Long-term correction of hemophilia A via integration of a functionally enhanced <i>FVIII</i> gene into the <i>AAVS1</i> locus by nickase in patient-derived iPSCs

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초록

Hemophilia A (HA) is caused by mutations in coagulation factor VIII (FVIII). Genome editing in conjunction with patient-derived induced pluripotent stem cells (iPSCs) is a promising cell therapy strategy, as it replaces dysfunctional proteins resulting from genetic mutations with normal proteins. However, the low expression level and short half-life of FVIII still remain significant limiting factors in the efficacy of these approaches in HA. Here, we constructed a functionally enhanced FVIII variant, F309S/E1984V-mutated B domain-deleted (BDD)-FVIII (FE-FVIII), with increased activity and stability. We inserted FE-FVIII with a human elongation factor-1 alpha (EF1 alpha) promoter into the AAVS1 locus of HA patient-derived iPSCs via CRISPR/Cas9 (D10A) nickase to ensure expression in any cell type. FE-FVIII was expressed not only in undifferentiated FE-FVIII-inserted (FE-KI) iPSCs but also in endothelial cells (ECs) differentiated from them in vitro. Compared with mice transplanted with wild-type BDD-FVIII-containing ECs, immunocompetent HA mice intravenously transplanted with FE-KI ECs presented a 2.12-fold increase in FVIII activity in the blood and an approximately 20% greater survival rate after hemorrhagic tail injury. For sustained efficacy, FE-KI ECs were subcutaneously transplanted into immunodeficient HA mice, resulting in amelioration of the hemophilia phenotype for more than 3 months. This strategy can improve FVIII function and may provide a universal therapeutic approach for treating HA.

키워드

Blood Clotting Factor 8; Cyclosporine; Puromycin; Factor Viii; Peptide Elongation Factor 1; Cfx96; Dneasy Blood Tissue Kit; Easyspin; Eclipse Ti-u; Elisa Kit; Graphpad Prism Software; Ivis 200; Microplate Reader; Blood Clotting Factor 8; Bone Morphogenetic Protein 4; Cyclosporine; Puromycin; Elongation Factor 1; Animal Cell; Animal Experiment; Animal Model; Article; Cell Viability; Controlled Study; Crispr-cas9 System; Dna Extraction; Enzyme Linked Immunosorbent Assay; Flow Cytometry; Gene; Gene Expression; Gene Knock-in; Gene Locus; Gene Mutation; Genetic Transfection; Hek293t Cell Line; Hemophilia A; Hemorrhagic Tail Injury; Human; Human Cell; Immunocytochemistry; Immunofluorescence; In Vitro Study; Induced Pluripotent Stem Cell; Injury; Integration; Karyotyping; Long Term Care; Mouse; Nonhuman; Open Reading Frame; Peripheral Blood Mononuclear Cell; Plasmid; Polyadenylation; Polymerase Chain Reaction; Protein Expression; Radioimmunoprecipitation; Real Time Polymerase Chain Reaction; Reverse Transcription Polymerase Chain Reaction; Rna Isolation; Sanger Sequencing; Single Nucleotide Polymorphism; Western Blotting; Animal; Cell Differentiation; Crispr Cas System; Cytology; Dependoparvovirus; Disease Model; Endothelium Cell; Gene Editing; Gene Therapy; Gene Vector; Genetics; Metabolism; Mutation; Procedures; Therapy; Animals; Cell Differentiation; Crispr-cas Systems; Dependovirus; Disease Models, Animal; Endothelial Cells; Factor Viii; Gene Editing; Genetic Loci; Genetic Therapy; Genetic Vectors; Hemophilia A; Humans; Induced Pluripotent Stem Cells; Mice; Mutation; Peptide Elongation Factor 1; SINUSOIDAL ENDOTHELIAL-CELLS; PLURIPOTENT STEM-CELLS; FACTOR-VIII; EXPRESSION; GENERATION; SECRETION
제목
Long-term correction of hemophilia A via integration of a functionally enhanced <i>FVIII</i> gene into the <i>AAVS1</i> locus by nickase in patient-derived iPSCs
저자
Kim, Do-Hun; Choi, Sang-Hwi; Sung, Jin Jea; Kim, Sieun; Yi, Hanui; Park, Sanghyun; Park, Chan Wook; Oh, Young Woo; Lee, Jungil; Kim, Dae-Sung; Kim, Jong-Hoon; Park, Chul-Yong; Kim, Dong-Wook
DOI
10.1038/s12276-024-01375-z
발행일
2025-02
유형
Article
저널명
Experimental & Molecular Medicine
권
57
호
1
페이지
184 ~ 192