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Blocking the interleukin 2 (IL2)-induced systemic autophagic syndrome promotes profound antitumor effects and limits
Michael T Lotze1, William J Buchser, Xiaoyan Liang
1The DAMP Laboratory, Department of Surgery, Hillman Cancer Center, University of Pittsburgh Cancer Institute, University of Pittsburgh, Pittsburgh, PA, USA. lotzemt@upcm.edu
Abstract:
Cancer is the leading cause of death in the United States in those dying under the age of 85. Although cancer is increasingly controlled as a chronic disease, true cures of patients with metastatic epithelial malignancies have rarely been obtained with currently available systemic therapies. For example, administration of high-dose recombinant interleukin 2 (IL2), enhancing cytolytic immune cell proliferation and delivery, promotes complete antitumor responses in < 10% of treated individuals. Means to reduce the toxicity, attributed to a cytokine storm and an associated "systemic autophagic syndrome" as well as enhance efficacy and increase the potential set of malignancies in which it is applied (currently patients with renal cancer and melanoma) would be of great interest. IL2 promotes both T-cell and NK cell induction of immune cell-mediated autophagy (iC-MA) in tumor targets. We have demonstrated that HMGB1 is detected at high levels in the serum of IL2-treated mice with translocation to the cytoplasm from the nucleus in the liver, consistent with HMGB1's release in response to stress, and ability to sustain autophagy. Limiting autophagy in mice with coadministration of chloroquine (CQ) diminishes serum levels of HMGB1, cytokines (IFNG and IL6 but not IL18), and autophagic flux, attenuating weight gain, enhancing DC, T-cell and NK cell numbers, and promoting long-term tumor control in a murine hepatic metastases model. Autophagy (programmed cell survival) is a metabolic process associated with promotion of late cancer growth. In tumor cell lines, CQ treatment limits ATP production through inhibition of oxidative phosphorylation and promotion of apoptosis. CQ increases autophagic vacuoles and LC3-II levels in tumor cells, associated with increased annexin V(+)/PI(-) cells, cleaved-PARP, cleaved-CASP3, and cytochrome c release from mitochondria. These observations, limiting toxicity and prolonging antitumor effects, with a combination of IL2 and autophagy inhibition in murine models are now being tested by the Cytokine Working Group in patients with advanced renal cell carcinoma.
Insights
Combining interleukin 2 (IL2) therapy with chloroquine (CQ) to inhibit autophagy shows promise for improving cancer treatment. This approach reduces toxicity and enhances long-term tumor control in preclinical models.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Metastatic epithelial malignancies remain difficult to cure with current systemic therapies, including high-dose interleukin 2 (IL2).
- IL2 enhances immune cell proliferation but is associated with toxicity, partly due to a "systemic autophagic syndrome" and limited efficacy in most patients.
- Autophagy, a cellular survival process, is implicated in late-stage cancer growth and may be promoted by IL2 therapy.
Purpose of the Study:
- To investigate the effects of inhibiting autophagy with chloroquine (CQ) in combination with IL2 therapy.
- To determine if this combination can reduce IL2-induced toxicity and enhance antitumor efficacy in preclinical cancer models.
Main Methods:
- Mice with hepatic metastases were treated with IL2, with or without CQ.
- Serum levels of HMGB1 and cytokines were measured.
- Autophagic flux, immune cell populations (dendritic cells, T-cells, NK cells), and tumor control were assessed.
- CQ's effects on tumor cell lines, including ATP production, oxidative phosphorylation, and apoptosis, were evaluated.
Main Results:
- Coadministration of CQ with IL2 diminished serum HMGB1, IFNG, and IL6 levels, and reduced autophagic flux.
- This combination attenuated weight gain, increased numbers of dendritic cells, T-cells, and NK cells, and promoted long-term tumor control in a murine hepatic metastases model.
- In tumor cells, CQ inhibited oxidative phosphorylation, limited ATP production, and promoted apoptosis, evidenced by increased annexin V(+)/PI(-) cells and cleaved PARP/CASP3.
Conclusions:
- Inhibiting autophagy with CQ in combination with IL2 therapy can reduce toxicity and prolong antitumor effects.
- This combination strategy demonstrates potential for improving the treatment of advanced renal cell carcinoma and potentially other malignancies.
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