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Radial Mobility and Cytotoxic Function of Retroviral Replicating Vector Transduced, Non-adherent Alloresponsive T Lymphocytes
Published on: February 11, 2015
Molecular Analyses Support the Safety and Activity of Retroviral Replicating Vector Toca 511 in Patients
Daniel J Hogan1, Jay-Jiguang Zhu2, Oscar R Diago3
1Tocagen Inc., San Diego, California. dhogan@tocagen.com dostertag@tocagen.com.
Abstract:
Purpose: Toca 511 is a gammaretroviral replicating vector encoding cytosine deaminase that selectively infects tumor cells and converts the antifungal drug 5-fluorocytosine into the antineoplastic drug 5-fluorouracil, which directly kills tumor cells and stimulates antitumor immune responses. As part of clinical monitoring of phase I clinical trials in recurrent high-grade glioma, we have performed extensive molecular analyses of patient specimens to track vector fate.Patients and Methods: Toca 511 and Toca FC (extended-release 5-fluorocytosine) have been administered to 127 high-grade glioma patients across three phase I studies. We measured Toca 511 RNA and DNA levels in available body fluids and tumor samples from patients to assess tumor specificity. We mapped Toca 511 integration sites and sequenced integrated Toca 511 genomes from patient samples with detectable virus. We measured Toca 511 levels in a diverse set of tissue samples from one patient.Results: Integrated Toca 511 is commonly detected in tumor samples and is only transiently detected in blood in a small fraction of patients. There was no believable evidence for clonal expansion of cells with integrated Toca 511 DNA, or preferential retrieval of integration sites near oncogenes. Toca 511 sequence profiles suggest most mutations are caused by APOBEC cytidine deaminases acting during reverse transcription. Tissue samples from a single whole-body autopsy affirm Toca 511 tumor selectivity.Conclusions: Toca 511 and Toca FC treatment was not associated with inappropriate integration sites and clonal expansion. The vector is tumor-selective and persistent in patients who received Toca 511 injections. Clin Cancer Res; 24(19); 4680-93. ©2018 AACR.
Insights
Toca 511, a gene therapy vector, selectively targets brain tumors and converts a drug into cancer-killing agents. Molecular analyses confirm its tumor specificity and persistence in patients, with no evidence of harmful genetic alterations.
Area of Science:
- Oncology
- Gene Therapy
- Virology
Background:
- Recurrent high-grade glioma presents significant treatment challenges.
- Novel therapeutic strategies are needed to improve patient outcomes.
Purpose of the Study:
- To evaluate the safety and efficacy of Toca 511, a gammaretroviral replicating vector, in patients with high-grade glioma.
- To track the vector's fate and assess its tumor specificity in clinical trials.
Main Methods:
- Administered Toca 511 and Toca FC to 127 high-grade glioma patients across three phase I studies.
- Measured Toca 511 RNA and DNA levels in patient body fluids and tumor samples.
- Mapped Toca 511 integration sites and sequenced integrated viral genomes.
Main Results:
- Integrated Toca 511 was frequently detected in tumor samples, with transient detection in blood.
- No evidence of clonal expansion or integration near oncogenes was observed.
- Whole-body autopsy confirmed Toca 511's tumor selectivity and persistence.
Conclusions:
- Toca 511 and Toca FC treatment demonstrated tumor selectivity and persistence.
- The vector did not associate with adverse integration sites or clonal expansion.
- This gene therapy approach shows promise for treating high-grade glioma.
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