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Molecular and Translational Classifications of DAMPs in Immunogenic Cell Death
Abhishek D Garg1, Lorenzo Galluzzi2, Lionel Apetoh3
1Cell Death Research and Therapy Laboratory, Department of Cellular Molecular Medicine, KU Leuven - University of Leuven , Leuven , Belgium.
Abstract:
The immunogenicity of malignant cells has recently been acknowledged as a critical determinant of efficacy in cancer therapy. Thus, besides developing direct immunostimulatory regimens, including dendritic cell-based vaccines, checkpoint-blocking therapies, and adoptive T-cell transfer, researchers have started to focus on the overall immunobiology of neoplastic cells. It is now clear that cancer cells can succumb to some anticancer therapies by undergoing a peculiar form of cell death that is characterized by an increased immunogenic potential, owing to the emission of the so-called "damage-associated molecular patterns" (DAMPs). The emission of DAMPs and other immunostimulatory factors by cells succumbing to immunogenic cell death (ICD) favors the establishment of a productive interface with the immune system. This results in the elicitation of tumor-targeting immune responses associated with the elimination of residual, treatment-resistant cancer cells, as well as with the establishment of immunological memory. Although ICD has been characterized with increased precision since its discovery, several questions remain to be addressed. Here, we summarize and tabulate the main molecular, immunological, preclinical, and clinical aspects of ICD, in an attempt to capture the essence of this phenomenon, and identify future challenges for this rapidly expanding field of investigation.
Insights
Cancer cells dying through immunogenic cell death (ICD) release damage-associated molecular patterns (DAMPs), enhancing anti-tumor immunity and memory. This review summarizes ICD
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Cancer cell immunogenicity is crucial for effective cancer therapy.
- Neoplastic cells' immunobiology is a growing focus in cancer research.
- Certain anticancer therapies induce cancer cell death with enhanced immunogenic potential.
Purpose of the Study:
- To summarize and tabulate the molecular, immunological, preclinical, and clinical aspects of immunogenic cell death (ICD).
- To identify future challenges in the rapidly expanding field of ICD research.
Main Methods:
- Review and tabulation of existing literature on immunogenic cell death.
- Synthesis of molecular, immunological, preclinical, and clinical data related to ICD.
Main Results:
- Immunogenic cell death (ICD) involves the release of damage-associated molecular patterns (DAMPs) and other immunostimulatory factors.
- ICD promotes a productive interaction with the immune system, leading to tumor-targeting immune responses.
- ICD contributes to the elimination of residual cancer cells and the establishment of immunological memory.
Conclusions:
- Immunogenic cell death (ICD) is a key mechanism by which cancer cells can be eliminated by the immune system.
- Further research into ICD holds promise for developing more effective cancer immunotherapies.
- Addressing remaining questions in ICD is critical for advancing cancer treatment strategies.
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