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Updated: Aug 8, 2026

Ex Vivo Infection of Live Tissue with Oncolytic Viruses
Published on: June 25, 2011
Replication-selective oncolytic viruses in the treatment of cancer
Bart Everts1, Henk G van der Poel
1Department of Biomedical sciences, University of Amsterdam, Kruislaan 318, 1098 SM, Amsterdam, The Netherlands.
Abstract:
In the search for novel strategies, oncolytic virotherapy has recently emerged as a viable approach to specifically kill tumor cells. Unlike conventional gene therapy, it uses replication competent viruses that are able to spread through tumor tissue by virtue of viral replication and concomitant cell lysis. Recent advances in molecular biology have allowed the design of several genetically modified viruses, such as adenovirus and herpes simplex virus that specifically replicate in, and kill tumor cells. On the other hand, viruses with intrinsic oncolytic capacity are also being evaluated for therapeutic purposes. In this review, an overview is given of the general mechanisms and genetic modifications by which these viruses achieve tumor cell-specific replication and antitumor efficacy. However, although generally the oncolytic efficacy of these approaches has been demonstrated in preclinical studies the therapeutic efficacy in clinical trails is still not optimal. Therefore, strategies are evaluated that could further enhance the oncolytic potential of conditionally replicating viruses. In this respect, the use of tumor-selective viruses in conjunction with other standard therapies seems most promising. However, still several hurdles regarding clinical limitations and safety issues should be overcome before this mode of therapy can become of clinical relevance.
Insights
Oncolytic virotherapy uses replication-competent viruses to kill tumor cells. Combining these tumor-selective viruses with other therapies shows promise, but clinical hurdles remain.
Area of Science:
- Oncology
- Virology
- Gene Therapy
Background:
- Oncolytic virotherapy is an emerging strategy for targeted tumor cell destruction.
- It utilizes replication-competent viruses that spread within tumors, causing cell lysis.
- Genetically modified viruses (e.g., adenovirus, herpes simplex virus) and naturally oncolytic viruses are being developed.
Purpose of the Study:
- To review mechanisms and genetic modifications enabling tumor-specific viral replication and antitumor efficacy.
- To evaluate strategies for enhancing the therapeutic potential of conditionally replicating viruses.
- To discuss the combination of oncolytic virotherapy with standard treatments.
Main Methods:
- Overview of general mechanisms of oncolytic viruses.
- Analysis of genetic modifications for tumor-specific replication.
- Evaluation of strategies to improve therapeutic efficacy.
Main Results:
- Preclinical studies demonstrate oncolytic efficacy of these viral approaches.
- Clinical trial efficacy remains suboptimal.
- Combining tumor-selective viruses with standard therapies appears most promising.
Conclusions:
- Oncolytic virotherapy offers a novel approach to cancer treatment.
- Enhancing viral oncolytic potential requires further research and development.
- Overcoming clinical limitations and safety concerns is crucial for therapeutic relevance.
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