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PAX3 Mutation Suppress Otic Progenitors Proliferation and Induce Apoptosis by Inhibiting WNT1/β-catenin Signaling Pathway in WS1 Patient Ipsc-Derived Inner Ear Organoids

Biochemical and biophysical research communications(2024)

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摘要
Waardenburg syndrome type 1 (WS1) is a hereditary disease mainly characterized by sensorineural hearing loss, dystopia canthorum, and pigmentary defects. To elucidate molecular mechanisms underlying PAX3-associated hearing loss, we developed inner ear organoids model using induced pluripotent stem cells (iPSCs) derived from WS1 patient and healthy individual. Our results revealed a significant reduction in the size of inner ear organoids, accompanied by an increased level of apoptosis in organoids derived from WS1 patient-iPSCs carrying PAX3 c.214A > G. Transcriptome profiling analysis by RNA-seq indicated that inner ear organoids from WS1 patients were associated with suppression of inner ear development and WNT signaling pathway. Furthermore, the upregulation of the WNT1/β-catenin pathway which was achieved through the correction of PAX3 isogenic mutant iPSCs using CRISPR/Cas9, contributed to an increased size of inner ear organoids and a reduction in apoptosis. Together, our results provide insight into the underlying mechanisms of hearing loss in WS.
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Organoid,Apoptosis,Waardenburg syndrome 1,iPSCs,CRISPR/Cas9,WNT1/ beta-catenin
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