Tehran University of Medical Sciences

Science Communicator Platform

Share By
Abscopal Effect in Radioimmunotherapy Publisher Pubmed



Ashrafizadeh M1 ; Farhood B2 ; Eleojo Musa A3 ; Taeb S4 ; Rezaeyan A5 ; Najafi M6
Authors

Source: International Immunopharmacology Published:2020


Abstract

Abscopal effect is an interesting phenomenon in radiobiology that causes activation of immune system against cancer cells. Traditionally, this phenomenon was known as a suppressor of non-irradiated tumors or metastasis. However, it can be used as a stimulator of the immune system against primary tumor during radiotherapy. Immunotherapy, a novel tumor therapy modality, also triggers immune system against cancer. To date, some immunotherapy types have been developed. However, immune checkpoint blockade is a more common modality and some drugs have been approved by the FDA. Studies have shown that radiotherapy or immunotherapy administered alone have low efficiency for tumor control. However, their combination has a more potent anti-tumor immunity. For this aim, it is important to induce abscopal effect in primary tumors, and also use appropriate drugs to target the mechanisms involved in the exhaustion of cytotoxic CD8+T lymphocytes (CTLs) and natural killer (NK) cells. Among the different radiotherapy techniques, stereotactic body radiation therapy (SBRT) with some few fractionations is the best choice for inducing abscopal effect. On the other hand, programmed cell death 1 (PD-1) is known as one of the best targets for triggering anti-tumor immunity. This combination is known as the best choice among various strategies for radioimmunotherapy. However, there is the need for other strategies to improve the duration of immune system's activity within tumor microenvironment (TME). In this review, we explain the cellular and molecular mechanisms behind abscopal effect by radiotherapy and evaluate the molecular targets which induce potent anti-tumor immunity. © 2020 Elsevier B.V.
2. Immunotherapeutic Approaches for Cancer Therapy: An Updated Review, Artificial Cells# Nanomedicine and Biotechnology (2016)
3. Damage-Associated Molecular Patterns in Tumor Radiotherapy, International Immunopharmacology (2020)
Experts (# of related papers)
Other Related Docs
4. Cancer Immunotherapy Confers a Global Benefit, Cancer Immunology: Cancer Immunotherapy for Organ-Specific Tumors (2020)
5. Tumor Immunology, Clinical Immunology (2022)
6. Cancer Immunotherapy Confers a Global Benefit, Cancer Immunology: Cancer Immunotherapy for Organ-Specific Tumors (2015)
8. Targets for Improving Tumor Response to Radiotherapy, International Immunopharmacology (2019)
9. Introduction on Cancer Immunology and Immunotherapy, Cancer Immunology: A Translational Medicine Context# Second Edition (2020)
15. Cancer Immunotherapy: Diverse Approaches and Obstacles, Current Pharmaceutical Design (2022)
17. Immunoregulation by Resveratrol; Implications for Normal Tissue Protection and Tumour Suppression, Clinical and Experimental Pharmacology and Physiology (2023)
19. New Approaches in Cancer Immunotherapy: Review Article, Tehran University Medical Journal (2018)
20. Hurdles in Cancer Immunotherapy, Cancer Immunology: Bench to Bedside Immunotherapy of Cancers# Second Edition (2020)