Trabectedin Overrides Osteosarcoma Differentiative Block and Reprograms the Tumor Immune Environment Enabling
Chiara Ratti1, Laura Botti1, Valeria Cancila2
1Molecular Immunology Unit, Department of Experimental Oncology and Molecular Medicine, Fondazione IRCCS Istituto Nazionale dei Tumori, Milano, Italy.
Abstract:
Purpose: Osteosarcoma, the most common primary bone tumor, is characterized by an aggressive behavior with high tendency to develop lung metastases as well as by multiple genetic aberrations that have hindered the development of targeted therapies. New therapeutic approaches are urgently needed; however, novel combinations with immunotherapies and checkpoint inhibitors require suitable preclinical models with intact immune systems to be properly tested.Experimental Design: We have developed immunocompetent osteosarcoma models that grow orthotopically in the bone and spontaneously metastasize to the lungs, mimicking human osteosarcoma. These models have been used to test the efficacy of trabectedin, a chemotherapeutic drug utilized clinically for sarcomas and ovarian cancer.Results: Trabectedin, as monotherapy, significantly inhibited osteosarcoma primary tumor growth and lung metastases by both targeting neoplastic cells and reprogramming the tumor immune microenvironment. Specifically, trabectedin induced a striking differentiation of tumor cells by favoring the recruitment of Runx2, the master genetic regulator of osteoblastogenesis, on the promoter of genes involved in the physiologic process of terminal osteoblast differentiation. Differentiated neoplastic cells, as expected, showed reduced proliferation rate. Concomitantly, trabectedin enhanced the number of tumor-infiltrating T lymphocytes, with local CD8 T cells, however, likely post-activated or exhausted, as suggested by their high expression of the inhibitory checkpoint molecule PD-1. Accordingly, the combination with a PD-1-blocking antibody significantly increased trabectedin efficacy in controlling osteosarcoma progression.Conclusions: These results demonstrate the therapeutic efficacy of trabectedin in osteosarcoma treatment, unveiling its multiple activities and providing a solid rationale for its combination with immune checkpoint inhibitors. Clin Cancer Res; 23(17); 5149-61. ©2017 AACR.
Insights
Trabectedin effectively treats osteosarcoma by reducing tumor growth and lung metastasis. This chemotherapy drug also enhances the immune response and shows promise when combined with PD-1 checkpoint inhibitors for better cancer control.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Osteosarcoma is a common bone cancer with poor prognosis due to metastasis.
- Existing treatments are limited, and new therapies, especially those involving immunotherapy, require effective preclinical models.
Purpose of the Study:
- To develop immunocompetent osteosarcoma models that mimic human disease.
- To evaluate the efficacy of trabectedin, a chemotherapy drug, in these models.
- To explore the combination of trabectedin with PD-1 blockade.
Main Methods:
- Development of orthotopic immunocompetent osteosarcoma models.
- Administration of trabectedin as monotherapy and in combination with PD-1 blockade.
- Analysis of tumor growth, metastasis, cellular differentiation, and immune cell infiltration (T lymphocytes, CD8 T cells, PD-1 expression).
Main Results:
- Trabectedin significantly inhibited primary tumor growth and lung metastasis.
- Trabectedin induced osteosarcoma cell differentiation by recruiting Runx2, reducing proliferation.
- Trabectedin increased tumor-infiltrating T lymphocytes and PD-1 expression on CD8 T cells.
- Combination therapy with PD-1 blockade enhanced trabectedin's efficacy.
Conclusions:
- Trabectedin demonstrates therapeutic efficacy in osteosarcoma.
- Trabectedin exhibits dual action: direct tumor targeting and immune microenvironment modulation.
- The findings support combining trabectedin with immune checkpoint inhibitors for osteosarcoma treatment.
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