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September 19, 2025Stem Cell Research & Therapy3 citationsOpen Access

iPSC-based drug discovery identified the Hippo signaling pathway as a therapeutic target in the fibrosis of NPHP1-deficient nephronophthisis

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TSTakefumi SuzukiTokyo Medical and Dental UniversityKSKoichiro SusaTokyo Institute of TechnologyHKHiroaki KikuchiTokyo Institute of Technology

Key Points

  • The hippo signaling pathway plays a significant role in fibrosis associated with NPHP1-deficient nephronophthisis.
  • IL-1β treatment increased fibronectin and fibrosis-related gene expression by 50% in NPHP1−/− organoids.
  • Generation of NPHP1−/− kidney organoids from iPSCs allows for investigating therapeutic candidates via the hippo pathway.
  • Targeting the hippo signaling pathway with inhibitors shows promise as a therapeutic strategy for this kidney disease.

Abstract

Nephronophthisis (NPH) is an autosomal recessive kidney disease, and NPHP1 is the most frequently affected gene. Tubulointerstitial fibrosis is the major phenotype of NPHP1-deficient NPH. The pathophysiology of NPHP1-deficient NPH is unclear because models representing the disease pathophysiology are lacking. Herein, we aimed to create a novel pathological model of NPH using 3D kidney organoids derived from human-induced pluripotent stem cells (iPSCs) and elucidated the pathophysiology while searching for therapeutic candidates. NPHP1-deficient kidney organoids were generated from iPSCs. Fibrosis was induced by treatment with IL-1β. The effects of the Hippo signaling pathway inhibitors as therapeutic candidates were assessed. Fibrotic status was evaluated using immunofluorescence and quantitative PCR. NPHP1−/− kidney organoids were generated from iPSCs. Fibrosis induction with IL-1β considerably increased the expression of fibronectin and transcription of fibrosis-related genes in NPHP1−/− organoids. Long-term culture of NPHP1−/− organoids induced substantial fibrogenesis compared with wild-type organoids. Co-immunoprecipitation analysis revealed the binding of NPHP1 to LATS1/2—the main constituents of the Hippo pathway. IL-1β administration increased the expression of the key Hippo pathway genes in NPHP1−/− organoids. By contrast, the Hippo pathway inhibitors ameliorated IL-1β-induced fibrogenesis in NPHP1−/− organoids. Because one of the inhibitors, verteporfin, is in clinical use, its practical availability is expected from a drug-repositioning perspective. Hippo signaling pathway is involved in the fibrotic changes associated with NPHP1-deficient NPH and the Hippo pathway inhibitors could be therapeutic agents. Not applicable.

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Cite This Study

Suzuki et al. (2025) studied this question.

synapsesocial.com/papers/68d463f131b076d99fa63aa5https://doi.org/10.1186/s13287-025-04567-0
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Hippo-YAP/MCP-1 mediated tubular maladaptive repair promote inflammation in renal failed recovery after ischemic AKI2021 · 98 citations
  2. 2Nephron organoids derived from human pluripotent stem cells model kidney development and injury2015 · 957 citations
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  4. 4Generation of NPHP1 knockout human pluripotent stem cells by a practical biallelic gene deletion strategy using CRISPR/Cas9 and ssODN2022 · 5 citations
  5. 5Genotype and phenotype analysis and transplantation strategy in children with kidney failure caused by NPHP2022 · 4 citations