Literature DB >> 16449680

Dynamic monitoring of oncolytic adenovirus in vivo by genetic capsid labeling.

Long P Le1, Helen N Le, Igor P Dmitriev, Julia G Davydova, Tatyana Gavrikova, Seiji Yamamoto, David T Curiel, Masato Yamamoto.   

Abstract

BACKGROUND: Conditionally replicative adenoviruses represent a promising strategy to address the limited efficacy and safety issues associated with conventional cancer treatment. Despite rapid translation into human clinical trials and demonstrated safety, the fundamental properties of oncolytic adenovirus replication and spread and host-vector interactions in vivo have not been completely evaluated.
METHODS: We developed a noninvasive dynamic monitoring system to detect adenovirus replication. We constructed capsid-labeled E1/E3-deleted and wild-type adenoviruses (Ad-wt) by fusing the minor capsid protein IX with red fluorescent proteins mRFP1 and tdimer2(12), resulting in Ad-IX-mRFP1, Ad-IX-tdimer2(12), and Ad-wt-IX-mRFP1. Virus DNA replication, encapsidation, cytopathic effect, thermostability, and binding to primary receptor (coxsackie adenovirus receptor) were analyzed using real-time quantitative polymerase chain reaction, cell viability (MTS) assay, and fluorescence microscopy. Athymic mice (n = 4) carrying xenograft tumors that were derived from A549 lung adenocarcinoma cells were intratumorally inoculated with Ad-wt-IX-mRFP1, and adenovirus replication was dynamically monitored with a fluorescence noninvasive imaging system. Correlations between fluorescence signal intensity and viral DNA synthesis and replication were calculated using Pearson's correlation coefficient (r).
RESULTS: The red fluorescence label had little effect on viral DNA replication, encapsidation, cytopathic effect, thermostability, and coxsackie adenovirus receptor binding. The fluorescent signal correlated with viral DNA synthesis and infectious progeny production both in vitro and in vivo (in A549 cells, r = .99 and r = .65; in tumors, r = .93 and r = .92, respectively). The replication efficiency of Ad-wt-IX-mRFP1 in vivo was variable, and replication and viral spreading and persistence were limited, consistent with clinical observations.
CONCLUSIONS: Genetic capsid labeling provides a promising approach for the dynamic assessment of oncolytic adenovirus function in vivo.

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Year:  2006        PMID: 16449680     DOI: 10.1093/jnci/djj022

Source DB:  PubMed          Journal:  J Natl Cancer Inst        ISSN: 0027-8874            Impact factor:   13.506


  23 in total

Review 1.  Advanced generation adenoviral virotherapy agents embody enhanced potency based upon CAR-independent tropism.

Authors:  J Michael Mathis; Phoebe L Stewart; Zheng B Zhu; David T Curiel
Journal:  Clin Cancer Res       Date:  2006-05-01       Impact factor: 12.531

2.  Genetic incorporation of a herpes simplex virus type 1 thymidine kinase and firefly luciferase fusion into the adenovirus protein IX for functional display on the virion.

Authors:  Qiana L Matthews; Don A Sibley; Hongju Wu; Jing Li; Mariam A Stoff-Khalili; Reinhard Waehler; J Michael Mathis; David T Curiel
Journal:  Mol Imaging       Date:  2006 Oct-Dec       Impact factor: 4.488

3.  Cryoelectron microscopy of protein IX-modified adenoviruses suggests a new position for the C terminus of protein IX.

Authors:  Michael P Marsh; Samuel K Campos; Matthew L Baker; Christopher Y Chen; Wah Chiu; Michael A Barry
Journal:  J Virol       Date:  2006-09-20       Impact factor: 5.103

Review 4.  Current advances and future challenges in Adenoviral vector biology and targeting.

Authors:  Samuel K Campos; Michael A Barry
Journal:  Curr Gene Ther       Date:  2007-06       Impact factor: 4.391

Review 5.  Molecular engineering of viral gene delivery vehicles.

Authors:  David V Schaffer; James T Koerber; Kwang-il Lim
Journal:  Annu Rev Biomed Eng       Date:  2008       Impact factor: 9.590

Review 6.  Current issues and future directions of oncolytic adenoviruses.

Authors:  Masato Yamamoto; David T Curiel
Journal:  Mol Ther       Date:  2009-11-24       Impact factor: 11.454

7.  Noninvasive monitoring of mRFP1- and mCherry-labeled oncolytic adenoviruses in an orthotopic breast cancer model by spectral imaging.

Authors:  Anton V Borovjagin; Lacey R McNally; Minghui Wang; David T Curiel; Mary J MacDougall; Kurt R Zinn
Journal:  Mol Imaging       Date:  2010-04       Impact factor: 4.488

8.  Targeting of adenovirus serotype 5 pseudotyped with short fiber from serotype 41 to c-erbB2-positive cells using bispecific single-chain diabody.

Authors:  Elena A Kashentseva; Joanne T Douglas; Kurt R Zinn; David T Curiel; Igor P Dmitriev
Journal:  J Mol Biol       Date:  2009-03-13       Impact factor: 5.469

9.  Derivation of a triple mosaic adenovirus for cancer gene therapy.

Authors:  Yizhe Tang; Hongju Wu; Hideyo Ugai; Qiana L Matthews; David T Curiel
Journal:  PLoS One       Date:  2009-12-31       Impact factor: 3.240

10.  Evaluation of adenovirus capsid labeling versus transgene expression.

Authors:  Jing Li; Aiman Fatima; Svetlana Komarova; Hideyo Ugai; Priyanka Uprety; Justin C Roth; Minghui Wang; Robert A Oster; David T Curiel; Qiana L Matthews
Journal:  Virol J       Date:  2010-01-26       Impact factor: 4.099

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