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Necrotic Cells from Head and Neck Carcinomas Release Biomolecules That Are Activating Toll-like Receptor 3
Tea Vasiljevic1, Marko Tarle2,3, Koraljka Hat2
1Laboratory for Personalized Medicine, Division of Molecular Medicine, Rudjer Boskovic Institute, Bijenicka 54, 10000 Zagreb, Croatia.
Abstract:
Tumor necrosis is a recurrent characteristic of head and neck squamous cell carcinomas (HNSCCs). There is a need for more investigations on the influence of biomolecules released by these necrotic foci in the HNSCC tumor microenvironment. It is suspected that a fraction of the biomolecules released by necrotic cells are damage-associated molecular patterns (DAMPs), which are known to be natural endogenous ligands of Toll-like receptors (TLRs), including, among others, proteins and nucleic acids. However, there has been no direct demonstration that biomolecules released by HNSCC necrotic cells can activate TLRs. Our aim was to investigate whether some of these molecules could behave as agonists of the TLR3, either in vitro or in vivo. We chose a functional approach based on reporter cell exhibiting artificial TLR3 expression and downstream release of secreted alkaline phosphatase. The production of biomolecules activating TLR3 was first investigated in vitro using three HNSCC cell lines subjected to various pronecrotic stimuli (external irradiation, serum starvation, hypoxia and oxidative stress). TLR3 agonists were also investigated in necrotic tumor fluids from five oral cancer patients and three mouse tumor grafts. The release of biomolecules activating TLR3 was demonstrated for all three HNSCC cell lines. External irradiation was the most consistently efficient stimulus, and corresponding TLR3 agonists were conveyed in extracellular vesicles. TLR3-stimulating activity was detected in the fluids from all five patients and three mouse tumor grafts. In most cases, this activity was greatly reduced by RNAse pretreatment or TLR3 blocking antibodies. Our data indicate that TLR3 agonists are consistently present in necrotic fluids from HNSCC cells and mainly made of dsRNA fragments. These endogenous agonists may induce TLR3, which might lead to a protumorigenic effect. Regarding methodological aspects, our study demonstrates that direct investigations-including functional testing-can be performed on necrotic fluids from patient tumors.
Insights
Necrotic head and neck squamous cell carcinomas release biomolecules, primarily dsRNA fragments, that activate Toll-like receptor 3 (TLR3). These findings suggest a potential protumorigenic role for TLR3 agonists in the tumor microenvironment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Tumor necrosis is common in head and neck squamous cell carcinomas (HNSCCs).
- Biomolecules released from necrotic tumor cells, including damage-associated molecular patterns (DAMPs), can interact with Toll-like receptors (TLRs).
- The role of TLR3 activation by molecules from HNSCC necrosis remains largely unexplored.
Purpose of the Study:
- To investigate whether biomolecules from HNSCC necrotic foci activate Toll-like receptor 3 (TLR3).
- To identify the nature of these potential TLR3 agonists.
- To assess the presence of TLR3 agonists in patient-derived tumor fluids.
Main Methods:
- Utilized reporter cell lines engineered for TLR3 expression and alkaline phosphatase secretion.
- Exposed three HNSCC cell lines to various stimuli (irradiation, starvation, hypoxia, oxidative stress) to induce necrosis.
- Analyzed necrotic tumor fluids from HNSCC patients and mouse tumor grafts for TLR3-activating substances.
- Assessed the impact of RNAse treatment and TLR3 blocking antibodies.
Main Results:
- All three HNSCC cell lines released biomolecules that activated TLR3.
- External irradiation was the most effective stimulus, with agonists found in extracellular vesicles.
- TLR3-stimulating activity was detected in necrotic fluids from all tested patients and mouse tumors.
- Activity was significantly reduced by RNAse or TLR3 blocking antibodies, indicating dsRNA as the primary agonist.
Conclusions:
- Necrotic HNSCC cells consistently release dsRNA fragments that activate TLR3.
- These endogenous TLR3 agonists may contribute to a protumorigenic effect within the tumor microenvironment.
- The study validates functional testing of necrotic tumor fluids for investigating molecular interactions.
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