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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
An oncolytic adenovirus expressing soluble transforming growth factor-beta type II receptor for targeting breast
Zhen-Guo Wang1, Wenli Zhao, Murali Ramachandra
1Laboratory of Gene Therapy, Evanston Northwestern Healthcare Research Institute, Evanston Hospital, Room B624, 2650 Ridge Avenue, Evanston, IL 60201, USA.
Abstract:
In recent years, adenoviruses that selectively replicate in tumor cells have been developed. However, there is a tremendous need to improve their anticancer efficacy. We wish to investigate whether a strategy that combines the oncolytic effects of an adenoviral vector with simultaneous expression of soluble form of transforming growth factor-beta type II receptor (sTGFbetaRII) offers a therapeutic advantage. We chose to target TGF-betas because they play a pivotal role in late-stage tumorigenesis by enhancing tumor invasion and metastasis. A sTGFbetaRII cDNA was cloned in conditionally replicating adenoviral vector rAd-sTRII and in a replication-deficient adenovirus Ad-sTRII. Infection of MDA-MB-231 breast cancer cells with rAd-sTRII or Ad-sTRII followed by Western blot analysis indicated the expression of diffused glycosylated forms of sTGFbetaRII that were also secreted into the extracellular medium. The secreted proteins were shown to bind with TGF-beta and antagonize TGF-beta-induced p38 mitogen-activated protein kinase activity. However, marked differences in the replication potential of rAd-sTRII and Ad-sTRII were observed in breast tumor cells. Infection of MDA-MB-231 cells with rAd-sTRII resulted in cytotoxicity and significant increase in the adenoviral titers that were comparable with a wild-type adenovirus dl309. However, Ad-sTRII was much less toxic to the tumor cells, and the viral titers of Ad-sTRII remained relatively unchanged. These results suggest that the infection of breast tumor cells with conditionally replicating adenoviral vector rAd-sTRII produced sTGFbetaRII that can abrogate TGF-beta signaling while maintaining the replication potential of the virus, indicating that rAd-sTRII could be a potential anticancer agent.
Insights
This study explores combining oncolytic adenoviruses with soluble transforming growth factor-beta type II receptor (sTGFbetaRII) to enhance cancer treatment. The conditionally replicating adenovirus rAd-sTRII showed promise by reducing tumor cells and blocking TGF-beta signaling.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Adenoviruses are being developed for selective tumor cell replication.
- Improving the anticancer efficacy of oncolytic adenoviruses is crucial.
- Transforming growth factor-beta (TGF-beta) promotes tumor invasion and metastasis.
Purpose of the Study:
- To investigate the therapeutic advantage of combining oncolytic adenoviruses with soluble transforming growth factor-beta type II receptor (sTGFbetaRII).
- To assess the efficacy of a conditionally replicating adenoviral vector expressing sTGFbetaRII (rAd-sTRII) against breast cancer cells.
Main Methods:
- Cloned sTGFbetaRII cDNA into a conditionally replicating adenoviral vector (rAd-sTRII) and a replication-deficient adenovirus (Ad-sTRII).
- Infected MDA-MB-231 breast cancer cells and analyzed sTGFbetaRII expression and secretion via Western blot.
- Assessed the binding of secreted sTGFbetaRII to TGF-beta and its ability to antagonize TGF-beta signaling.
- Compared the replication potential and cytotoxicity of rAd-sTRII and Ad-sTRII in breast tumor cells.
Main Results:
- rAd-sTRII and Ad-sTRII expressed and secreted functional sTGFbetaRII, which bound TGF-beta and inhibited its signaling.
- rAd-sTRII demonstrated significant cytotoxicity and increased viral titers in MDA-MB-231 cells, comparable to wild-type adenovirus.
- Ad-sTRII showed limited tumor cell toxicity and minimal viral replication.
Conclusions:
- The conditionally replicating adenoviral vector rAd-sTRII effectively expresses sTGFbetaRII, abrogates TGF-beta signaling, and maintains viral replication potential.
- rAd-sTRII represents a promising potential anticancer agent for breast cancer treatment.
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