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51. A12 The cryo-electron microscopy structure of huntingtin

52. Temperature-sensitive miR-483 is a conserved regulator of recombinant protein and viral vector production in mammalian cells

53. Human amniocyte-derived cells are a promising cell host for adenoviral vector production under serum-free conditions

54. CD169 + macrophages are sufficient for priming of CTLs with specificities left out by cross-priming dendritic cells

55. Recent advances in gene-enhanced bone tissue engineering

56. Pancreatic Transduction by Helper-Dependent Adenoviral Vectors via Intraductal Delivery

57. Foamy virus-adenovirus hybrid vectors for gene therapy of the arthritides

58. CAP, a new human suspension cell line for influenza virus production

59. Adenovirus vector-based in vitro neuronal cell model for Huntington's disease with human disease-like differential aggregation and degeneration

60. High-capacity adenoviral vectors circumvent the limitations of ΔE1 and ΔE1/ΔE3 adenovirus vectors to induce multispecific transgene product-directed CD8 T-cell responses

61. ΔE1 and high-capacity adenoviral vectors expressing full-length codon-optimized merozoite surface protein 1 for vaccination against Plasmodium falciparum

62. miRNA-mediated Silencing in Hepatocytes Can Increase Adaptive Immune Responses to Adenovirus Vector-delivered Transgenic Antigens

63. Modifications of Adenovirus Hexon Allow for Either Hepatocyte Detargeting or Targeting With Potential Evasion From Kupffer Cells

64. Accelerated aging phenotype in mice with conditional deficiency for mitochondrial superoxide dismutase in the connective tissue

65. Capsomer-Specific Fluorescent Labeling of Adenoviral Vector Particles Allows for Detailed Analysis of Intracellular Particle Trafficking and the Performance of Bioresponsive Bonds for Vector Capsid Modifications

66. Genomic integration of adenoviral gene transfer vectors following transduction of fertilized mouse oocytes

67. Development of replication-defective lymphocytic choriomeningitis virus vectors for the induction of potent CD8+ T cell immunity

68. Overexpression of manganese superoxide dismutase in human dermal fibroblasts enhances the contraction of free floating collagen lattice: implications for ageing and hyperplastic scar formation

69. Homologous and heterologous recombination between adenovirus vector DNA and chromosomal DNA

70. Modification of Adenovirus Gene Transfer Vectors With Synthetic Polymers: A Scientific Review and Technical Guide

71. Inducing huntingtin inclusion formation in primary neuronal cell culture andin vivo by high-capacity adenoviral vectors expressing truncated and full-length huntingtin with polyglutamine expansion

72. Senescent fibroblast-derived Chemerin promotes squamous cell carcinoma migration

73. High-Capacity Adenoviral Vector-Mediated Reduction of Huntingtin Aggregate Load In Vitro and In Vivo

74. 46. Shielding of Ad5 by Minimal Geneti-Chemical Modification: Preventing Clearance While Preserving Infectivity

75. Combined Genetic and Chemical Capsid Modifications Enable Flexible and Efficient De- and Retargeting of Adenovirus Vectors

76. Comparison of high-capacity and first-generation adenoviral vector gene delivery to murine muscle in utero

77. Sustained Muscle Expression of Dystrophin from a High-Capacity Adenoviral Vector with Systemic Gene Transfer of T Cell Costimulatory Blockade

78. CTLA4Ig delivered by high-capacity adenoviral vector induces stable expression of dystrophin in mdx mouse muscle

79. Foamy virus–adenovirus hybrid vectors

80. Long-Term Transgene Expression in Proliferating Cells Mediated by Episomally Maintained High-Capacity Adenovirus Vectors

81. Fetal muscle gene transfer is not enhanced by an RGD capsid modification to high-capacity adenoviral vectors

82. Antibody-Mediated Targeting of an Adenovirus Vector Modified To Contain a Synthetic Immunoglobulin G-Binding Domain in the Capsid

84. Intracerebral Transplantation and Successful Integration of Astrocytes following Genetic Modification with a High-Capacity Adenoviral Vector

85. Autologous transplantation of genetically modified iris pigment epithelial cells: A promising concept for the treatment of age-related macular degeneration and other disorders of the eye

86. Systemic Delivery of a High-Capacity Adenoviral Vector Expressing Mouse CTLA4Ig Improves Skeletal Muscle Gene Therapy

87. Immune Response to Full-Length Dystrophin Delivered to Dmd Muscle by a High-Capacity Adenoviral Vector

88. Variables Affecting In Vivo Performance of High-Capacity Adenovirus Vectors

89. Gene transfer with high-capacity'gutless' adenoviral vectors

90. Targeting of High-Capacity Adenoviral Vectors

91. Comparison of long-term transgene expression after non-viral and adenoviral gene transfer into primary articular chondrocytes

92. Preexisting Antiadenoviral Immunity Is Not a Barrier to Efficient and Stable Transduction of the Brain, Mediated by Novel High-Capacity Adenovirus Vectors

93. Toxicity Associated with Repeated Administration of First-Generation Adenovirus Vectors Does Not Occur with a Helper-Dependent Vector

94. Frequency and Stability of Chromosomal Integration of Adenovirus Vectors

95. DNA from Both High-Capacity and First-Generation Adenoviral Vectors Remains Intact in Skeletal Muscle

96. High Doses of a Helper-Dependent Adenoviral Vector Yield Supraphysiological Levels ofα1-Antitrypsin with Negligible Toxicity

97. An adenoviral vector deleted for all viral coding sequences results in enhanced safety and extended expression of a leptin transgene

98. Genomic DNA transfer with a high-capacity adenovirus vector results in improved in vivo gene expression and decreased toxicity

99. Ex vivo gene transfer using adenovirus-mediated full-length dystrophin delivery to dystrophic muscles

100. Traceless Bioresponsive Shielding of Adenovirus Hexon with HPMA Copolymers Maintains Transduction Capacity In Vitro and In Vivo

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