Hemophilia B is a bleeding disorder caused by mutations in the factor IX gene. The disorder is X-linked recessive with a prevalence of about 1 in 30,000 Caucasian males. Factor IX is naturally synthesized in the liver and secreted into blood. Here we report the construction of recombinant adenoviral vectors containing the canine factor IX cDNA that are capable of transducing hepatocytes in mice at high efficiencies in vivo without partial hepatectomy. The recombinant viral vector was used to treat hemophilia B dogs by direct vector infusion into the portal vasculature of deficient animals
The X-linked bleeding disorder hemophilia is caused by mutations in coagulation factor VIII (hemophi...
Hemophilia A and B are X-linked monogenic disorders caused by deficiencies in coagulation factor VII...
Developing adeno-associated viral (AAV)–mediated gene therapy for hemophilia A (HA) has been challen...
Hemophilia B is a bleeding disorder caused by mutations in the factor IX gene. The disorder is X-lin...
We investigated the efficacy of liver-directed gene therapy using lentiviral vectors in a large anim...
Sleeping Beauty (SB) transposase enables somatic integration of exogenous DNA in mammalian cells, bu...
Hemophilia B is a severe X-linked bleeding diathesis caused by the absence of functional blood coagu...
Severe hemophilia A (HA) is an inherited bleeding disorder characterized by <1% of residual factor V...
Hemophilia A and B are hereditary coagulation defects resulting from a deficiency of factor VIII (FV...
Preclinical testing of new therapeutic strategies in relevant animal models is an essential part of ...
High-capacity adenoviral (HC-Ad) vectors expressing B-domain-deleted human or canine factor VIII fro...
Introduction: Gene therapy have recently attracted much attention as a curative therapeutic option f...
Primary skin fibroblasts from hemophilic dogs were transduced by recombinant retrovirus (LNCdF9L) co...
Adenoviral vector-mediated gene therapy might have potential for long-term correction of the monogen...
Dogs with hemophilia A, hemophilia B, von Willebrand disease (VWD), and factor VII deficiency faithf...
The X-linked bleeding disorder hemophilia is caused by mutations in coagulation factor VIII (hemophi...
Hemophilia A and B are X-linked monogenic disorders caused by deficiencies in coagulation factor VII...
Developing adeno-associated viral (AAV)–mediated gene therapy for hemophilia A (HA) has been challen...
Hemophilia B is a bleeding disorder caused by mutations in the factor IX gene. The disorder is X-lin...
We investigated the efficacy of liver-directed gene therapy using lentiviral vectors in a large anim...
Sleeping Beauty (SB) transposase enables somatic integration of exogenous DNA in mammalian cells, bu...
Hemophilia B is a severe X-linked bleeding diathesis caused by the absence of functional blood coagu...
Severe hemophilia A (HA) is an inherited bleeding disorder characterized by <1% of residual factor V...
Hemophilia A and B are hereditary coagulation defects resulting from a deficiency of factor VIII (FV...
Preclinical testing of new therapeutic strategies in relevant animal models is an essential part of ...
High-capacity adenoviral (HC-Ad) vectors expressing B-domain-deleted human or canine factor VIII fro...
Introduction: Gene therapy have recently attracted much attention as a curative therapeutic option f...
Primary skin fibroblasts from hemophilic dogs were transduced by recombinant retrovirus (LNCdF9L) co...
Adenoviral vector-mediated gene therapy might have potential for long-term correction of the monogen...
Dogs with hemophilia A, hemophilia B, von Willebrand disease (VWD), and factor VII deficiency faithf...
The X-linked bleeding disorder hemophilia is caused by mutations in coagulation factor VIII (hemophi...
Hemophilia A and B are X-linked monogenic disorders caused by deficiencies in coagulation factor VII...
Developing adeno-associated viral (AAV)–mediated gene therapy for hemophilia A (HA) has been challen...