Mitochondrial disease encompasses inherited disorders affecting mitochondrial function. A severe and untreatable form of mitochondrial disease is Leigh syndrome (LS), causing psychomotor regression and metabolic crises. To accelerate drug discovery for LS, we screen a library of 5,632 repurposable compounds in neural cells from LS-patient-derived induced pluripotent stem cells (iPSCs). We identify phosphodiesterase type 5 (PDE5) inhibitors as leads and prioritize sildenafil for its clinical safety. Sildenafil corrects mitochondrial membrane potential defects, restores neurodevelopmental pathways, and normalizes calcium responses in LS brain organoids. In small and large mammalian models of LS, sildenafil extends lifespan and ameliorates disease phenotypes. Off-label treatment on an individual basis with sildenafil in six LS patients improves their motor function and resistance to metabolic crises. Collectively, the findings highlight the potential of iPSC-driven drug discovery and position sildenafil as a promising drug candidate for mitochondrial disease.

Zink, A., Dai, D.-F., Wittich, A., Henke, M.-T., Pedrotti, G., Heiduschka, S., et al. (2026). Pluripotent stem-cell-based screening uncovers sildenafil as a mitochondrial disease therapy. CELL, 189(6), 1-67 [10.1016/j.cell.2026.02.008].

Pluripotent stem-cell-based screening uncovers sildenafil as a mitochondrial disease therapy

La Morgia C.;Carelli V.;
2026

Abstract

Mitochondrial disease encompasses inherited disorders affecting mitochondrial function. A severe and untreatable form of mitochondrial disease is Leigh syndrome (LS), causing psychomotor regression and metabolic crises. To accelerate drug discovery for LS, we screen a library of 5,632 repurposable compounds in neural cells from LS-patient-derived induced pluripotent stem cells (iPSCs). We identify phosphodiesterase type 5 (PDE5) inhibitors as leads and prioritize sildenafil for its clinical safety. Sildenafil corrects mitochondrial membrane potential defects, restores neurodevelopmental pathways, and normalizes calcium responses in LS brain organoids. In small and large mammalian models of LS, sildenafil extends lifespan and ameliorates disease phenotypes. Off-label treatment on an individual basis with sildenafil in six LS patients improves their motor function and resistance to metabolic crises. Collectively, the findings highlight the potential of iPSC-driven drug discovery and position sildenafil as a promising drug candidate for mitochondrial disease.
2026
Zink, A., Dai, D.-F., Wittich, A., Henke, M.-T., Pedrotti, G., Heiduschka, S., et al. (2026). Pluripotent stem-cell-based screening uncovers sildenafil as a mitochondrial disease therapy. CELL, 189(6), 1-67 [10.1016/j.cell.2026.02.008].
Zink, A.; Dai, D. -F.; Wittich, A.; Henke, M. -T.; Pedrotti, G.; Heiduschka, S.; Santamaria, G.; Pentimalli, T. M.; Brueser, C.; Notopoulou, S.; Umar,...espandi
File in questo prodotto:
File Dimensione Formato  
Supplementary material.zip

accesso aperto

Tipo: File Supplementare
Licenza: Licenza per Accesso Aperto. Creative Commons Attribuzione (CCBY)
Dimensione 15.04 MB
Formato Zip File
15.04 MB Zip File Visualizza/Apri
PIIS009286742600173X.pdf

accesso aperto

Tipo: Versione (PDF) editoriale / Version Of Record
Licenza: Licenza per Accesso Aperto. Creative Commons Attribuzione (CCBY)
Dimensione 10.48 MB
Formato Adobe PDF
10.48 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1063257
Citazioni
  • ???jsp.display-item.citation.pmc??? 2
  • Scopus 10
  • ???jsp.display-item.citation.isi??? 5
  • OpenAlex ND
social impact