Cancer Resistance to Immunotherapy: Comprehensive Insights with Future Perspectives

Резистентность опухолей к иммунотерапии: всесторонний анализ и перспективы на будущее
Sawsan Sudqi Said, Wisam Nabeel Ibrahim
2023-04-04

CAR T-cell therapycancer immunotherapycheckpoint inhibitorsimmunotherapy resistancetumor microenvironment
Cancer immunotherapy is a type of treatment that harnesses the power of the immune systems of patients to target cancer cells with better precision compared to traditional chemotherapy. Several lines of treatment have been approved by the US Food and Drug Administration (FDA) and have led to remarkable success in the treatment of solid tumors, such as melanoma and small-cell lung cancer. These immunotherapies include checkpoint inhibitors, cytokines, and vaccines, while the chimeric antigen receptor (CAR) T-cell treatment has shown better responses in hematological malignancies. Despite these breakthrough achievements, the response to treatment has been variable among patients, and only a small percentage of cancer patients gained from this treatment, depending on the histological type of tumor and other host factors. Cancer cells develop mechanisms to avoid interacting with immune cells in these circumstances, which has an adverse effect on how effectively they react to therapy. These mechanisms arise either due to intrinsic factors within cancer cells or due other cells within the tumor microenvironment (TME). When this scenario is used in a therapeutic setting, the term "resistance to immunotherapy" is applied; "primary resistance" denotes a failure to respond to treatment from the start, and "secondary resistance" denotes a relapse following the initial response to immunotherapy. Here, we provide a thorough summary of the internal and external mechanisms underlying tumor resistance to immunotherapy. Furthermore, a variety of immunotherapies are briefly discussed, along with recent developments that have been employed to prevent relapses following treatment, with a focus on upcoming initiatives to improve the efficacy of immunotherapy for cancer patients.
1
Cancer immunotherapies have produced substantial success in solid tumors such as melanoma and small-cell lung cancer, while CAR T-cell therapy shows stronger responses in hematological malignancies.
2
Clinical responses to immunotherapy vary widely, and only a small proportion of cancer patients benefit, depending on tumor histology and host factors.
3
The paper summarizes resistance mechanisms and emerging strategies intended to prevent relapse and improve immunotherapy efficacy.
4
The review distinguishes primary resistance, defined as failure to respond initially, from secondary resistance, defined as relapse after an initial response.
5
Tumors develop immunotherapy resistance through cancer-cell-intrinsic mechanisms and factors originating from other cells in the tumor microenvironment.

cancer cells and the tumor microenvironment during cancer immunotherapy

intrinsic and extrinsic mechanisms of primary and secondary resistance to immunotherapy

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2023-04-04
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Sawsan Sudqi Said
Wisam Nabeel Ibrahim
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