Wild-Type Adenovirus Decreases Tumor Xenograft Growth, but Despite Viral Persistence Complete Tumor Responses Are Rarely Achieved—Deletion of the Viral E1b-19-kD Gene Increases the Viral Oncolytic Effect
- 1 July 2001
- journal article
- research article
- Published by Mary Ann Liebert Inc in Human Gene Therapy
- Vol. 12 (10) , 1323-1332
- https://doi.org/10.1089/104303401750270977
Abstract
Strategies to target viral replication to tumor cells hold great promise for the treatment of cancer, but even with replicating adenoviruses complete tumor responses are rarely achieved. To evaluate replicating adenoviral vectors, we have used A549 human lung cancer nude mouse xenografts as a model system. Intratumoral injection of wild-type adenovirus (Ad309) significantly reduced tumor growth from day 14 (p = 0.04) onward; however, tumor volumes reached a plateau at day 50. At 100 days, high levels of titratable virus were present within persistent viable tumors. In contrast to viral injection into established tumors, when tumor cells were infected in vitro with wild-type virus and then mixed with uninfected tumor cells, 1% of infected cells was sufficient to prevent tumor establishment. An E1b-19kD-deleted viral mutant (Ad337) was more efficient than Ad309 in this cell-mixing model. Just 1 cell in 1000 infected with Ad337 prevented tumor growth. However, although better than wild-type virus, Ad337 was unable to eradicate established flank tumors. These data suggest that although replicating adenoviruses exhibit significant oncolytic activity, barriers within the established tumor, such as connective tissue and tumor matrix, may limit the spread of virus. Strategies to enhance viral spread through established tumors are therefore likely to greatly improve the therapeutic efficacy of replicating adenoviruses.Keywords
This publication has 54 references indexed in Scilit:
- A Novel, Conditionally Replicative Adenovirus for the Treatment of Breast Cancer That Allows Controlled Replication of E1a-Deleted Adenoviral VectorsHuman Gene Therapy, 2000
- Selectivity of a replication-competent adenovirus for human breast carcinoma cells expressing the MUC1 antigenJournal of Clinical Investigation, 2000
- Deletion of the Adenoviral E1b-19kD Gene Enhances Tumor Cell Killing of a Replicating Adenoviral VectorHuman Gene Therapy, 2000
- The Hallmarks of CancerCell, 2000
- Efficacy of a replication-competent adenovirus (ONYX-015) following intratumoral injection: Intratumoral spread and distribution effectsCancer Gene Therapy, 1999
- Adenoviral vectors capable of replication improve the efficacy of HSVtk/GCV suicide gene therapy of cancerGene Therapy, 1999
- Role of Alveolar Macrophages in Rapid Elimination of Adenovirus Vectors Administered to the Epithelial Surface of the Respiratory TractHuman Gene Therapy, 1997
- Integrins αvβ3 and αvβ5 promote adenovirus internalization but not virus attachmentCell, 1993
- Tumor-suppressor p53 and the cell cycleCurrent Opinion in Genetics & Development, 1993
- In vivo transfer of the human cystic fibrosis transmembrane conductance regulator gene to the airway epitheliumCell, 1992