Literature DB >> 16249376

Human immunoglobulin inhibits liver transduction by AAV vectors at low AAV2 neutralizing titers in SCID mice.

Ciaran D Scallan1, Haiyan Jiang, Tongyao Liu, Susannah Patarroyo-White, Jurg M Sommer, Shangzhen Zhou, Linda B Couto, Glenn F Pierce.   

Abstract

Long-term cures of hemophilia B have been achieved using AAV2 delivering the factor IX gene to the liver of adeno-associated virus (AAV)-naive hemophilic animals. However, the clinical success of this approach requires overcoming pre-existing AAV neutralizing antibodies prevalent in humans. To better define the inhibition of neutralizing antibodies on AAV2-mediated liver transduction, we developed an in vivo passive immunity model. SCID mice were first reconstituted to a defined neutralizing titer with pooled plasma-derived human immunoglobulin. AAV2-FIX vectors then were administered to the liver, and the transduction efficiency was measured by plasma FIX levels. Unexpectedly, AAV2 neutralizing titers lower than 1:10 were sufficient to neutralize 4 to 20 x 10(12) vg/kg of AAV2 vectors in vivo, a capacity that was underestimated by in vitro neutralizing assays. We also evaluated strategies to evade neutralization, including the use of alternative delivery routes, infusion parameters, empty capsids, and alternative AAV serotypes 6 and 8. The results indicate that low AAV2 neutralizing titers can be inhibitory to the tested human and primate AAV vectors delivered into the circulatory system. Therefore, novel nonprimate AAV vectors or compartmentalized delivery may offer more consistent therapeutic effects in the presence of pre-existing AAV neutralizing antibodies.

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Year:  2005        PMID: 16249376     DOI: 10.1182/blood-2005-08-3229

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  129 in total

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5.  Mapping a neutralizing epitope onto the capsid of adeno-associated virus serotype 8.

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Journal:  J Virol       Date:  2012-05-16       Impact factor: 5.103

Review 6.  The potential of adeno-associated viral vectors for gene delivery to muscle tissue.

Authors:  Dan Wang; Li Zhong; M Abu Nahid; Guangping Gao
Journal:  Expert Opin Drug Deliv       Date:  2014-01-03       Impact factor: 6.648

7.  Adeno-associated virus serotype 9 transduction in the central nervous system of nonhuman primates.

Authors:  Lluis Samaranch; Ernesto A Salegio; Waldy San Sebastian; Adrian P Kells; Kevin D Foust; John R Bringas; Clementine Lamarre; John Forsayeth; Brian K Kaspar; Krystof S Bankiewicz
Journal:  Hum Gene Ther       Date:  2012-03-28       Impact factor: 5.695

8.  A myocardium tropic adeno-associated virus (AAV) evolved by DNA shuffling and in vivo selection.

Authors:  Lin Yang; Jiangang Jiang; Lauren M Drouin; Mavis Agbandje-McKenna; Chunlian Chen; Chunping Qiao; Dongqiuye Pu; Xiaoyun Hu; Da-Zhi Wang; Juan Li; Xiao Xiao
Journal:  Proc Natl Acad Sci U S A       Date:  2009-02-20       Impact factor: 11.205

9.  Host and vector-dependent effects on the risk of germline transmission of AAV vectors.

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10.  Cytotoxic T lymphocyte responses to transgene product, not adeno-associated viral capsid protein, limit transgene expression in mice.

Authors:  William M Siders; Jacqueline Shields; Johanne Kaplan; Michael Lukason; Lisa Woodworth; Sam Wadsworth; Abraham Scaria
Journal:  Hum Gene Ther       Date:  2009-01       Impact factor: 5.695

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