پديدآورندگان :
Ghafelehbashi Robabehbeygom 1Department of Materials and Textile Engineering, College of Engineering, Razi University, Kermanshah, Iran , Farshbafnadi Melina 2Cancer Immunology Project (CIP), Universal Scientific Education and Research Network (USERN), Tehran, Iran , Shokraneh Aghdam Niloofar 4Tabriz University of Medical Sciences, Tabriz, Iran , Amiri Shahin 5Department of Medical Biotechnology, Biotechnology Research Center, Pasteur Institute of Iran, Tehran, Iran. , Salehi Mitra 7Student Research Committee, Qazvin University of Medical Sciences, Qazvin, Iran , Razi Sepideh Cancer Immunology Project (CIP), Universal Scientific Education and Research Network (USERN), Tehran, Iran
كليدواژه :
Keywords: Cancer , Diagnosis , Nanoimmunoengineering , Therapy
چكيده فارسي :
AbstractAim and Background: Cancer immunotherapy strategies in combination with nanosystems had a lot of beneficial results in curing cancer and their application is increasing every day. The pivotal role of stimuli-responsive nanosystems and nanomedicine-based cancer immunotherapy, as a subsidiary discipline in the field of immunology, cannot be ignored. This study concentrates on approaches connected to the efficacy of nanoimmunoengineering strategies for cancer immunotherapies and their applications. By assessing improved approaches, different aspects of the nanoimmunoengineering strategies for cancer therapies are discussed in this study. Methods: Systematic review article Results and discussion: Nanomaterials have been used for many biological applications. Clinically, it should be noted that due to the activity of macrophages, the physical adsorption of nanomaterial cells in terms of size, shape, topography, and behavior depends on the surface chemistry. Nanomedicine in Cancer immunotherapy in recent years has been very successful in creating a consistent response in patients with a wide range of malignancies. Improving the results in this field requires manipulating the immune system of patients by increasing immunity against the disease. Conclusion: Nowadays we developed nanotechology based methods for immunotherapy engineering. Immune system engineering using biological materials and their applications offer a variety of cancer immunotherapy methods focusing on cells, antibodies, immune modulators, gene-related immunotherapy-related therapies, and their relationship to conventional treatments.