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Rapamycin Promotes Mouse 4T1 Tumor Metastasis that Can Be Reversed by a Dendritic Cell-Based Vaccine
Tien-Jen Lin1, Wen-Miin Liang2, Pei-Wen Hsiao3
1Graduate Institute of Injury Prevention and Control, Taipei Medical University, Taipei, Taiwan, ROC; Department of Neurosurgery, Taipei Medical University-Wan Fang Hospital, Taipei, Taiwan, ROC; Agricultural Biotechnology Research Center, Academia Sinica, Taipei, Taiwan, ROC; Graduate Institute of Biotechnology, National Chung Hsing University, Taichung, Taiwan, ROC; Taiwan International Graduate Program (TIGP), Molecular and Biological Agricultural Sciences Program, Academia Sinica, Taipei, Taiwan, ROC.
Abstract:
Suppression of tumor metastasis is a key strategy for successful cancer interventions. Previous studies indicated that rapamycin (sirolimus) may promote tumor regression activity or enhance immune response against tumor targets. However, rapamycin also exhibits immunosuppressant effects and is hence used clinically as an organ transplantation drug. We hypothesized that the immunosuppressive activities of rapamycin might also negatively mediate host immunity, resulting in promotion of tumor metastasis. In this study, the effects of rapamycin and phytochemical shikonin were investigated in vitro and in vivo in a 4T1 mouse mammary tumor model through quantitative assessment of immunogenic cell death (ICD), autophagy, tumor growth and metastasis. Tumor-bearing mice were immunized with test vaccines to monitor their effect on tumor metastasis. We found that intraperitoneal (ip) administration of rapamycin after a tumor-resection surgery drastically increased the metastatic activity of 4T1 tumors. Possible correlation of this finding to human cancers was suggested by epidemiological analysis of data from Taiwan's National Health Insurance Research Database (NHIRD). Since our previous studies showed that modified tumor cell lysate (TCL)-pulsed, dendritic cell (DC)-based cancer vaccines can effectively suppress metastasis in mouse tumor models, we assessed whether such vaccines may help offset this rapamycin-promoted metastasis. We observed that shikonin efficiently induced ICD of 4T1 cells in culture, and DC vaccines pulsed with shikonin-treated TCL (SK-TCL-DC) significantly suppressed rapamycin-enhanced metastasis and Treg cell expansion in test mice. In conclusion, rapamycin treatment in mice (and perhaps in humans) promotes metastasis and the effect may be offset by treatment with a DC-based cancer vaccine.
Insights
Rapamycin (sirolimus) treatment after surgery increased cancer metastasis in mice. However, a dendritic cell (DC)-based cancer vaccine, using shikonin-treated tumor cells, effectively suppressed this rapamycin-induced metastasis.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Tumor metastasis suppression is crucial for cancer treatment.
- Rapamycin (sirolimus) has complex effects, potentially promoting regression or suppressing immunity.
- Rapamycin's immunosuppressive properties may paradoxically enhance tumor metastasis.
Purpose of the Study:
- To investigate the effects of rapamycin and shikonin on tumor metastasis.
- To assess if dendritic cell (DC)-based cancer vaccines can counteract rapamycin-induced metastasis.
- To evaluate immunogenic cell death (ICD), autophagy, tumor growth, and metastasis in a 4T1 mouse model.
Main Methods:
- In vitro and in vivo studies using a 4T1 mouse mammary tumor model.
- Quantitative assessment of immunogenic cell death (ICD), autophagy, tumor growth, and metastasis.
- Administration of rapamycin and shikonin; immunization with DC-based cancer vaccines (SK-TCL-DC).
- Epidemiological analysis of Taiwan's National Health Insurance Research Database (NHIRD).
Main Results:
- Intraperitoneal rapamycin administration significantly increased 4T1 tumor metastasis post-surgery.
- Shikonin induced ICD in 4T1 cells.
- SK-TCL-DC vaccines suppressed rapamycin-enhanced metastasis and reduced Treg cell expansion in mice.
- Epidemiological data suggested a potential correlation with human cancers.
Conclusions:
- Rapamycin treatment promotes tumor metastasis, potentially by suppressing host immunity.
- DC-based cancer vaccines pulsed with shikonin-treated tumor cells can effectively offset rapamycin-induced metastasis.
- This strategy holds promise for managing cancer metastasis in clinical settings.

