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C3aR Signaling Inhibits NK-cell Infiltration into the Tumor Microenvironment in Mouse Models
Saravanan Nandagopal1, Caiyun G Li1, Yu Xu2
1Department of Radiation Oncology, Stanford University School of Medicine, Stanford, California.
Abstract:
Many solid tumors have low levels of cytotoxic CD56dim natural killer (NK) cells, suggesting that CD56dim NK-cell exclusion from the tumor microenvironment (TME) contributes to the decreased response rate of immunotherapy. Complement component 3a (C3a) is known for its tumor-promoting and immunosuppressive roles in solid tumors. Previous reports have implicated the involvement of the C3a receptor (C3aR) in immune cell trafficking into the TME. C3aR is predominantly expressed on the surface of activated cytotoxic NK cells, but a specific role for C3aR in NK-cell biology has not been investigated. Because solid tumors generate elevated C3a and have decreased NK-cell infiltration, we hypothesized that C3aR might play a role in cytotoxic NK-cell recruitment into the TME. Our results indicate that blocking C3aR signaling in NK cells increased NK-cell infiltration into the TME in mouse models and led to tumor regression. Because the critical lymphocyte trafficking integrin LFA-1 orchestrates the migration of activated NK cells, we wanted to gain insight into the interaction between C3aR signaling and LFA-1. Our results demonstrated that direct interaction between C3aR and LFA-1, which led to a high-affinity LFA-1 conformation, decreased NK-cell infiltration into the TME. We propose that approaches to enhance cytotoxic NK-cell infiltration into the TME, through either disrupting C3a and C3aR interaction or inhibiting the formation of high-affinity LFA-1, represent a new strategy to improve the efficiency of immunotherapy for cancer treatment.
Insights
Blocking the C3a receptor (C3aR) on natural killer (NK) cells enhances their infiltration into solid tumors. This strategy, by disrupting C3aR and LFA-1 interaction, promotes tumor regression and improves immunotherapy efficacy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Solid tumors often exhibit low cytotoxic CD56dim natural killer (NK) cell infiltration, correlating with poor immunotherapy response.
- Complement component 3a (C3a) promotes tumor growth and immunosuppression, with its receptor (C3aR) implicated in immune cell trafficking.
Purpose of the Study:
- To investigate the role of C3a receptor (C3aR) in cytotoxic NK cell recruitment into the tumor microenvironment (TME).
- To explore the interaction between C3aR signaling and lymphocyte function-associated antigen 1 (LFA-1) in NK cell migration.
Main Methods:
- Utilized mouse models of solid tumors to assess NK cell infiltration.
- Investigated the effect of blocking C3aR signaling on NK cell recruitment.
- Examined the interaction between C3aR and LFA-1 in regulating NK cell migration.
Main Results:
- Blocking C3aR signaling significantly increased NK cell infiltration into the TME, leading to tumor regression in mouse models.
- Demonstrated a direct interaction between C3aR and LFA-1, which promotes a high-affinity LFA-1 conformation.
- This C3aR-LFA-1 interaction was found to decrease NK cell infiltration into the TME.
Conclusions:
- C3aR signaling negatively regulates cytotoxic NK cell infiltration into solid tumors.
- Disrupting C3a-C3aR interaction or inhibiting high-affinity LFA-1 formation are potential strategies to enhance NK cell recruitment.
- These approaches offer a novel therapeutic avenue to improve immunotherapy outcomes in cancer treatment.
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