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Progress in Retinal and Eye Research|August 17, 2025
Eyes shut homolog (EYS): Connecting molecule to diseaseJoão Pedro Marques, Inês Santos Sousa, Daniela Patrício, et al.
Molecular Therapy : the Journal of the American Society of Gene Therapy|February 12, 2022
CRISPR genome surgery in a novel humanized model for autosomal dominant retinitis pigmentosaWen-Hsuan Wu, Yi-Ting Tsai, I-Wen Huang, et al.
Cell & Bioscience|May 21, 2024
Targeting miR-181a/b in retinitis pigmentosa: implications for disease progression and therapyBruna Lopes da Costa, Peter M J Quinn, Wen-Hsuan Wu, et al.
Molecular Therapy. Nucleic Acids|November 10, 2025
Prime editing for the investigation of aberrant splicing defect associated with a pathogenic PRPH2 variantBruna Lopes da Costa, Kyle M Helms, Keith Theodore, et al.
International Journal of Molecular Sciences|August 7, 2021
Mouse Models of Achromatopsia in Addressing Temporal "Point of No Return" in Gene-TherapyNan-Kai Wang, Pei-Kang Liu, Yang Kong, et al.
EMBO Molecular Medicine|January 16, 2023
HIF2α activation and mitochondrial deficit due to iron chelation cause retinal atrophyYang Kong, Pei-Kang Liu, Yao Li, et al.
Health Education Research|November 28, 2015
Association of parental health literacy with oral health of Navajo Nation preschoolersA G Brega, J F Thomas, W G Henderson, et al.
Science Advances|November 10, 2021
Phase transition specified by a binary code patterns the vertebrate eye cupRevathi Balasubramanian, Xuanyu Min, Peter M J Quinn, et al.
Antioxidants (Basel, Switzerland)|February 25, 2023
TRAP1 Is Expressed in Human Retinal Pigment Epithelial Cells and Is Required to Maintain their Energetic StatusInês Ramos Rego, Daniela Silvério, Maria Isabel Eufrásio, et al.
Stem Cell Reports|August 4, 2023
CRB1 is required for recycling by RAB11A+ vesicles in human retinal organoidsThilo M Buck, Peter M J Quinn, Lucie P Pellissier, et al.
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