
pmid: 26374534
Currently, it is widely acknowledged that a proactive anticancer immunosurveillance mechanism takes part in the rejection of neoplastic lesions before they progress towards a benign or malignant tumour. However in cases of very aggressive neoplastic lesions consisting of cells with high mutational diversity, cancer cell variants might be formed that are capable of evading host defence systems against uncontrolled proliferation and anticancer immunosurveillance. This is mainly accomplished through the exhibition of low immunogenicity, which is a particularly important stumbling block in the revival of long-lasting as well as stable anticancer immunity. Recently, it has emerged emphatically that inciting a cancer cell death routine, associated with the activation of danger signalling pathways evoking emission of damage-associated molecular patterns (DAMPs), markedly increases the immunogenicity of dying cancer cells. This cell death pathway has been termed "immunogenic cell death" (ICD). In the present review we introduce this concept and discuss its characteristics in detail. We also discuss in detail the various molecular, immunological and operational determinants of ICD.
CANCER-THERAPY, SURFACE EXPOSURE, ANTICANCER IMMUNE-RESPONSES, Antibodies, Neoplasm, Apoptosis, URIC-ACID, immunogenicity, chemotherapy, Cancer Vaccines, 3105 Genetics, photodynamic therapy (PDT), antigen, danger signals, Neoplasms, immunogenic cell death, cancer, APOPTOTIC CELLS, Humans, HUMAN TUMOR-CELLS, damage-associated molecular patterns, Immunologic Surveillance, 11 Medical and Health Sciences, CALRETICULIN EXPOSURE, Science & Technology, danger signalling, SECRETORY PATHWAY, ER STRESS, 06 Biological Sciences, 3109 Zoology, T-CELLS, 3108 Plant biology, Tumor Escape, ER stress, Life Sciences & Biomedicine, Developmental Biology
CANCER-THERAPY, SURFACE EXPOSURE, ANTICANCER IMMUNE-RESPONSES, Antibodies, Neoplasm, Apoptosis, URIC-ACID, immunogenicity, chemotherapy, Cancer Vaccines, 3105 Genetics, photodynamic therapy (PDT), antigen, danger signals, Neoplasms, immunogenic cell death, cancer, APOPTOTIC CELLS, Humans, HUMAN TUMOR-CELLS, damage-associated molecular patterns, Immunologic Surveillance, 11 Medical and Health Sciences, CALRETICULIN EXPOSURE, Science & Technology, danger signalling, SECRETORY PATHWAY, ER STRESS, 06 Biological Sciences, 3109 Zoology, T-CELLS, 3108 Plant biology, Tumor Escape, ER stress, Life Sciences & Biomedicine, Developmental Biology
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