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Mol Ther ; 32(8): 2563-2583, 2024 Aug 07.
Article de Anglais | MEDLINE | ID: mdl-38879755

RÉSUMÉ

The extensive degeneration of functional somatic cells and the depletion of endogenous stem/progenitor populations present significant challenges to tissue regeneration in degenerative diseases. Currently, a cellular reprogramming approach enabling directly generating corresponding progenitor populations from degenerative somatic cells remains elusive. The present study focused on intervertebral disc degeneration (IVDD) and identified a three-factor combination (OCT4, FOXA2, TBXT [OFT]) that could induce the dedifferentiation-like reprogramming of degenerative nucleus pulposus cells (dNPCs) toward induced notochordal-like cells (iNCs). Single-cell transcriptomics dissected the transitions of cell identity during reprogramming. Further, OCT4 was found to directly interact with bromodomain PHD-finger transcription factor to remodel the chromatin during the early phases, which was crucial for initiating this dedifferentiation-like reprogramming. In rat models, intradiscal injection of adeno-associated virus carrying OFT generated iNCs from in situ dNPCs and reversed IVDD. These results collectively present a proof-of-concept for dedifferentiation-like reprogramming of degenerated somatic cells into corresponding progenitors through the development of a factor-based strategy, providing a promising approach for regeneration in degenerative disc diseases.


Sujet(s)
Dédifférenciation cellulaire , Reprogrammation cellulaire , Dégénérescence de disque intervertébral , Chorde , Nucleus pulposus , Nucleus pulposus/métabolisme , Nucleus pulposus/cytologie , Nucleus pulposus/anatomopathologie , Animaux , Reprogrammation cellulaire/génétique , Dégénérescence de disque intervertébral/thérapie , Dégénérescence de disque intervertébral/anatomopathologie , Dégénérescence de disque intervertébral/métabolisme , Rats , Chorde/métabolisme , Chorde/cytologie , Humains , Modèles animaux de maladie humaine , Facteur de transcription Oct-3/métabolisme , Facteur de transcription Oct-3/génétique , Analyse sur cellule unique , Protéines à domaine boîte-T/métabolisme , Protéines à domaine boîte-T/génétique , Cellules cultivées
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