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Interleukin-2 gene-modified allogeneic tumor cells for treatment of relapsed neuroblastoma
L C Bowman1, M Grossmann, D Rill
1Department of Hematology-Oncology, St. Jude Children's Research Hospital, Memphis, TN 38105, USA.
Abstract:
Tumor cells that have been genetically modified to express immunostimulatory genes will induce effective antitumor responses in a range of syngeneic animal models. For human applications, transduced autologous tumor cell lines are often difficult or impossible to prepare, so that there are strong incentives for substituting a standardized allogeneic tumor cell line. However, such lines may be inferior immunogens if they differ from host tumors in the antigens they express. We have evaluated the safety, immunostimulatory, and antitumor activity of an interleukin-2-secreting allogeneic neuroblastoma cell line in 12 children with relapsed stage IV neuroblastoma. They received two to four subcutaneous injections of cells in a dose-escalating schedule, up to a maximum of 10(8) cells per injection. There was induration and pruritus at the injection site, and skin biopsies revealed mild panniculitis with CD3+ cells surrounding scanty residual tumor cells. There was a limited but significant peripheral monocytosis. No patient showed any increase in direct cytotoxic effector function against the immunizing cell line, but 3 patients had a rise in the frequency of neuroblastoma-reactive cytotoxic T lymphocyte precursor cells. One child had > 90% tumor response (PR), 7 had stable disease, and 4 had progressive disease in response to vaccine alone. Although these results offer some encouragement for the continued pursuit of allogeneic vaccine strategies in human cancer, the antitumor immune responses we observed are inferior to those obtained in an earlier immunization study using autologous neuroblastoma cells. Hence, we suggest that this earlier approach remains preferable, its difficulties notwithstanding.
Insights
This study explored an allogeneic neuroblastoma cell vaccine in children with advanced cancer. While showing some immune stimulation and tumor response in one child, it was less effective than autologous cell vaccines.
Area of Science:
- Immunology
- Oncology
- Cancer Vaccines
Background:
- Genetically modified tumor cells can elicit antitumor responses.
- Autologous tumor cell lines are challenging for human cancer vaccines.
- Allogeneic tumor cell lines offer a standardized alternative but may have antigen disparities.
Purpose of the Study:
- To evaluate the safety and efficacy of an interleukin-2-secreting allogeneic neuroblastoma cell line vaccine.
- To assess immunostimulatory and antitumor activity in children with relapsed stage IV neuroblastoma.
Main Methods:
- 12 children with relapsed stage IV neuroblastoma received subcutaneous injections of an interleukin-2-secreting allogeneic neuroblastoma cell line.
- Dose escalation up to 10(8) cells per injection.
- Assessed safety, peripheral monocytosis, cytotoxic effector function, and T-lymphocyte precursor cell frequency.
Main Results:
- Mild injection site reactions (induration, pruritus) and panniculitis observed.
- Limited peripheral monocytosis and no increase in direct cytotoxic effector function.
- 3 patients showed increased neuroblastoma-reactive cytotoxic T lymphocyte precursor cells.
- Tumor response: 1 partial response (>90%), 7 stable disease, 4 progressive disease.
Conclusions:
- Allogeneic vaccine strategies show some promise but induced inferior antitumor immune responses compared to autologous vaccines.
- The study suggests autologous cell-based immunotherapy remains a preferable, albeit more challenging, approach for neuroblastoma.
- Further research into optimizing allogeneic vaccine strategies is warranted.