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PMN-MDSCs Enhance CTC Metastatic Properties through Reciprocal Interactions via ROS/Notch/Nodal Signaling
Marc L Sprouse1, Thomas Welte2, Debasish Boral3
1Biomarker Research Program Center, Houston Methodist Research Institute, Houston, TX 77030, USA. Msprouse@houstonmethodist.org.
Abstract:
Intratumoral infiltration of myeloid-derived suppressor cells (MDSCs) is known to promote neoplastic growth by inhibiting the tumoricidal activity of T cells. However, direct interactions between patient-derived MDSCs and circulating tumors cells (CTCs) within the microenvironment of blood remain unexplored. Dissecting interplays between CTCs and circulatory MDSCs by heterotypic CTC/MDSC clustering is critical as a key mechanism to promote CTC survival and sustain the metastatic process. We characterized CTCs and polymorphonuclear-MDSCs (PMN-MDSCs) isolated in parallel from peripheral blood of metastatic melanoma and breast cancer patients by multi-parametric flow cytometry. Transplantation of both cell populations in the systemic circulation of mice revealed significantly enhanced dissemination and metastasis in mice co-injected with CTCs and PMN-MDSCs compared to mice injected with CTCs or MDSCs alone. Notably, CTC/PMN-MDSC clusters were detected in vitro and in vivo either in patients' blood or by longitudinal monitoring of blood from animals. This was coupled with in vitro co-culturing of cell populations, demonstrating that CTCs formed physical clusters with PMN-MDSCs; and induced their pro-tumorigenic differentiation through paracrine Nodal signaling, augmenting the production of reactive oxygen species (ROS) by PMN-MDSCs. These findings were validated by detecting significantly higher Nodal and ROS levels in blood of cancer patients in the presence of naïve, heterotypic CTC/PMN-MDSC clusters. Augmented PMN-MDSC ROS upregulated Notch1 receptor expression in CTCs through the ROS-NRF2-ARE axis, thus priming CTCs to respond to ligand-mediated (Jagged1) Notch activation. Jagged1-expressing PMN-MDSCs contributed to enhanced Notch activation in CTCs by engagement of Notch1 receptor. The reciprocity of CTC/PMN-MDSC bi-directional paracrine interactions and signaling was functionally validated in inhibitor-based analyses, demonstrating that combined Nodal and ROS inhibition abrogated CTC/PMN-MDSC interactions and led to a reduction of CTC survival and proliferation. This study provides seminal evidence showing that PMN-MDSCs, additive to their immuno-suppressive roles, directly interact with CTCs and promote their dissemination and metastatic potency. Targeting CTC/PMN-MDSC heterotypic clusters and associated crosstalks can therefore represent a novel therapeutic avenue for limiting hematogenous spread of metastatic disease.
Insights
Myeloid-derived suppressor cells (MDSCs) directly interact with circulating tumor cells (CTCs), forming clusters that promote cancer metastasis. Targeting these cell clusters offers a novel therapeutic strategy to limit cancer spread.
Area of Science:
- Cancer Biology
- Immunology
- Metastasis Research
Background:
- Myeloid-derived suppressor cells (MDSCs) are known to suppress anti-tumor immunity.
- The direct interaction between MDSCs and circulating tumor cells (CTCs) in the bloodstream is not well understood.
- Understanding CTC-MDSC interplay is crucial for understanding cancer metastasis.
Purpose of the Study:
- To investigate the direct interactions between patient-derived MDSCs and CTCs.
- To elucidate the role of these interactions in promoting cancer cell survival and metastasis.
- To explore potential therapeutic strategies targeting CTC-MDSC interactions.
Main Methods:
- Isolation of CTCs and polymorphonuclear-MDSCs (PMN-MDSCs) from metastatic cancer patients' blood.
- Multi-parametric flow cytometry for cell characterization.
- In vivo transplantation studies in mice and in vitro co-culturing experiments.
- Analysis of Nodal signaling, reactive oxygen species (ROS) production, and Notch pathway activation.
Main Results:
- Co-injection of CTCs and PMN-MDSCs significantly enhanced tumor dissemination and metastasis in mice.
- CTCs and PMN-MDSCs formed physical clusters in vitro and in vivo, detected in patients' blood.
- CTCs induced PMN-MDSC differentiation via Nodal signaling, increasing ROS production, which in turn upregulated Notch1 in CTCs.
- Jagged1-expressing PMN-MDSCs engaged Notch1 on CTCs, creating a reciprocal signaling loop.
- Inhibition of Nodal and ROS pathways disrupted CTC-PMN-MDSC interactions, reducing CTC survival and proliferation.
Conclusions:
- PMN-MDSCs directly interact with CTCs, promoting their metastatic potential beyond their known immunosuppressive roles.
- CTC/PMN-MDSC heterotypic clusters and their crosstalk represent a critical mechanism for hematogenous cancer spread.
- Targeting these CTC-MDSC clusters and their signaling pathways offers a novel therapeutic avenue to inhibit metastasis.
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