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Experimental Cell Research|March 22, 2005
Seeing is believing! The optical properties of the eye lens are dependent upon a functional intermediate filament cytoskeletonMing Der Perng, Roy A QuinlanJournal of Visualized Experiments : Jove|December 15, 2025
Experimental Approaches for Biochemical Analysis of Glial Fibrillary Acidic Protein and Its Disease-associated VariantsNi-Hsuan Lin, Ming-Der PerngCurrent Biology : CB|August 7, 2004
Neuronal diseases: small heat shock proteins calm your nervesMing Der Perng, Roy A QuinlanInternational Journal of Molecular Sciences|May 27, 2026
Synergistic Effects of Glial Fibrillary Acidic Protein Mutation and Overexpression in the Pathogenesis of Alexander DiseaseNi-Hsuan Lin, Ming-Der PerngExperimental Cell Research|May 11, 2007
Insights into the beaded filament of the eye lensMing-Der Perng, Qingjiong Zhang, Roy A QuinlanPlos One|July 13, 2017
Characterization of a panel of monoclonal antibodies recognizing specific epitopes on GFAPNi-Hsuan Lin, Albee Messing, Ming-Der PerngMethods in Enzymology|January 19, 2016
Purification of Protein Chaperones and Their Functional Assays with Intermediate FilamentsMing-Der Perng, Yu-Shan Huang, Roy A QuinlanInternational Journal of Molecular Sciences|March 13, 2025
Deletions in Glial Fibrillary Acidic Protein Leading to Alterations in Intermediate Filament Assembly and Network FormationNi-Hsuan Lin, Wan-Syuan Jian, Ming-Der PerngHistochemistry and Cell Biology|October 14, 2004
Comparison of the small heat shock proteins alphaB-crystallin, MKBP, HSP25, HSP20, and cvHSP in heart and skeletal muscleNikola Golenhofen, Ming Der Perng, Roy A Quinlan, et al.The Journal of Biological Chemistry|May 23, 2024
Glial fibrillary acidic protein is pathologically modified in Alexander diseaseNi-Hsuan Lin, Wan-Syuan Jian, Natasha Snider, et al.Pageof 4