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Tsang, N.-M.

Publications and source records attributed to Tsang, N.-M..

2 recordsLinked to original sources

Targeting STING-ATM axis overcomes radiotherapy-induced immune suppression and restores anti-tumor immunity in nasopharyngeal carcinoma

BackgroundRadiotherapy (RT) is a standard treatment for nasopharyngeal carcinoma (NPC), however, RT-induced immune suppression and tumor radioresistance limit durable cancer control, with approximately 20% of patients developing recurrence or metastasis after treatment. We investigated the molecular effects of RT on the immune landscape of NPC and identified a key role of the STING-ATM-MPO axis in RT-induced immune suppression, which is associated with regulatory T cell (Treg) expansion and radioresistance. MethodsWe analyzed leukocyte counts from 653 NPC patients before treatment and at multiple time points (week 1-2, week 3-4, and week 5-6) after RT. Single-cell RNA sequencing (scRNA-seq) was performed on peripheral blood mononuclear cell (PBMC) samples from stage I NPC patients (T1N0M0) treated with RT alone. Blood samples were collected before and after 18 Gy RT (in 2 Gy fractions). A randomized six-arm syngeneic mouse tumor model and in vitro cell studies were used to investigate interactions among STING-ATM signaling, immune modulation, and tumor response. ResultsIn NPC patients, RT suppressed cGAS-STING signaling in monocytes and dendritic cells but promoted immunosuppressive programs, including PD-1 signaling, checkpoint expression, regulatory T cell expansion, and upregulation of TGF{beta}1, IL-10, VEGF, PDGF, and MDSC-associated pathways. In a syngeneic mouse model, co-treatment with the STING agonist diABZI reversed these effects and improved tumor control. Bulk RNA sequencing confirmed that RT suppressed cGAS-STING and ATM signaling in both spleens and tumors. Combination treatment restored this signaling, enhanced neutrophil degranulation, and inhibited PD-1 signaling and immune checkpoints. Immunohistochemistry showed that diABZI increased ATM activation, MPO expression, and reduced Treg infiltration in spleens and tumors. ATM activation correlated positively with MPO and inversely with FOXP3 immunoreactivity, suggesting that STING-ATM-MPO activation counteracts Treg-mediated immune suppression. In vitro, diABZI activated STING-ATM signaling in PBMCs, THP-1 cells, and Jurkat T cells, while inhibiting NPC cell growth partly via CYLD upregulation. ConclusionsThese findings link RT-induced suppression to inhibition of cGAS-STING signaling. Activation of STING-ATM-MPO axis counteracts Treg-mediated immune suppression, supporting the therapeutic potential of STING agonists as radiosensitizers in NPC.

cancer biology↗

Epstein-Barr viral product-containing exosome facilitates LIF-associated immunosuppressive polarization of macrophage in nasopharyngeal carcinoma

Epstein-Barr virus (EBV)-associated nasopharyngeal carcinoma (NPC) is characterized by a highly infiltrated, yet immunosuppressive, tumor microenvironment (TME) in which tumor-associated macrophages (TAMs) play a central role in tumor progression. In this study, we identified exosome-mediated delivery of the EBV oncoprotein LMP1, which acts via induction of leukemia inhibitory factor (LIF), as a key mechanism driving immunosuppressive macrophage polarization. Immunohistochemistry revealed that, in addition to tumor cells, LIF is primarily expressed by stromal TAMs and correlates with poor prognosis. We demonstrated that LMP1-containing exosomes are internalized by macrophages, leading to NF-{kappa}B-dependent upregulation of LIF and polarization toward an immunosuppressive M2d-like phenotype. These macrophages exhibit impaired anti-tumor activity and promote tumor proliferation and vascular dissemination in a LIF-dependent manner. Single-cell transcriptomic analyses of exosome-treated NPC biopsies revealed transcriptional reprogramming across tumor, myeloid, and lymphoid compartments impacting epithelial-mesenchymal transition (EMT); extracellular matrix (ECM) remodeling in tumor cells; immunosuppressive signaling (e.g., CD163 anti-inflammatory and VEGF signaling in macrophages); and enrichment of immune checkpoints and pathways, including PD-1, TGF{beta}-SMAD, and NF-{kappa}B-associated pathways in T cells. Exosome treatment increased expansion of CCL18+-TAMs and expression of CTLA4 in regulatory T cells and exhausted T cells. Immunohistochemistry further confirmed a positive correlation between expression of LIF and CTLA4 in NPC tumors and an inverse correlation between LIF and GZMB/CD8A. These findings define an exosome-driven LMP1-LIF axis that orchestrates immune suppression in NPC and suggest potential targets for restoring anti-tumor immunity.

cancer biology↗