Literature DB >> 12457287

Encapsulation of recombinant adenovirus into alginate microspheres circumvents vector-specific immune response.

G Sailaja1, H HogenEsch, A North, J Hays, S K Mittal.   

Abstract

Pre-existing immunity against adenoviruses may compromise the efficacy of adenoviral vectors for vaccination and gene therapy. The purpose of this study was to determine whether encapsulation of adenovirus recombinants into biodegradable alginate microparticles could circumvent the vector-specific immune response. Mice were immunized either intranasally (i.n.) or intraperitoneally (i.p.) with human adenovirus type 5 (HAd5), resulting in the development of virus-specific antibodies. Immunized and nai;ve mice were inoculated with AdCA36lacZ (an E1-deleted HAd5 recombinant containing the bacterial beta-galactosidase (LacZ) gene), encapsulated (E) into alginate microparticles, or nonencapsulated (NE) ie, as a virus suspension. LacZ expression in animals immunized once (1x) or twice (2x) with HAd5 and subsequently inoculated with NE-AdCA36lacZ (NE-Z) was significantly (P<0.001) reduced compared to those levels observed in NE-Z inoculated nai;ve mice, suggesting that the immune response against the vector adversely affected transgene expression. In contrast, there was only slight reduction (P>0.05) in LacZ expression in mice immunized 1x or 2x with HAd5 that were subsequently inoculated with E-AdCA36lacZ (E-Z) compared to those levels obtained in E-Z inoculated nai;ve animals. Similar results were obtained with i.n. or i.p. inoculated animals. These results indicate that microencapsulation of recombinant adenovirus effectively circumvented the vector-specific immune response.

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Year:  2002        PMID: 12457287      PMCID: PMC1459421          DOI: 10.1038/sj.gt.3301858

Source DB:  PubMed          Journal:  Gene Ther        ISSN: 0969-7128            Impact factor:   5.250


  47 in total

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  32 in total

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Review 4.  Applications of alginate microspheres in therapeutics delivery and cell culture: Past, present and future.

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Review 5.  Engineering biomaterial systems to enhance viral vector gene delivery.

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Review 6.  Biomaterial-Guided Gene Delivery for Musculoskeletal Tissue Repair.

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Review 8.  Evolving lessons on nanomaterial-coated viral vectors for local and systemic gene therapy.

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Journal:  Nanomedicine (Lond)       Date:  2016-06-27       Impact factor: 5.307

9.  Using viral vectors as gene transfer tools (Cell Biology and Toxicology Special Issue: ETCS-UK 1 day meeting on genetic manipulation of cells).

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