Transient depletion of specific immune cell populations to improve adenovirus-mediated transgene expression in the liver. 2015

Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
Division of Hepatology and Gene Therapy, CIMA, Foundation for Applied Medical Research, University of Navarra, Pamplona, Spain.

OBJECTIVE Adenoviral (Ad) vectors are currently one of the most efficient tools for in vivo gene transfer to the liver. However, anti-Ad immune responses limit the safety and efficacy of these vectors. The initial inflammatory reaction is a concern in terms of toxicity, and it favours the development of cellular and humoral responses leading to short transgene persistence and inefficient vector re-administrations. Therefore, safe and simple ways to interfere with these processes are needed. Study ways to deplete specific immune cell populations and their impact on liver-directed gene transfer. METHODS First-generation Ad vectors encoding reporter genes (luciferase or β-galactosidase) were injected intravenously into Balb/c mice. Kupffer cells and splenic macrophages were depleted by intravenous administration of clodronate liposomes. B lymphocytes, CD4(+) , CD8(+) T lymphocytes or NK cells were depleted by intraperitoneal injection of anti-M plus anti-D, anti-CD4, anti-CD8 or anti-asialo-GM1 antibodies respectively. Long-term evolution of luciferase expression in the liver was monitored by bioluminescence imaging. RESULTS The anti-CD4 monoclonal antibody impaired cellular and humoral immune responses, leading to efficient vector re-administration. Clodronate liposomes had no impact on humoral responses but caused a 100-1000 fold increase in liver transduction, stabilized transgene expression, reduced the concentration of inflammatory cytokines, and inhibited lymphocyte activation. CONCLUSIONS Transient CD4(+) T-cell depletion using antibodies is a clinically feasible procedure that allows efficient Ad redosing. Systemic administration of clodronate liposomes may further increase the safety and efficacy of vectors.

UI MeSH Term Description Entries
D007166 Immunosuppressive Agents Agents that suppress immune function by one of several mechanisms of action. Classical cytotoxic immunosuppressants act by inhibiting DNA synthesis. Others may act through activation of T-CELLS or by inhibiting the activation of HELPER CELLS. While immunosuppression has been brought about in the past primarily to prevent rejection of transplanted organs, new applications involving mediation of the effects of INTERLEUKINS and other CYTOKINES are emerging. Immunosuppressant,Immunosuppressive Agent,Immunosuppressants,Agent, Immunosuppressive,Agents, Immunosuppressive
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D008156 Luciferases Enzymes that oxidize certain LUMINESCENT AGENTS to emit light (PHYSICAL LUMINESCENCE). The luciferases from different organisms have evolved differently so have different structures and substrates. Luciferase
D008212 Lymphocyte Depletion Immunosuppression by reduction of circulating lymphocytes or by T-cell depletion of bone marrow. The former may be accomplished in vivo by thoracic duct drainage or administration of antilymphocyte serum. The latter is performed ex vivo on bone marrow before its transplantation. Depletion, Lymphocyte
D008807 Mice, Inbred BALB C An inbred strain of mouse that is widely used in IMMUNOLOGY studies and cancer research. BALB C Mice, Inbred,BALB C Mouse, Inbred,Inbred BALB C Mice,Inbred BALB C Mouse,Mice, BALB C,Mouse, BALB C,Mouse, Inbred BALB C,BALB C Mice,BALB C Mouse
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D004002 Clodronic Acid A diphosphonate which affects calcium metabolism. It inhibits bone resorption and soft tissue calcification. Clodronate,Dichloromethylene Diphosphonate,Bonefos,Cl2MDP,Clodronate Disodium,Clodronate Sodium,Dichloromethane Diphosphonate,Dichloromethanediphosphonate,Dichloromethanediphosphonic Acid,Dichloromethylene Biphosphonate,Dichloromethylenebisphosphonate,Acid, Clodronic,Acid, Dichloromethanediphosphonic,Biphosphonate, Dichloromethylene,Diphosphonate, Dichloromethane,Diphosphonate, Dichloromethylene,Disodium, Clodronate,Sodium, Clodronate
D005260 Female Females
D005786 Gene Expression Regulation Any of the processes by which nuclear, cytoplasmic, or intercellular factors influence the differential control (induction or repression) of gene action at the level of transcription or translation. Gene Action Regulation,Regulation of Gene Expression,Expression Regulation, Gene,Regulation, Gene Action,Regulation, Gene Expression

Related Publications

Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
October 1997, Investigative ophthalmology & visual science,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
March 1999, Human gene therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
July 2001, Molecular therapy : the journal of the American Society of Gene Therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
May 1999, Human gene therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
May 1997, Gene therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
February 2010, Journal of visualized experiments : JoVE,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
April 2005, Current gene therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
August 2005, Molecular therapy : the journal of the American Society of Gene Therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
May 2001, Molecular therapy : the journal of the American Society of Gene Therapy,
Pilar Alzuguren, and Sandra Hervas-Stubbs, and Gloria Gonzalez-Aseguinolaza, and Joanna Poutou, and Puri Fortes, and Uxua Mancheno, and Maria Bunuales, and Cristina Olagüe, and Nerea Razquin, and Nico Van Rooijen, and Monica Enguita, and Ruben Hernandez-Alcoceba
July 2001, Human gene therapy,
Copied contents to your clipboard!