Explores the basic concepts and translational opportunities in immunometabolism, emphasizing the intricate interactions between immune cells and different cell types.
Covers the evasion of immune pressure by tumors, cancer immunotherapies, drug delivery strategies, and the impact of nanoparticle characteristics on tumor penetration.
Explores the structure and function of proteins, including defence, structural, regulatory, and other types, and discusses the concept of protein machines in cell function.
Explores the history, mechanisms, and players of cancer immunotherapies, including immune evasion strategies and the role of MHC in antigen presentation.
Explores immunoengineering for precise antibody responses and modulation of immunodominance, focusing on vaccine development challenges and innovative strategies.
Covers precision tumor recognition, challenges in T cell therapy, vaccination impact, history, types, and examples of vaccines, immune response, and COVID-19 vaccine types.
Explains cellular uptake mechanisms, focusing on phagocytosis, pinocytosis, and receptor-mediated endocytosis, highlighting the importance of size and shape in these processes.
Explores biology fundamentals, proteins, lipids, and DNA as synthetic materials, covering cell structure, membrane composition, protein production, DNA structure, and tissue engineering.