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Explores the basics of radiotherapy, including biological principles, types, techniques, and classical methods used in fighting cancer.
The Tumor Microenvironment: De Palma
Explores the tumor microenvironment, stromal components, cell interactions, and the impact of inflammation on cancer promotion.
Immunoengineering: Engineering the Immune System
Delves into the complexity of the immune system, immunoengineering applications, and microengraving techniques for cell analysis.
Anticancer Therapies I: De Palma
Covers the decline of cancer death rates, conventional and targeted anticancer drugs, surgical oncology, radiotherapy, chemotherapy, resistance mechanisms, and the history of targeted drugs and EGFR targeting.
Elastic Fibers: Structure and Function
Explores the structure and function of elastic fibers in various tissues, highlighting the importance of maintaining elastin for skin health.
DNA Repair: UV Damage and Skin Cancer
Explores UV-induced DNA damage, repair mechanisms, and their role in skin cancer development.
Experimental Evidence for Immunoediting of Tumors
Explores experimental evidence supporting immunoediting of tumors and the use of immunotherapy to enhance antitumor immune responses.
Multi-step Tumor Progression: De Palma
Explores the multi-step progression of tumors, from cancer incidence rates to tumor initiators and promoters.
Material Engineering in Cancer Immunotherapy
Covers the evasion of immune pressure by tumors, cancer immunotherapies, drug delivery strategies, and the impact of nanoparticle characteristics on tumor penetration.

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