unaffected controls, and performed electron microscopy, flow cytometry, cytokine and glutamate measurements, gene expression, in situ respiration, and metabolomics. We validated our findings using a single‐nuclei RNA sequencing dataset. RESULTS: We detected several differences in MS astrocytes including: (i) enrichment of genes associated with neurodegeneration, (ii) increased mitochondrial fission, (iii) increased production of superoxide and MS‐related proinflammatory chemokines, (iv) impaired uptake and enhanced release of glutamate, (v) increased electron transport capacity and proton leak, in line with the increased oxidative stress, and (vi) a distinct metabolic profile, with a deficiency in amino acid catabolism and increased sphingolipid metabolism, which have already been linked to MS. INTERPRETATION: Here we describe the metabolic profile of iPSC‐derived astrocytes from PwMS and validate this model as a very powerful tool to study disease mechanisms and to perform non‐invasive drug targeting assays in vitro. Our findings recapitulate several disease features described in patients and provide new mechanistic insights into the metabolic rewiring of astrocytes in MS, which could be targeted in future therapeutic studies. ANN NEUROL 2022;91:652–669 John Wiley & Sons, Inc. 2022-03-17 2022-05 /pmc/articles/PMC9310856/ /pubmed/35226368 http://dx.doi.org/10.1002/ana.26336 Text en © 2022 The Authors. Annals of Neurology published by Wiley Periodicals LLC on behalf of American Neurological Association. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Ghirotto, Bruno
Oliveira, Danyllo F.
Cipelli, Marcella
Basso, Paulo J.
de Lima, Jean
Breda, Cristiane N. S.
Ribeiro, Henrique C.
Silva, Camille C. C.
Sertié, Andrea L.
Oliveira, Antonio Edson R.
Hiyane, Meire I.
Caldini, Elia G.
Sussulini, Alessandra
Nakaya, Helder I.
Kowaltowski, Alicia J.
Oliveira, Enedina M. L.
Zatz, Mayana
Câmara, Niels O. S.
MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title_full MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title_fullStr MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title_full_unstemmed MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title_short MS‐Driven Metabolic Alterations Are Recapitulated in iPSC‐Derived Astrocytes
title_sort ms‐driven metabolic alterations are recapitulated in ipsc‐derived astrocytes
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9310856/
https://www.ncbi.nlm.nih.gov/pubmed/35226368
http://dx.doi.org/10.1002/ana.26336
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