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1. Repression of cardiac hypertrophy by KLF15: underlying mechanisms and therapeutic implications.

2. Atonal homolog 1 is a tumor suppressor gene.

3. Comprehensive transcriptome-wide analysis of spliceopathy correction of myotonic dystrophy using CRISPR-Cas9 in iPSCs-derived cardiomyocytes

4. Dose-Dependent Microdystrophin Expression Enhancement in Cardiac Muscle by a Cardiac-Specific Regulatory Element

5. Identification of a myotropic AAV by massively parallel in vivo evaluation of barcoded capsid variants

6. Gene therapy for hemophilia B using CB 2679d-GT: a novel factor IX variant with higher potency than factor IX Padua

7. A Calsequestrin Cis-Regulatory Motif Coupled to a Cardiac Troponin T Promoter Improves Cardiac Adeno-Associated Virus Serotype 9 Transduction Specificity

8. Efficient In Vivo Liver-Directed Gene Editing Using CRISPR/Cas9

9. Evaluation of the Human Factor IX Gene Therapy Vector TAK-748 in Hemophilia: Results from Non-Clinical Studies in Factor IX Knockout Mice and Rhesus Monkeys

10. Distinct transduction of muscle tissue in mice after systemic delivery of AAVpo1 vectors

11. Hyperactive Factor IX Padua: A Game-Changer for Hemophilia Gene Therapy

12. Gene Therapy and Gene Editing for Myotonic Dystrophy

13. Pluripotent Stem Cells for Gene Therapy of Hereditary Muscle Disorders

14. Getting Into the Rhythm With CRISPR

15. Therapeutic Approaches for Dominant Muscle Diseases: Highlight on Myotonic Dystrophy

16. CRISPR/Cas9 Flexes Its Muscles: In Vivo Somatic Gene Editing for Muscular Dystrophy

17. Efficient CRISPR/Cas9-mediated editing of trinucleotide repeat expansion in myotonic dystrophy patient-derived iPS and myogenic cells

18. Recent developments in transposon-mediated gene therapy

19. Genome-wide Computational Analysis Reveals Cardiomyocyte-specific Transcriptional Cis-regulatory Motifs That Enable Efficient Cardiac Gene Therapy

20. Transposons

21. HEMOPHILIA GENE THERAPY

22. Preclinical and clinical advances in transposon-based gene therapy

23. A Novel Platform for Immune Tolerance Induction in Hemophilia A Mice

24. Treatment of phenylketonuria using minicircle-based naked-DNA gene transfer to murine liver

25. Computationally designed liver-specific transcriptional modules and hyperactive factor IX improve hepatic gene therapy

26. Moving Forward Toward a Cure for Hemophilia B

27. Optimizing Delivery and Expression of Designer Nucleases for Genome Engineering

28. Gene therapy for hemophilia

29. Recent Progress in Gene Therapy for Hemophilia

30. Hitting the Target Without Pulling the Trigger

31. Retroviral Vectors Induce Epigenetic Chromatin Modifications and IL-10 Production in Transduced B Cells via Activation of Toll-like Receptor 2

32. Intrinsic cell memory reinforces myogenic commitment of pericyte-derived iPSCs

33. Codon optimization of human factor VIII cDNAs leads to high-level expression

34. Hepatocyte-Targeted Expression by Integrase-Defective Lentiviral Vectors Induces Antigen-Specific Tolerance in Mice with Low Genotoxic Risk

35. Preclinical and clinical progress in hemophilia gene therapy

36. Recent Advances in Lentiviral Vector Development and Applications

37. Xenogeneic Liver Models for Gene Therapy

38. Differential Effects of Progenitor Cell Populations on Left Ventricular Remodeling and Myocardial Neovascularization After Myocardial Infarction

39. In Vivo Induction of Type 1-Like Regulatory T Cells Using Genetically Modified B Cells Confers Long-Term IL-10-Dependent Antigen-Specific Unresponsiveness

40. Efficient stable gene transfer into human cells by the Sleeping Beauty transposon vectors

41. Molecular evolution of a novel hyperactive Sleeping Beauty transposase enables robust stable gene transfer in vertebrates

42. piggyBac transposons expressing full-length human dystrophin enable genetic correction of dystrophic mesoangioblasts

43. Efficient derivation and inducible differentiation of expandable skeletal myogenic cells from human ES and patient-specific iPS cells

44. 28. Intravenous Administration of Lentiviral Vectors Expressing Hyperactive Factor IX Converts Severe Into Mild Hemophilia B in a Canine Model

45. Liver-directed lentiviral gene therapy in a dog model of hemophilia B

46. Phenotypic correction of von Willebrand disease type 3 blood-derived endothelial cells with lentiviral vectors expressing von Willebrand factor

47. Gene therapy for the hemophilias

48. Nanoparticles for the delivery of genes and drugs to human hepatocytes

49. Gene therapy for cardiovascular disease: advances in vector development, targeting, and delivery for clinical translation

50. Therapeutic levels of human Factor VIII in mice implanted with encapsulated cells: potential for gene therapy of haemophilia A

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