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PMID: 21520180 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Hepatocyte-targeted expression by integrase-defective lentiviral vectors induces antigen-specific tolerance in mice with low genotoxic risk.

Hepatology (Baltimore, Md.) ·Vol. 53 ·No. 5 ·2011-05-00 ·Pages 1696-707

Mátrai J, Cantore A, Bartholomae CC, Annoni A, Wang W, Acosta-Sanchez A, Samara-Kuko E, De Waele L, Ma L, Genovese P, Damo M, Arens A, Goudy K, Nichols TC, von Kalle C, L Chuah MK, Roncarolo MG, Schmidt M, Vandendriessche T, Naldini L

Abstract

Lentiviral vectors are attractive tools for liver-directed gene therapy because of their capacity for stable gene expression and the lack of preexisting immunity in most human subjects. However, the use of integrating vectors may raise some concerns about the potential risk of insertional mutagenesis. Here we investigated liver gene transfer by integrase-defective lentiviral vectors (IDLVs) containing an inactivating mutation in the integrase (D64V). Hepatocyte-targeted expression using IDLVs resulted in the sustained and robust induction of immune tolerance to both intracellular and secreted proteins, despite the reduced transgene expression levels in comparison with their integrase-competent vector counterparts. IDLV-mediated and hepatocyte-targeted coagulation factor IX (FIX) expression prevented the induction of neutralizing antibodies to FIX even after antigen rechallenge in hemophilia B mice and accounted for relatively prolonged therapeutic FIX expression levels. Upon the delivery of intracellular model antigens, hepatocyte-targeted IDLVs induced transgene-specific regulatory T cells that contributed to the observed immune tolerance. Deep sequencing of IDLV-transduced livers showed only rare genomic integrations that had no preference for gene coding regions and occurred mostly by a mechanism inconsistent with residual integrase activity. IDLVs provide an attractive platform for the tolerogenic expression of intracellular or secreted proteins in the liver with a substantially reduced risk of insertional mutagenesis.

MeSH Terms
Animals Cells, Cultured DNA Damage Epitopes Female Genetic Vectors/genetics Hepatocytes/virology Humans Immune Tolerance/genetics Integrases/genetics Lentivirus/enzymology Mice Mice, Inbred BALB C Risk
Chemicals
Epitopes Integrases
Authors & Affiliations
20 authors, click to expand affiliations / ORCID
Mátrai Janka
Free University of Brussels, Brussels, Belgium.
Cantore Alessio
Bartholomae Cynthia C
Annoni Andrea
Wang Wei
Acosta-Sanchez Abel
Samara-Kuko Ermira
De Waele Liesbeth
Ma Ling
Genovese Pietro
Damo Martina
Arens Anne
Goudy Kevin
Nichols Timothy C
von Kalle Christof
L Chuah Marinee K
Roncarolo Maria Grazia
Schmidt Manfred
Vandendriessche Thierry
Naldini Luigi
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Article Info
Journal
Hepatology (Baltimore, Md.)
Abbr.
Hepatology
ISSN
1527-3350
Published
2011-05-00
Pages
1696-707
Language
English
Region
United States
NLM ID
8302946
PMCID
PMC3112259
Subset
IM
Grants
NHLBI NIH HHS · R24 HL063098 · United States
Telethon · TGT11D03 · Italy
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