Progeria, also known as HGPS (Hutchinson–Gilford progeria syndrome), is a rare fatal genetic disease characterized by an appearance of accelerated aging in children. This syndrome is typically caused by mutations in codon 608 (C1804T) of the gene encoding lamins A and C, LMNA, leading to the production of a truncated form of the protein called progerin. Owing to their unique potential to self-renew and to differentiate into any cell types of the organism, pluripotent stem cells offer a unique tool to study molecular and cellular mechanisms related to this global and systemic disease. Recent studies have exploited this potential by generating human induced pluripotent stem cells from HGPS patients' fibroblasts displaying several phenotypic defects characteristic of HGPS such as nuclear abnormalities, progerin expression, altered DNA-repair mechanisms and premature senescence. Altogether, these findings provide new insights on the use of pluripotent stem cells for pathological modelling and may open original therapeutic perspectives for diseases that lack pre-clinical in vitro human models, such as HGPS.
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December 2011
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Conference Article|
November 21 2011
In vitro pathological modelling using patient-specific induced pluripotent stem cells: the case of progeria
Xavier Nissan;
*CECS, I-Stem, AFM, Evry Cedex, France
2To whom correspondence should be addressed (email xnissan@istem.fr).
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Sophie Blondel;
Sophie Blondel
1
†INSERM U861, I-Stem, AFM, Evry Cedex, France
‡UEVE U861, I-Stem, AFM, Evry Cedex, France
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Marc Peschanski
Marc Peschanski
†INSERM U861, I-Stem, AFM, Evry Cedex, France
‡UEVE U861, I-Stem, AFM, Evry Cedex, France
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Biochem Soc Trans (2011) 39 (6): 1775–1779.
Article history
Received:
July 11 2011
Citation
Xavier Nissan, Sophie Blondel, Marc Peschanski; In vitro pathological modelling using patient-specific induced pluripotent stem cells: the case of progeria. Biochem Soc Trans 1 December 2011; 39 (6): 1775–1779. doi: https://doi.org/10.1042/BST20110659
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