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Updated: May 20, 2025

Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
mTOR inhibition modulates vaccine-induced immune responses to generate memory T cells in patients with solid tumors
Henry G Withers1, Junko Matsuzaki2,3, Mark Long1
1Department of Biostatistics and Bioinformatics, Roswell Park Comprehensive Cancer Center, Buffalo, New York, USA.
Background:
Perturbation of the mechanistic target of rapamycin (mTOR) pathway can instruct effector versus memory cell fate of tumor antigen-specific T cells in preclinical models. In this study, we sought to understand the impact of rapamycin (sirolimus), an mTOR inhibitor, on reprogramming vaccine-induced T cells to enhance memory responses in patients with solid tumors following completion of their standard therapy.
Methods:
We conducted three phase I clinical trials employing New York esophageal squamous cell carcinoma-1 (NY-ESO-1) vaccination approaches, with or without schedule-varied rapamycin. T cell phenotypes, functions, and Vβ usage in peripheral blood were analyzed to ask whether rapamycin influenced the generation of vaccine-induced T cells with memory attributes.
Results:
The addition of rapamycin to all vaccination approaches was safe and well tolerated. Immediate (days 1-14 postvaccination) or delayed (days 15-28 postvaccination) administration of rapamycin led to a significant increase in the generation of vaccine-induced NY-ESO-1-specific T cells exhibiting central memory phenotypes (CD45RO+CD45RA- CCR7+). Moreover, delayed administration resulted in a greater than threefold (p=0.025) and eightfold (p=0.005) increase in the frequency of NY-ESO-1-specific CD4+ T and CD8+ T cells respectively at the time of long-term follow-up, compared with its immediate usage.
Conclusion:
Our novel finding is that delayed administration of rapamycin to patients during the contraction phase of vaccine-induced antitumor immune responses was particularly effective in increasing the frequency of memory T cells up to 1 year postvaccination in patients with solid tumors. Further studies are warranted to identify the impact of this approach on the durability of clinical remission.
Trial Registration Number:
NCT00803569, NCT01536054, NCT01522820.
Insights
Delayed administration of rapamycin (an mTOR inhibitor) significantly boosted memory T cell responses in cancer patients receiving vaccines. This approach enhanced the generation of long-lasting tumor-specific T cells, improving immune memory for solid tumors.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- The mechanistic target of rapamycin (mTOR) pathway influences T cell fate.
- Rapamycin (sirolimus) is an mTOR inhibitor with potential to enhance T cell memory.
- Understanding rapamycin's impact on vaccine-induced T cells in cancer patients is crucial.
Purpose of the Study:
- To investigate the effect of rapamycin on reprogramming vaccine-induced T cells.
- To enhance memory responses in patients with solid tumors post-therapy.
- To determine optimal rapamycin administration schedules for T cell memory.
Main Methods:
- Phase I clinical trials involving NY-ESO-1 vaccination with varied rapamycin schedules.
- Analysis of T cell phenotypes, functions, and Vβ usage in peripheral blood.
- Assessment of rapamycin's influence on generating vaccine-induced T cells with memory attributes.
Main Results:
- Rapamycin administration was safe and well-tolerated in all vaccination approaches.
- Both immediate and delayed rapamycin increased central memory T cells (CD45RO+CD45RA-CCR7+).
- Delayed rapamycin (days 15-28) significantly increased CD4+ and CD8+ T cell frequencies at long-term follow-up compared to immediate use.
Conclusions:
- Delayed rapamycin administration during the contraction phase of immune response enhances memory T cell frequency up to one year post-vaccination.
- This strategy is effective in patients with solid tumors.
- Further research is needed to evaluate the impact on clinical remission durability.
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