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Host-Related Factors as Targetable Drivers of Immunotherapy Response in Non-Small Cell Lung Cancer Patients
Denisa Baci1,2, Elona Cekani3, Andrea Imperatori4
1Molecular Cardiology Laboratory, IRCCS-Policlinico San Donato, San Donato Milanese, Milan, Italy.
Abstract:
Despite some significant therapeutic breakthroughs leading to immunotherapy, a high percentage of patients with non-small cell lung cancer (NSCLC) do not respond to treatment on relapse, thus experiencing poor prognosis and survival. The unsatisfying results could be related to the features of the tumor immune microenvironment and the dynamic interactions between a tumor and immune infiltrate. Host-tumor interactions strongly influence the course of disease and response to therapies. Thus, targeting host-associated factors by restoring their physiologic functions altered by the presence of a tumor represents a new therapeutic approach to control tumor development and progression. In NSCLC, the immunogenic tumor balance is shifted negatively toward immunosuppression due to the release of inhibitory factors as well as the presence of immunosuppressive cells. Among these cells, there are myeloid-derived suppressor cells, regulatory T cells that can generate a tumor-permissive milieu by reprogramming the cells of the hosts such as tumor-associated macrophages, tumor-associated neutrophils, natural killer cells, dendritic cells, and mast cells that acquire tumor-supporting phenotypes and functions. This review highlights the current knowledge of the involvement of host-related factors, including innate and adaptive immunity in orchestrating the tumor cell fate and the primary resistance mechanisms to immunotherapy in NSCLC. Finally, we discuss combinational therapeutic strategies targeting different aspects of the tumor immune microenvironment (TIME) to prime the host response. Further research dissecting the characteristics and dynamic interactions within the interface host-tumor is necessary to improve a patient fitness immune response and provide answers regarding the immunotherapy efficacy, with the aim to develop more successful treatments for NSCLC.
Insights
Many non-small cell lung cancer (NSCLC) patients resist immunotherapy due to the tumor immune microenvironment. Targeting host factors offers a new therapeutic strategy to improve treatment response.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- Immunotherapy has shown promise for non-small cell lung cancer (NSCLC), but many patients do not respond, especially upon relapse.
- Tumor immune microenvironment (TIME) and host-tumor interactions significantly impact disease progression and therapeutic outcomes.
- NSCLC often exhibits an immunosuppressive TIME, characterized by inhibitory factors and cells that promote tumor growth.
Purpose of the Study:
- To review the role of host-related factors, including innate and adaptive immunity, in NSCLC progression and immunotherapy resistance.
- To explore the mechanisms by which the tumor microenvironment reprograms host cells, leading to immunosuppression.
- To discuss potential combinational therapeutic strategies targeting the TIME to enhance host anti-tumor responses.
Main Methods:
- Literature review of current knowledge on host-tumor interactions in NSCLC.
- Analysis of the mechanisms of immunosuppression within the NSCLC tumor microenvironment.
- Discussion of emerging therapeutic strategies targeting immune cells and factors within the TIME.
Main Results:
- The tumor immune microenvironment in NSCLC is characterized by a shift towards immunosuppression.
- Host cells like macrophages, neutrophils, and dendritic cells can be reprogrammed by tumors to support cancer progression.
- Understanding these host-tumor interactions is crucial for overcoming primary resistance to immunotherapy.
Conclusions:
- Targeting host-associated factors and restoring physiological immune functions presents a novel therapeutic avenue for NSCLC.
- Combinational therapies aimed at modulating the TIME are essential for improving immunotherapy efficacy.
- Further research into the dynamic host-tumor interface is necessary to develop more effective NSCLC treatments.
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