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Exploiting the DNA Damaging Activity of Liposomal Low Dose Cytarabine for Cancer Immunotherapy
Jordan D Lewicky1, Alexandrine L Martel1, Nya L Fraleigh1
1Health Sciences North Research Institute, 56 Walford Road, Sudbury, ON P3E 2H2, Canada.
Abstract:
Perhaps the greatest limitation for the continually advancing developments in cancer immunotherapy remains the immunosuppressive tumor microenvironment (TME). The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) axis is an emerging immunotherapy target, with the resulting type I interferons and transcription factors acting at several levels in both tumor and immune cells for the generation of adaptive T cell responses. The cGAS-STING axis activation by therapeutic agents that induce DNA damage, such as certain chemotherapies, continues to be reported, highlighting the importance of the interplay of this signaling pathway and the DNA damage response in cancer immunity/immunotherapy. We have developed a multi-targeted mannosylated cationic liposomal immunomodulatory system (DS) which contains low doses of the chemotherapeutic cytarabine (Ara-C). In this work, we show that entrapment of non-cytotoxic doses of Ara-C within the DS improves its ability to induce DNA double strand breaks in human ovarian and colorectal cancer cell lines, as well as in various immune cells. Importantly, for the first time we demonstrate that the DNA damage induced by Ara-C/DS translates into cGAS-STING axis activation. We further demonstrate that Ara-C/DS-mediated DNA damage leads to upregulation of surface expression of immune ligands on cancer cells, coinciding with priming of cytotoxic lymphocytes as assessed using an ex vivo model of peripheral blood mononuclear cells from colorectal cancer patients, as well as an in vitro NK cell model. Overall, the results highlight a broad immunotherapeutic potential for Ara-C/DS by enhancing tumor-directed inflammatory responses.
Insights
A novel liposomal system (DS) with low-dose cytarabine (Ara-C) enhances cancer immunotherapy by inducing DNA damage. This activates the cGAS-STING pathway, boosting anti-tumor immune responses and T cell priming.
Area of Science:
- Immunology
- Oncology
- Nanotechnology
Background:
- The immunosuppressive tumor microenvironment (TME) limits cancer immunotherapy effectiveness.
- The cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) axis is a promising target for cancer immunotherapy.
- Activating the cGAS-STING pathway can generate adaptive T cell responses.
Purpose of the Study:
- To investigate the immunotherapeutic potential of a novel mannosylated cationic liposomal system (DS) containing low-dose cytarabine (Ara-C).
- To determine if Ara-C encapsulated in DS can induce DNA damage and activate the cGAS-STING pathway.
- To assess the effect of Ara-C/DS on immune cell priming and anti-tumor responses.
Main Methods:
- Developed a multi-targeted mannosylated cationic liposomal immunomodulatory system (DS) with cytarabine (Ara-C).
- Treated human ovarian and colorectal cancer cell lines and immune cells with Ara-C/DS.
- Assessed DNA double-strand breaks, cGAS-STING pathway activation, and immune ligand expression.
- Evaluated cytotoxic lymphocyte priming using ex vivo and in vitro models.
Main Results:
- Entrapment of Ara-C in DS enhanced its ability to induce DNA double-strand breaks in cancer and immune cells.
- Ara-C/DS treatment activated the cGAS-STING signaling axis.
- Ara-C/DS upregulated immune ligand expression on cancer cells.
- Ara-C/DS-mediated DNA damage primed cytotoxic lymphocytes.
Conclusions:
- The Ara-C/DS system effectively induces DNA damage and activates the cGAS-STING pathway.
- This novel immunomodulatory system enhances anti-tumor immune responses by priming cytotoxic lymphocytes.
- Ara-C/DS demonstrates broad immunotherapeutic potential for cancer treatment.
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