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Generation of Multivirus-specific T Cells to Prevent/treat Viral Infections after Allogeneic Hematopoietic Stem Cell Transplant
Published on: May 27, 2011
Establishment of parameters for optimal transduction efficiency and antitumor effects with purified high-titer HSV-TK
W R Smiley1, B Laubert, B D Howard
1Cancer Therapeutics Group, Chiron Technologies Center For Gene Therapy, San Diego, CA 92121, USA.
Abstract:
Suicide gene therapy using the herpes simplex thymidine kinase gene and ganciclovir is an attractive strategy for solid tumors. Early animal studies involved intratumoral injection of retroviral producer cells or unprocessed supernatant to generate an antitumor effect. Xenotransplantation of producer cells proved effective in several models, but the crude supernatants from the same cells were of insufficient titer to produce antitumor effects. We have developed new non-murine producer lines that yield replication-defective retroviral vectors encoding thymidine kinase at high titer which are then further purified and processed, resulting in pharmaceutical grade retroviral vectors with titers of up to 10(8) cfu/ml. Purified, high-titer retroviral preparations were injected directly into solid tumors in two syngeneic mouse tumor models. Significant antitumor responses and some cures were observed following systemic ganciclovir therapy. Assays using monoclonal antibodies to measure thymidine kinase protein expression at the single cell level in vitro and in vivo were developed so that therapeutic transgene expression could be quantified. Intralesional delivery resulted in transduction of over 20% of tumor cells in a protocol designed to maximize transduction on the basis of separate analyses of route, dosage, and schedule of vector administration. A consensus strategy evolved in which the combined effects of increased titer and a longer duration of retroviral vector administration interact to maximize transduction efficiency. These results indicate that purified high-titer retroviral vectors have the potential to transfer effective quantities of therapeutic genes into solid tumors in human subjects and highlight some pharmacologic factors that could be valuable in the design of clinical gene therapy protocols.
Insights
High-titer retroviral vectors carrying the herpes simplex thymidine kinase gene show promise for solid tumor suicide gene therapy. Purified vectors delivered intratumorally achieved significant antitumor effects and cures in mouse models.
Area of Science:
- Oncology
- Gene Therapy
- Virology
Background:
- Suicide gene therapy using herpes simplex thymidine kinase (HSV-TK) and ganciclovir is a promising strategy for solid tumors.
- Previous studies using retroviral producer cells or crude supernatants showed limited efficacy due to low vector titers.
Purpose of the Study:
- To develop and evaluate purified, high-titer retroviral vectors for enhanced suicide gene therapy in solid tumors.
- To optimize vector delivery and administration for maximizing tumor cell transduction.
Main Methods:
- Development of novel non-murine producer cell lines yielding high-titer, replication-defective retroviral vectors encoding HSV-TK.
- Purification and processing of vectors to pharmaceutical grade (up to 10(8) cfu/ml).
- Intratumoral injection of purified vectors into syngeneic mouse tumor models, followed by systemic ganciclovir administration.
- Development of monoclonal antibody assays to quantify HSV-TK protein expression at the single-cell level.
Main Results:
- Intratumoral delivery of purified, high-titer retroviral vectors resulted in significant antitumor responses and cures in mouse models.
- Transduction of over 20% of tumor cells was achieved with optimized delivery protocols.
- Increased vector titer and prolonged administration duration were identified as key factors for maximizing transduction efficiency.
Conclusions:
- Purified, high-titer retroviral vectors are effective for delivering therapeutic genes into solid tumors.
- These findings support the potential of this approach for clinical gene therapy in human subjects.
- Pharmacologic factors influencing vector administration are crucial for successful gene therapy protocol design.

